Details of the Researcher

PHOTO

Ryo Kurosawa
Section
Tohoku Medical Megabank Organization
Job title
Assistant Professor
e-Rad No.
40836384

Research History 5

  • 2025/03 - Present
    Tohoku University Biochemistry & Molecular Biology, Tohoku Medical Megabank Organization Department of Integrative Genomics Assistant Professor

  • 2021/04 - 2025/02
    RIKEN RIKEN Center For Integrative Medicial Sciences Laboratory for Cardiovascular Genomics and Informatics Research Scientist

  • 2020/04 - 2021/03
    RIKEN Microalgae Production Control Technology Laboratory Visiting Researcher

  • 2019/04 - 2020/03
    Tohoku University Graduate School of Medicine Assistant professor

  • 2018/04 - 2019/03
    Tohoku University Graduate School of Medicine Research Fellowship for Young Scientists (JSPS)

Education 2

  • Tohoku University Graduate School of Medicine cardiovascular medicine, doctoral course

    2014/04 - 2018/03

  • Tohoku University Faculty of Medicine School of Medicine

    2004/04 - 2010/03

Professional Memberships 7

  • American Society of Human Genetics

    2021/09 - Present

  • European Society of Cardiology

    2018/05 - Present

  • Japanese Circulation Society

    2015/04 - Present

  • American Heart Association

    2014/10 - Present

  • the Japanese Pulmonary Circulation and Pulmonary Hypertension Society

    2014/04 - Present

  • The Japanese Society of Internal Medicine

    2012/05 - Present

  • The Japanese Circulation Society

    2012/04 - Present

︎Show all ︎Show first 5

Research Interests 7

  • oxidative stress

  • Drug Screening

  • Multi-Omics Analysis

  • Bioinformatics

  • Molecular Biology

  • Cardiogenomics

  • Pulmonary Hypertension

Research Areas 1

  • Life sciences / Cardiology / Genomic Medicine

Awards 12

  1. Genomic and Precision Medicine Early Career Investigator Award

    2025/11 American Heart Association

  2. Young Investigator Award in Population Science, Genetics and Epidemiology (WInner)

    2025/08 European Society of Cardiology Congress 2025

  3. Japanese Pulmonary Circulation and Pulmonary Hypertension Society 2020 Society Encouragement Award (Basic)

    2020/09 Japanese Pulmonary Circulation and Pulmonary Hypertension Society

  4. The 49th Annual Japanese Society for Circulation Research Research Incentive Award

    2020/02 Japanese Society for Circulation Research Research

  5. European Society of Cardiology Young Reseachers Award(Pulmonary Circulation & Right Ventricular Function)

    2019/09 European Society of Cardiology

  6. The 83th Japanese Circulation Society Young Investigator's Award Basic Research (First Prize)

    2019/03 Japanese Circulation Society

  7. The 3rd Annual Scientific Meeting of the Japanese Pulmonary Circulation and Pulmonary Hypertension Society Young Investigator Award

    2018/06 Japanese Pulmonary Circulation and Pulmonary Hypertension Society

  8. Research Fellowship for Young Scientists, Posdoctoral Fellow (PD)

    2018/04 Japan Society for the Promotion of Science (JSPS)

  9. The 46 th Annual Japanese Society for Circulation Research Young Investigator Award

    2017/12 Japanese Society for Circulation Research

  10. The 2nd Annual Scientific Meeting of the Japanese Pulmonary Circulation and Pulmonary Hypertension Society Young Investigator Award

    2017/06 Japanese Pulmonary Circulation and Pulmonary Hypertension Society

  11. Research Fellowship for Young Scientists, Doctoral Course Students (DC2)

    2017/04 Japan Society for the Promotion of Science (JSPS)

  12. Scientific Session 3CPR Junior Investigator Travel Stipend

    2016/11 American Heart Association

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Papers 51

  1. 0.33 g mitigates muscle atrophy while 0.67 g preserves muscle function and myofiber type composition in mice during spaceflight Peer-reviewed

    Ryosuke Tsuji, Ryo Fujita, Takuto Hayashi, Shunya Sadaki, Tatsuya Matsumoto, Yuri Inoue, Yuka Murakami, Michito Hamada, Masafumi Muratani, Hiroe Kobayashi, Akane Yumoto, Maki Okada, Daisuke Kamimura, Risa Okada, Takafumi Suzuki, Ryo Kurosawa, Akihito Otsuki, Seizo Koshiba, Martha Hotz Vitaterna, Charles A. Fuller, Marie Mortreux, Dong-Min Sung, Jason Ciola, Seward B. Rutkove, Jennifer Coulombe, Takashi Kudo, Masayuki Yamamoto, Mary L. Bouxsein, Dai Shiba, Satoru Takahashi

    Science Advances 12 (11) 2026/03/13

    Publisher: American Association for the Advancement of Science (AAAS)

    DOI: 10.1126/sciadv.aed2258  

    eISSN: 2375-2548

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    As human space exploration advances, understanding how different gravity levels affect skeletal muscle is critical for long-term health. Among the major organ systems, skeletal muscle is particularly sensitive to gravitational unloading, yet the gravity threshold required to maintain homeostasis remains unclear. Using the Multiple Artificial-gravity Research System aboard the International Space Station, mice were exposed to graded gravity levels, microgravity, 0.33 g , 0.67 g , and 1 g , and their muscles were analyzed postflight. In the gravity-sensitive soleus, the cross-sectional area was preserved at 0.33 g , while the slow-to-fast myofiber transition was partially suppressed at 0.33 g and fully prevented at 0.67 g . Functional measures, including forelimb grip strength and electrical impedance myography, indicated that 0.67 g was sufficient to maintain muscle performance. Plasma metabolomics identified 11 metabolites with gravity-dependent changes, suggesting potential biomarkers for monitoring physiological adaptation. Collectively, these results identify 0.67 g as a critical threshold for mitigating spaceflight-induced muscle atrophy and myofiber type transitions.

  2. Genomic and transcriptomic analyses of aortic stenosis enhance therapeutic target discovery and disease prediction. International-journal Peer-reviewed

    Aeron M Small, Ta-Yu Yang, Shinsuke Itoh, Sébastien Thériault, Line Dufresne, Ryo Kurosawa, Issei Komuro, Koichi Matsuda, Ha My T Vy, Eric H Farber-Eger, Lauren Lee Shaffer, Kristin M Boulier, Kristin M Corey, Megan E Ramaker, Fabien Laporte, Jean-Jacques Schott, Solena Le Scouarnec, Sasha A Singh, Abhijeet R Sonawane, Harry A Smith, Nicholas Rafaels, Jonas Ghouse, Anna A Raja, Sisse R Ostrowski, Erik Sørensen, Christina Mikkelsen, Ole B Pedersen, Christian Erikstrup, Henrik Ullum, Gardar Sveinbjornsson, Daniel F Gudbjartsson, Erik Abner, Jiwoo Lee, Andrea Ganna, Ulrike Nowak-Göttl, Sarah Finer, Johannes Schumacher, Carlo Maj, Baravan Al-Kassou, Georg Nickenig, Teresa Trenkwalder, Martina Dreβen, Markus Krane, Markus M Nöthen, Marta R Moksnes, Ben M Brumpton, Stacey Knight, Kirk U Knowlton, Lincoln Nadauld, Radek Debiec, Muntaser D Musameh, Peter S Braund, Christopher P Nelson, Tomasz Czuba, Olle Melander, Margaret Sunitha Selvaraj, Satoshi Koyama, Rohan Bhukar, Yunfeng Ruan, Johan Ljungberg, Scott M Damrauer, Michael G Levin, Andre Franke, Klaus Berger, Christian T Ruff, Giorgio E M Melloni, Frederick K Kamanu, Kaoru Ito, Ron Do, Ruth J F Loos, Heribert Schunkert, Quinn S Wells, Svati H Shah, Thierry Le Tourneau, David Messika-Zeitoun, Christopher Gignoux, Henning Bundgaard, Susanna C Larsson, Karl Michaëlsson, Hilma Holm, Anna Helgadottir, Tonu Esko, David A van Heel, Patrick Mathieu, Nilesh J Samani, J Gustav Smith, Stefan Söderberg, Daniel J Rader, Nicholas A Marston, Marc S Sabatine, Bogdan Pasaniuc, Kelly Cho, Peter W F Wilson, Christopher J O'Donnell, Kari Stefansson, Yohan Bossé, Elena Aikawa, James C Engert, Gina M Peloso, Pradeep Natarajan, George Thanassoulis

    Nature genetics 2025/12/19

    DOI: 10.1038/s41588-025-02417-6  

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    Aortic stenosis (AS) is a common valvular heart disease and has no pharmacological therapies. We performed a multi-ancestry genome-wide association meta-analysis of 86,864 AS cases among 2,853,408 individuals, discovering 241 autosomal independent risk loci and 3 X chromosome risk loci. We additionally performed sex-stratified and ancestry-stratified genome-wide association studies (GWASs), identifying an additional 5 sex-specific risk loci, 11 risk loci in European ancestry individuals and 1 risk locus in African ancestry individuals. We also performed a transcriptome-wide association study using expression quantitative trait loci from human aortic valves, discovering 54 new genes for which genetically predicted expression influences the risk of AS. We then generated a new polygenic risk score for AS. Finally, we performed gene silencing experiments targeting biologically relevant genes identified by our GWAS. Silencing of CMKLR1 and LTBP4 in human valvular interstitial cells substantially decreased mineralization, implicating a role for polyunsaturated fatty acids and transforming growth factor β signaling in AS.

  3. Genome-wide analysis of heart failure yields insights into disease heterogeneity and enables prognostic prediction in the Japanese population Peer-reviewed

    Nobuyuki Enzan, Kazuo Miyazawa, Satoshi Koyama, Ryo Kurosawa, Hirotaka Ieki, Hiroki Yoshida, Fumie Takechi, Masashi Fukuyama, Ryosuke Osako, Kohei Tomizuka, Xiaoxi Liu, Kouichi Ozaki, Yoshihiro Onouchi, Koichi Matsuda, Yukihide Momozawa, Hiroyuki Aburatani, Yoichiro Kamatani, Takanori Yamaguchi, Hiroshi Akazawa, Koichi Node, Patrick T. Ellinor, Michael G. Levin, Scott M. Damrauer, Benjamin F. Voight, Jacob Joseph, Yan V. Sun, Chikashi Terao, Toshiharu Ninomiya, Issei Komuro, Kaoru Ito

    Nature Communications 16 (1) 2025/11/03

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1038/s41467-025-64659-6  

    eISSN: 2041-1723

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    Abstract To understand the genetic basis of heart failure (HF) in the Japanese population, we performed genome-wide association studies (GWASs) comprising 16,251 all-cause HF cases, 4,254 HF with reduced ejection fraction cases, 7,154 HF with preserved ejection fraction cases, and 11,122 non-ischemic HF cases among 213,828 individuals and identified five novel loci. A subsequent cross-ancestry meta-analysis and multi-trait analysis of the GWAS data identified 19 novel loci in total. Among these susceptibility loci, a common non-coding variant inTTN(rs1484116) was associated with reduced cardiac function and worse long-term mortality. We leveraged the HF meta-GWASs along with cardiac function-related GWASs to develop a polygenic risk score (PRS) for HF. The PRS successfully identified early-onset HF and those with an increased risk of long-term HF mortality. Our results shed light on the shared and distinct genetic basis of HF between Japanese and European populations and improve the clinical value of HF genetics.

  4. RNF213 Variants, Vasospastic Angina, and Risk of Fatal Myocardial Infarction. International-journal Peer-reviewed

    Keiko Hikino, Satoshi Koyama, Kaoru Ito, Yoshinao Koike, Masaru Koido, Takayoshi Matsumura, Ryo Kurosawa, Kohei Tomizuka, Shuji Ito, Xiaoxi Liu, Yuki Ishikawa, Yukihide Momozawa, Takayuki Morisaki, Yoichiro Kamatani, Taisei Mushiroda, Chikashi Terao

    JAMA cardiology 2024/06/18

    DOI: 10.1001/jamacardio.2024.1483  

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    IMPORTANCE: Vasospastic angina (VSA) is vasospasm of the coronary artery and is particularly prevalent in East Asian populations. However, the specific genetic architecture for VSA at genome-wide levels is not fully understood. OBJECTIVE: To identify genetic factors associated with VSA. DESIGN, SETTING, AND PARTICIPANTS: This was a case-control genome-wide association study of VSA. Data from Biobank Japan (BBJ; enrolled patients from 2002-2008 and 2013-2018) were used, and controls without coronary artery disease (CAD) were enrolled. Patients from the BBJ were genotyped using arrays or a set of arrays. Patients recruited between 2002 and 2005 were classified within the first dataset, and those recruited between 2006 and 2008 were classified within the second dataset. To replicate the genome-wide association study in the first and second datasets, VSA cases and control samples from the latest patients in the BBJ recruited between 2013 and 2018 were analyzed in a third dataset. EXPOSURES: Single-nucleotide variants associated with VSA. MAIN OUTCOMES AND MEASURES: Cases with VSA and controls without CAD. RESULTS: A total of 5720 cases (mean [SD] age, 67 [10] years; 3672 male [64.2%]) and 153 864 controls (mean [SD] age, 62 [15] years; 77 362 male [50.3%]) in 3 datasets were included in this study. The variants at the RNF213 locus showed the strongest association with VSA across the 3 datasets (odds ratio [OR], 2.34; 95% CI, 1.99-2.74; P = 4.4 × 10-25). Additionally, rs112735431, an Asian-specific rare deleterious variant (p.Arg4810Lys) experimentally shown to be associated with reduced angiogenesis and a well-known causal risk for Moyamoya disease was the most promising candidate for a causal variant explaining the association. The effect size of rs112735431 on VSA was distinct from that of other CADs. Furthermore, homozygous carriers of rs112735431 showed an association with VSA characterized by a large effect estimate (OR, 18.34; 95% CI, 5.15-65.22; P = 7.0 × 10-6), deviating from the additive model (OR, 4.35; 95% CI, 1.18-16.05; P = .03). Stratified analyses revealed that rs112735431 exhibited a stronger association in males (χ21 = 7.24; P = .007) and a younger age group (OR, 3.06; 95% CI, 2.24-4.19), corresponding to the epidemiologic features of VSA. In the registry, carriers without CAD of the risk allele rs112735431 had a strikingly high mortality rate due to acute myocardial infarction during the follow-up period (hazard ratio, 2.71; 95% CI, 1.57-4.65; P = 3.3 × 10-4). As previously reported, a possible overlap between VSA and Moyamoya disease was not found. CONCLUSIONS AND RELEVANCE: Results of this study suggest that vascular cell dysfunction mediated by variants in the RNF213 locus may promote coronary vasospasm, and the presence of the risk allele could serve as a predictive factor for the prognosis.

  5. A randomized, double-blind, placebo-controlled pilot trial of low-intensity pulsed ultrasound therapy for refractory angina pectoris

    Tomohiko Shindo, Kenta Ito, Tsuyoshi Ogata, Ryo Kurosawa, Kumiko Eguchi, Yuta Kagaya, Kenichiro Hanawa, Yuhi Hasebe, Kensuke Nishimiya, Takashi Shiroto, Jun Takahashi, Yasuo Okumura, Teruo Noguchi, Yukio Ozaki, Hiroyuki Daida, Nobuhisa Hagiwara, Tohru Masuyama, Taishiro Chikamori, Yoshihiro Fukumoto, Kenichi Tsujita, Hiroshi Kanai, Satoshi Yasuda, Hiroaki Shimokawa

    PLOS ONE 18 (6) e0287714-e0287714 2023/06/23

    Publisher: Public Library of Science (PLoS)

    DOI: 10.1371/journal.pone.0287714  

    eISSN: 1932-6203

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    Background Despite the advances in the treatment of cardiovascular diseases, effective treatment remains to be established to improve the quality of life and prognosis of patients with chronic coronary syndromes. This study was aimed to evaluate the effectiveness and safety of the low-intensity pulsed ultrasound (LIPUS) therapy, which we have developed as a novel non-invasive angiogenic therapy through upregulation of endothelial nitric oxide synthase (eNOS). Methods and findings We conducted a randomized, double-blind, placebo-controlled (RCT) pilot trial of the LIPUS therapy for patients with refractory angina pectoris. The patients who received optimal medical therapy without indication of PCI or CABG due to the lack of graftability or complexity of coronary lesions were enrolled. They were randomly divided into the LIPUS treatment group (N = 31) and the placebo group (N = 25) in a 1:1 fashion. The LIPUS therapy was performed in a transthoracic manner for 20 min for 3 sections each (mitral, papillary muscle, and apex levels) under the conditions that we identified; frequency 1.875 MHz, intensity 0.25 MPa, and 32 cycles. The primary endpoint was weekly use of nitroglycerin. Secondary endpoints included stress myocardial perfusion imaging and others. The average weekly nitroglycerin use (times/week) was decreased from 5.50 to 2.44 in the LIPUS group and from 5.94 to 2.83 in the placebo group. The changes in the average weekly nitroglycerin use were comparable; -3.06 (95% CI: -4.481 to -1.648) in the LIPUS group (P<0.01) and -3.10 (95% CI: -4.848 to -1.356) in the placebo group (P<0.01). No adverse effects were noted. Conclusions In the present study, the LIPUS therapy did not further ameliorate chest pain as compared with optimal medications alone in patients with refractory angina pectoris. The present findings need to be confirmed in another trial with a large number of patients. (Registration ID: UMIN000012369).

  6. Beneficial Effects of Low-Intensity Pulsed Ultrasound Therapy on Right Ventricular Dysfunction in Animal Models Peer-reviewed

    Takashi Nakata, Tomohiko Shindo, Kenta Ito, Kumiko Eguchi, Yuto Monma, Sadamitsu Ichijo, Rie Ryoke, Wakako Satoh, Kazunori Kumasaka, Haruka Sato, Ryo Kurosawa, Kimio Satoh, Ryuta Kawashima, Masahito Miura, Hiroshi Kanai, Satoshi Yasuda, Hiroaki Shimokawa

    JACC: Basic to Translational Science 8 (3) 283-297 2023/03

    DOI: 10.1016/j.jacbts.2022.08.010  

    ISSN: 2452-302X

  7. Cross-ancestry genome-wide analysis of atrial fibrillation unveils disease biology and enables cardioembolic risk prediction. International-journal Peer-reviewed

    Kazuo Miyazawa, Kaoru Ito, Masamichi Ito, Zhaonan Zou, Masayuki Kubota, Seitaro Nomura, Hiroshi Matsunaga, Satoshi Koyama, Hirotaka Ieki, Masato Akiyama, Yoshinao Koike, Ryo Kurosawa, Hiroki Yoshida, Kouichi Ozaki, Yoshihiro Onouchi, Atsushi Takahashi, Koichi Matsuda, Yoshinori Murakami, Hiroyuki Aburatani, Michiaki Kubo, Yukihide Momozawa, Chikashi Terao, Shinya Oki, Hiroshi Akazawa, Yoichiro Kamatani, Issei Komuro

    Nature genetics 55 (2) 187-197 2023/01/19

    DOI: 10.1038/s41588-022-01284-9  

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    Atrial fibrillation (AF) is a common cardiac arrhythmia resulting in increased risk of stroke. Despite highly heritable etiology, our understanding of the genetic architecture of AF remains incomplete. Here we performed a genome-wide association study in the Japanese population comprising 9,826 cases among 150,272 individuals and identified East Asian-specific rare variants associated with AF. A cross-ancestry meta-analysis of >1 million individuals, including 77,690 cases, identified 35 new susceptibility loci. Transcriptome-wide association analysis identified IL6R as a putative causal gene, suggesting the involvement of immune responses. Integrative analysis with ChIP-seq data and functional assessment using human induced pluripotent stem cell-derived cardiomyocytes demonstrated ERRg as having a key role in the transcriptional regulation of AF-associated genes. A polygenic risk score derived from the cross-ancestry meta-analysis predicted increased risks of cardiovascular and stroke mortalities and segregated individuals with cardioembolic stroke in undiagnosed AF patients. Our results provide new biological and clinical insights into AF genetics and suggest their potential for clinical applications.

  8. Deep learning-based age estimation from chest X-rays indicates cardiovascular prognosis. International-journal Peer-reviewed

    Hirotaka Ieki, Kaoru Ito, Mike Saji, Rei Kawakami, Yuji Nagatomo, Kaori Takada, Toshiya Kariyasu, Haruhiko Machida, Satoshi Koyama, Hiroki Yoshida, Ryo Kurosawa, Hiroshi Matsunaga, Kazuo Miyazawa, Kouichi Ozaki, Yoshihiro Onouchi, Susumu Katsushika, Ryo Matsuoka, Hiroki Shinohara, Toshihiro Yamaguchi, Satoshi Kodera, Yasutomi Higashikuni, Katsuhito Fujiu, Hiroshi Akazawa, Nobuo Iguchi, Mitsuaki Isobe, Tsutomu Yoshikawa, Issei Komuro

    Communications medicine 2 (1) 159-159 2022/12/09

    DOI: 10.1038/s43856-022-00220-6  

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    BACKGROUND: In recent years, there has been considerable research on the use of artificial intelligence to estimate age and disease status from medical images. However, age estimation from chest X-ray (CXR) images has not been well studied and the clinical significance of estimated age has not been fully determined. METHODS: To address this, we trained a deep neural network (DNN) model using more than 100,000 CXRs to estimate the patients' age solely from CXRs. We applied our DNN to CXRs of 1562 consecutive hospitalized heart failure patients, and 3586 patients admitted to the intensive care unit with cardiovascular disease. RESULTS: The DNN's estimated age (X-ray age) showed a strong significant correlation with chronological age on the hold-out test data and independent test data. Elevated X-ray age is associated with worse clinical outcomes (heart failure readmission and all-cause death) for heart failure. Additionally, elevated X-ray age was associated with a worse prognosis in 3586 patients admitted to the intensive care unit with cardiovascular disease. CONCLUSIONS: Our results suggest that X-ray age can serve as a useful indicator of cardiovascular abnormalities, which will help clinicians to predict, prevent and manage cardiovascular diseases.

  9. Impact of spaceflight and artificial gravity on sulfur metabolism in mouse liver: sulfur metabolomic and transcriptomic analysis. International-journal Peer-reviewed

    Ryo Kurosawa, Ryota Sugimoto, Hiroe Imai, Kohei Atsuji, Koji Yamada, Yusuke Kawano, Iwao Ohtsu, Kengo Suzuki

    Scientific reports 11 (1) 1-12 2021/11/08

    DOI: 10.1038/s41598-021-01129-1  

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    Spaceflight induces hepatic damage, partially owing to oxidative stress caused by the space environment such as microgravity and space radiation. We examined the roles of anti-oxidative sulfur-containing compounds on hepatic damage after spaceflight. We analyzed the livers of mice on board the International Space Station for 30 days. During spaceflight, half of the mice were exposed to artificial earth gravity (1 g) using centrifugation cages. Sulfur-metabolomics of the livers of mice after spaceflight revealed a decrease in sulfur antioxidants (ergothioneine, glutathione, cysteine, taurine, thiamine, etc.) and their intermediates (cysteine sulfonic acid, hercynine, N-acethylserine, serine, etc.) compared to the controls on the ground. Furthermore, RNA-sequencing showed upregulation of gene sets related to oxidative stress and sulfur metabolism, and downregulation of gene sets related to glutathione reducibility in the livers of mice after spaceflight, compared to controls on the ground. These changes were partially mitigated by exposure to 1 g centrifugation. For the first time, we observed a decrease in sulfur antioxidants based on a comprehensive analysis of the livers of mice after spaceflight. Our data suggest that a decrease in sulfur-containing compounds owing to both microgravity and other spaceflight environments (radiation and stressors) contributes to liver damage after spaceflight.

  10. Low-intensity pulsed ultrasound ameliorates cardiac diastolic dysfunction in mice: a possible novel therapy for heart failure with preserved left ventricular ejection fraction. International-journal Peer-reviewed

    Yuto Monma, Tomohiko Shindo, Kumiko Eguchi, Ryo Kurosawa, Yuta Kagaya, Yosuke Ikumi, Sadamitsu Ichijo, Takashi Nakata, Satoshi Miyata, Ayana Matsumoto, Haruka Sato, Masahito Miura, Hiroshi Kanai, Hiroaki Shimokawa

    Cardiovascular research 117 (5) 1325-1338 2021/04/23

    DOI: 10.1093/cvr/cvaa221  

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    AIMS: Heart failure with preserved left ventricular ejection fraction (HFpEF) is a serious health problem worldwide, as no effective therapy is yet available. We have previously demonstrated that our low-intensity pulsed ultrasound (LIPUS) therapy is effective and safe for angina and dementia. In this study, we aimed to examine whether the LIPUS therapy also ameliorates cardiac diastolic dysfunction in mice. METHODS AND RESULTS: Twelve-week-old obese diabetic mice (db/db) and their control littermates (db/+) were treated with either the LIPUS therapy [1.875 MHz, 32 cycles, Ispta (spatial peak temporal average intensity) 117-162 mW/cm2, 0.25 W/cm2] or placebo procedure two times a week for 4 weeks. At 20-week-old, transthoracic echocardiography and invasive haemodynamic analysis showed that cardiac diastolic function parameters, such as e', E/e', end-diastolic pressure-volume relationship, Tau, and dP/dt min, were all deteriorated in placebo-treated db/db mice compared with db/+ mice, while systolic function was preserved. Importantly, these cardiac diastolic function parameters were significantly ameliorated in the LIPUS-treated db/db mice. We also measured the force (F) and intracellular Ca2+ ([Ca2+]i) in trabeculae dissected from ventricles. We found that relaxation time and [Ca2+]i decay (Tau) were prolonged during electrically stimulated twitch contractions in db/db mice, both of which were significantly ameliorated in the LIPUS-treated db/db mice, indicating that the LIPUS therapy also improves relaxation properties at tissue level. Functionally, exercise capacity was also improved in the LIPUS-treated db/db mice. Histologically, db/db mice displayed progressed cardiomyocyte hypertrophy and myocardial interstitial fibrosis, while those changes were significantly suppressed in the LIPUS-treated db/db mice. Mechanistically, western blot showed that the endothelial nitric oxide synthase (eNOS)-nitric oxide (NO)-cGMP-protein kinase G (PKG) pathway and Ca2+-handling molecules were up-regulated in the LIPUS-treated heart. CONCLUSIONS: These results indicate that the LIPUS therapy ameliorates cardiac diastolic dysfunction in db/db mice through improvement of eNOS-NO-cGMP-PKG pathway and cardiomyocyte Ca2+-handling system, suggesting its potential usefulness for the treatment of HFpEF patients.

  11. Identification of Celastrol as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension and Right Ventricular Failure Through Suppression of Bsg (Basigin)/CyPA (Cyclophilin A). International-journal Peer-reviewed

    Ryo Kurosawa, Kimio Satoh, Takashi Nakata, Tomohiko Shindo, Nobuhiro Kikuchi, Taijyu Satoh, Mohammad A H Siddique, Junichi Omura, Shinichiro Sunamura, Masamichi Nogi, Yutaro Takeuchi, Satoshi Miyata, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 41 (3) 1205-1217 2021/03

    DOI: 10.1161/ATVBAHA.120.315731  

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    OBJECTIVE: Pulmonary arterial hypertension is characterized by abnormal proliferation of pulmonary artery smooth muscle cells and vascular remodeling, which leads to right ventricular (RV) failure. Bsg (Basigin) is a transmembrane glycoprotein that promotes myofibroblast differentiation, cell proliferation, and matrix metalloproteinase activation. CyPA (cyclophilin A) binds to its receptor Bsg and promotes pulmonary artery smooth muscle cell proliferation and inflammatory cell recruitment. We previously reported that Bsg promotes cardiac fibrosis and failure in the left ventricle in response to pressure-overload in mice. However, the roles of Bsg and CyPA in RV failure remain to be elucidated. Approach and Results: First, we found that protein levels of Bsg and CyPA were upregulated in the heart of hypoxia-induced pulmonary hypertension (PH) in mice and monocrotaline-induced PH in rats. Furthermore, cardiomyocyte-specific Bsg-overexpressing mice showed exacerbated RV hypertrophy, fibrosis, and dysfunction compared with their littermates under chronic hypoxia and pulmonary artery banding. Treatment with celastrol, which we identified as a suppressor of Bsg and CyPA by drug screening, decreased proliferation, reactive oxygen species, and inflammatory cytokines in pulmonary artery smooth muscle cells. Furthermore, celastrol treatment ameliorated RV systolic pressure, hypertrophy, fibrosis, and dysfunction in hypoxia-induced PH in mice and SU5416/hypoxia-induced PH in rats with reduced Bsg, CyPA, and inflammatory cytokines in the hearts and lungs. CONCLUSIONS: These results indicate that elevated Bsg in pressure-overloaded RV exacerbates RV dysfunction and that celastrol ameliorates RV dysfunction in PH model animals by suppressing Bsg and its ligand CyPA. Thus, celastrol can be a novel drug for PH and RV failure that targets Bsg and CyPA. Graphic Abstract: A graphic abstract is available for this article.

  12. Identification of the Novel Variants in Patients With Chronic Thromboembolic Pulmonary Hypertension. International-journal Peer-reviewed

    Nobuhiro Yaoita, Kimio Satoh, Taijyu Satoh, Toru Shimizu, Sakae Saito, Koichiro Sugimura, Shunsuke Tatebe, Saori Yamamoto, Tatsuo Aoki, Nobuhiro Kikuchi, Ryo Kurosawa, Satoshi Miyata, Masao Nagasaki, Jun Yasuda, Hiroaki Shimokawa

    Journal of the American Heart Association 9 (21) e015902 2020/11/03

    DOI: 10.1161/JAHA.120.015902  

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    Background Although chronic thromboembolic pulmonary hypertension (CTEPH) and acute pulmonary embolism (APE) share some clinical manifestations, a limited proportion of patients with CTEPH have a history of APE. Moreover, in histopathologic studies, it has been revealed that pulmonary vasculature lesions similar to pulmonary arterial hypertension existed in patients with CTEPH. Thus, it remains unknown whether these 3 disorders also share genetic backgrounds. Methods and Results Whole exome screening was performed with DNA isolated from 51 unrelated patients with CTEPH of Japanese ancestry. The frequency of genetic variants associated with pulmonary arterial hypertension or APE in patients with CTEPH was compared with those in the integrative Japanese Genome Variation Database 3.5KJPN. Whole exome screening analysis showed 17 049 nonsynonymous variants in patients with CTEPH. Although we found 6 nonsynonymous variants that are associated with APE in patients with CTEPH, there was no nonsynonymous variant associated with pulmonary arterial hypertension. Patients with CTEPH with a history of APE had nonsynonymous variants of F5, which encodes factor V. In contrast, patients with CTEPH without a history of APE had a nonsynonymous variant of THBD, which encodes thrombomodulin. Moreover, thrombin-activatable fibrinolysis inhibitor, which is one of the pathogenic proteins in CTEPH, was significantly more activated in those who had the variants of THBD compared with those without it. Conclusions These results provide the first evidence that patients with CTEPH have some variants associated with APE, regardless of the presence or absence of a history of APE. Furthermore, the variants might be different between patients with CTEPH with and without a history of APE.

  13. 肺高血圧症、右心不全治療薬としてのBasigin/Cyclophilin A阻害薬celastrolの同定

    黒澤 亮, 佐藤 公雄, 菊地 順裕, 佐藤 大樹, モハメド・アブデュル・ハイシディック, 大村 淳一, 砂村 慎一郎, 野木 正道, 下川 宏明

    血管 43 (1) 36-36 2020/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  14. Identification of Adipsin as a Novel Prognostic Biomarker in Patients With Coronary Artery Disease. International-journal Peer-reviewed

    Tomohiro Ohtsuki, Kimio Satoh, Toru Shimizu, Shohei Ikeda, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Shinichiro Sunamura, Nobuhiro Yaoita, Junichi Omura, Tatsuo Aoki, Shunsuke Tatebe, Koichiro Sugimura, Jun Takahashi, Satoshi Miyata, Hiroaki Shimokawa

    Journal of the American Heart Association 8 (23) e013716 2019/12/03

    DOI: 10.1161/JAHA.119.013716  

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    Background Circulating proteins are exposed to vascular endothelial layer and influence their functions. Among them, adipsin is a member of the trypsin family of peptidases and is mainly secreted from adipocytes, monocytes, and macrophages, catalyzing the rate-limiting step of the alternative complement pathway. However, its pathophysiological role in cardiovascular disease remains to be elucidated. Here, we examined whether serum adipsin levels have a prognostic impact in patients with coronary artery disease. Methods and Results In 370 consecutive patients undergoing diagnostic coronary angiography, we performed a cytokine array analysis for screening serum levels of 50 cytokines/chemokines and growth factors. Among them, classification and regression analysis identified adipsin as the best biomarker for prediction of their long-term prognosis (median 71 months; interquartile range, 55-81 months). Kaplan-Meier curve showed that higher adipsin levels (≥400 ng/mL) were significantly associated with all-cause death (hazard ratio [HR], 4.2; 95% CI, 1.7-10.6 [P<0.001]) and rehospitalization (HR, 2.4; 95% CI, 1.7-3.5 [P<0.001]). Interestingly, higher high-sensitivity C-reactive protein levels (≥1 mg/L) were significantly correlated with all-cause death (HR, 3.2; 95% CI, 1.7-5.9 [P<0.001]) and rehospitalization (HR, 1.5, 95% CI, 1.1-1.9 [P<0.01]). Importantly, the combination of adipsin (≥400 ng/mL) and high-sensitivity C-reactive protein (≥1 mg/L) was more significantly associated with all-cause death (HR, 21.0; 95% CI, 2.9-154.1 [P<0.001]). Finally, the receiver operating characteristic curve demonstrated that serum adipsin levels predict the death caused by acute myocardial infarction in patients with coronary artery disease (C-statistic, 0.847). Conclusions These results indicate that adipsin is a novel biomarker that predicts all-cause death and rehospitalization in patients with coronary artery disease, demonstrating the novel aspects of the alternative complementary system in the pathogenesis of coronary artery disease.

  15. Diagnostic and Prognostic Significance of Serum Levels of SeP (Selenoprotein P) in Patients With Pulmonary Hypertension. International-journal Peer-reviewed

    Nobuhiro Kikuchi, Kimio Satoh, Taijyu Satoh, Nobuhiro Yaoita, Mohammad Abdul Hai Siddique, Junichi Omura, Ryo Kurosawa, Masamichi Nogi, Shinichiro Sunamura, Satoshi Miyata, Hirofumi Misu, Yoshiro Saito, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 39 (12) 2553-2562 2019/12

    DOI: 10.1161/ATVBAHA.119.313267  

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    OBJECTIVE: Despite the recent progress in upfront combination therapy for pulmonary arterial hypertension (PAH), useful biomarkers for the disorder still remain to be developed. SeP (Selenoprotein P) is a glycoprotein secreted from various kinds of cells including pulmonary artery smooth muscle cells to maintain cellular metabolism. We have recently demonstrated that SeP production from pulmonary artery smooth muscle cells is upregulated and plays crucial roles in the pathogenesis of PAH. However, it remains to be elucidated whether serum SeP levels could be a useful biomarker for PAH. Approach and Results: We measured serum SeP levels and evaluated their prognostic impacts in 65 consecutive patients with PAH and 20 controls during follow-up (mean, 1520 days; interquartile range, 1393-1804 days). Serum SeP levels were measured using a newly developed sol particle homogeneous immunoassay. The patients with PAH showed significantly higher serum SeP levels compared with controls. Higher SeP levels (cutoff point, 3.47 mg/L) were associated with the outcome (composite end point of all-cause death and lung transplantation) in patients with PAH (hazard ratio, 4.85 [1.42-16.6]; P<0.01). Importantly, we found that the absolute change in SeP of patients with PAH (ΔSeP) in response to the initiation of PAH-specific therapy significantly correlated with the absolute change in mean pulmonary artery pressure, pulmonary vascular resistance (ΔPVR), and cardiac index (ΔCI; R=0.78, 0.76, and -0.71 respectively, all P<0.0001). Moreover, increase in ΔSeP during the follow-up predicted poor outcome of PAH. CONCLUSIONS: Serum SeP is a novel biomarker for diagnosis and assessment of treatment efficacy and long-term prognosis in patients with PAH.

  16. Identification of Emetine as a Therapeutic Agent for Pulmonary Arterial Hypertension: Novel Effects of an Old Drug. International-journal Peer-reviewed

    Mohammad Abdul Hai Siddique, Kimio Satoh, Ryo Kurosawa, Nobuhiro Kikuchi, Md Elias-Al-Mamun, Junichi Omura, Taijyu Satoh, Masamichi Nogi, Shinichiro Sunamura, Satoshi Miyata, Hirofumi Ueda, Hidetoshi Tokuyama, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 39 (11) 2367-2385 2019/11

    DOI: 10.1161/ATVBAHA.119.313309  

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    OBJECTIVE: Excessive proliferation and apoptosis resistance are special characteristics of pulmonary artery smooth muscle cells (PASMCs) in pulmonary arterial hypertension (PAH). However, the drugs in clinical use for PAH target vascular dilatation, which do not exert adequate effects in patients with advanced PAH. Here, we report a novel therapeutic effect of emetine, a principal alkaloid extracted from the root of ipecac clinically used as an emetic and antiprotozoal drug. Approach and Results: We performed stepwise screenings for 5562 compounds from original library. First, we performed high-throughput screening with PASMCs from patients with PAH (PAH-PASMCs) and found 80 compounds that effectively inhibited proliferation. Second, we performed the repeatability and counter assay. Finally, we performed a concentration-dependent assay and found that emetine inhibits PAH-PASMC proliferation. Interestingly, emetine significantly reduced protein levels of HIFs (hypoxia-inducible factors; HIF-1α and HIF-2α) and downstream PDK1 (pyruvate dehydrogenase kinase 1). Moreover, emetine significantly reduced the protein levels of RhoA (Ras homolog gene family, member A), Rho-kinases (ROCK1 and ROCK2 [rho-associated coiled-coil containing protein kinases 1 and 2]), and their downstream CyPA (cyclophilin A), and Bsg (basigin) in PAH-PASMCs. Consistently, emetine treatment significantly reduced the secretion of cytokines/chemokines and growth factors from PAH-PASMCs. Interestingly, emetine reduced protein levels of BRD4 (bromodomain-containing protein 4) and downstream survivin, both of which are involved in many cellular functions, such as cell cycle, apoptosis, and inflammation. Finally, emetine treatment ameliorated pulmonary hypertension in 2 experimental rat models, accompanied by reduced inflammatory changes in the lungs and recovered right ventricular functions. CONCLUSIONS: Emetine is an old but novel drug for PAH that reduces excessive proliferation of PAH-PASMCs and improves right ventricular functions.

  17. ADAMTS8 Promotes the Development of Pulmonary Arterial Hypertension and Right Ventricular Failure: A Possible Novel Therapeutic Target. International-journal Peer-reviewed

    Junichi Omura, Kimio Satoh, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Tomohiro Ohtsuki, Md Elias Al-Mamun, Mohammad Abdul Hai Siddique, Nobuhiro Yaoita, Shinichiro Sunamura, Satoshi Miyata, Yasushi Hoshikawa, Yoshinori Okada, Hiroaki Shimokawa

    Circulation research 125 (10) 884-906 2019/10/25

    DOI: 10.1161/CIRCRESAHA.119.315398  

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    RATIONALE: Pulmonary arterial hypertension (PAH) is characterized by pulmonary vascular remodeling with aberrant pulmonary artery smooth muscle cells (PASMCs) proliferation, endothelial dysfunction, and extracellular matrix remodeling. OBJECTIVE: Right ventricular (RV) failure is an important prognostic factor in PAH. Thus, we need to elucidate a novel therapeutic target in both PAH and RV failure. METHODS AND RESULTS: We performed microarray analysis in PASMCs from patients with PAH (PAH-PASMCs) and controls. We found a ADAMTS8 (disintegrin and metalloproteinase with thrombospondin motifs 8), a secreted protein specifically expressed in the lung and the heart, was upregulated in PAH-PASMCs and the lung in hypoxia-induced pulmonary hypertension (PH) in mice. To elucidate the role of ADAMTS8 in PH, we used vascular smooth muscle cell-specific ADAMTS8-knockout mice (ADAMTSΔSM22). Hypoxia-induced PH was attenuated in ADAMTSΔSM22 mice compared with controls. ADAMTS8 overexpression increased PASMC proliferation with downregulation of AMPK (AMP-activated protein kinase). In contrast, deletion of ADAMTS8 reduced PASMC proliferation with AMPK upregulation. Moreover, deletion of ADAMTS8 reduced mitochondrial fragmentation under hypoxia in vivo and in vitro. Indeed, PASMCs harvested from ADAMTSΔSM22 mice demonstrated that phosphorylated DRP-1 (dynamin-related protein 1) at Ser637 was significantly upregulated with higher expression of profusion genes (Mfn1 and Mfn2) and improved mitochondrial function. Moreover, recombinant ADAMTS8 induced endothelial dysfunction and matrix metalloproteinase activation in an autocrine/paracrine manner. Next, to elucidate the role of ADAMTS8 in RV function, we developed a cardiomyocyte-specific ADAMTS8 knockout mice (ADAMTS8ΔαMHC). ADAMTS8ΔαMHC mice showed ameliorated RV failure in response to chronic hypoxia. In addition, ADAMTS8ΔαMHC mice showed enhanced angiogenesis and reduced RV ischemia and fibrosis. Finally, high-throughput screening revealed that mebendazole, which is used for treatment of parasite infections, reduced ADAMTS8 expression and cell proliferation in PAH-PASMCs and ameliorated PH and RV failure in PH rodent models. CONCLUSIONS: These results indicate that ADAMTS8 is a novel therapeutic target in PAH.

  18. Checkpoint Kinase 1 Promotes the Development of Pulmonary Arterial Hypertension. International-journal

    Kimio Satoh, Nobuhiro Kikuchi, Ryo Kurosawa, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 39 (8) 1504-1506 2019/08

    DOI: 10.1161/ATVBAHA.119.312969  

  19. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension. International-journal Peer-reviewed

    Ryo Kurosawa, Kimio Satoh, Nobuhiro Kikuchi, Haruhisa Kikuchi, Daisuke Saigusa, Md Elias Al-Mamun, Mohammad A H Siddique, Junichi Omura, Taijyu Satoh, Shinichiro Sunamura, Masamichi Nogi, Kazuhiko Numano, Satoshi Miyata, Akira Uruno, Kuniyuki Kano, Yotaro Matsumoto, Takayuki Doi, Junken Aoki, Yoshiteru Oshima, Masayuki Yamamoto, Hiroaki Shimokawa

    Circulation research 125 (3) 309-327 2019/07/19

    DOI: 10.1161/CIRCRESAHA.119.315229  

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    RATIONALE: Pulmonary arterial hypertension (PAH) is characterized by enhanced proliferation of pulmonary artery smooth muscle cells (PASMCs) accompanying increased production of inflammatory factors and adaptation of the mitochondrial metabolism to a hyperproliferative state. However, all the drugs in clinical use target pulmonary vascular dilatation, which may not be effective for patients with advanced PAH. OBJECTIVE: We aimed to discover a novel drug for PAH that inhibits PASMC proliferation. METHODS AND RESULTS: We screened 5562 compounds from original library using high-throughput screening system to discover compounds which inhibit proliferation of PASMCs from patients with PAH (PAH-PASMCs). We found that celastramycin, a benzoyl pyrrole-type compound originally found in a bacteria extract, inhibited the proliferation of PAH-PASMCs in a dose-dependent manner with relatively small effects on PASMCs from healthy donors. Then, we made 25 analogs of celastramycin and selected the lead compound, which significantly inhibited cell proliferation of PAH-PASMCs and reduced cytosolic reactive oxygen species levels. Mechanistic analysis demonstrated that celastramycin reduced the protein levels of HIF-1α (hypoxia-inducible factor 1α), which impairs aerobic metabolism, and κB (nuclear factor-κB), which induces proinflammatory signals, in PAH-PASMCs, leading to reduced secretion of inflammatory cytokine. Importantly, celastramycin treatment reduced reactive oxygen species levels in PAH-PASMCs with increased protein levels of Nrf2 (nuclear factor erythroid 2-related factor 2), a master regulator of cellular response against oxidative stress. Furthermore, celastramycin treatment improved mitochondrial energy metabolism with recovered mitochondrial network formation in PAH-PASMCs. Moreover, these celastramycin-mediated effects were regulated by ZFC3H1 (zinc finger C3H1 domain-containing protein), a binding partner of celastramycin. Finally, celastramycin treatment ameliorated pulmonary hypertension in 3 experimental animal models, accompanied by reduced inflammatory changes in the lungs. CONCLUSIONS: These results indicate that celastramycin ameliorates pulmonary hypertension, reducing excessive proliferation of PAH-PASMCs with less inflammation and reactive oxygen species levels, and recovered mitochondrial energy metabolism. Thus, celastramycin is a novel drug for PAH that targets antiproliferative effects on PAH-PASMCs.

  20. Xanthine Oxidase Inhibitor, Febuxostat Ameliorates the High Salt Intake-Induced Cardiac Hypertrophy and Fibrosis in Dahl Salt-Sensitive Rats. International-journal Peer-reviewed

    Asako Namai-Takahashi, Akihiro Sakuyama, Takahiro Nakamura, Takahiro Miura, Junta Takahashi, Ryo Kurosawa, Masahiro Kohzuki, Osamu Ito

    American journal of hypertension 32 (1) 26-33 2019/01/01

    DOI: 10.1093/ajh/hpy143  

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    BACKGROUND: Xanthine oxidase (XO) is a source of reactive oxygen species production in the heart. However, pathophysiological role of XO has not been clarified in hypertensive heart disease. Thus, the present study examined the impacts of high salt (HS) intake and febuxostat (Fx), a XO inhibitor in Dahl salt-sensitive (Dahl-S) rats. METHODS: Eight-week old, male Dahl-S rats were fed a normal salt diet (0.6% NaCl) or a HS diet (8% NaCl) for 8 weeks. A part of the rats fed the HS diet were simultaneously treated with Fx (3 mg/kg/day). RESULTS: HS intake increased blood pressure and heart weight with cardiomyocyte hypertrophy and interstitial fibrosis in the left ventricle (LV), and Fx diminished them. HS increased the XO activity 4.7-fold and nicotinamide-adenine dinucleotide phosphate (NADPH) oxidase activity 1.5-fold, and Fx not only blocked the XO activity but also inhibited the HS-increased NADPH oxidase activity. HS increased the expression of XO, collagen, transforming growth factor-β1 (TGF-β1), angiotensin-converting enzyme, and angiotensin II type 1 receptor and the phosphorylation of extracellular signal-regulated kinase (ERK) in the LV, and Fx reduced the expression and phosphorylation of these proteins except XO. CONCLUSIONS: Fx ameliorates the HS intake-induced hypertension, LV hypertrophy, and fibrosis with decreasing the TGF-β1 expression and ERK phosphorylation in Dahl-S rats. Fx also down-regulates cardiac NADPH oxidase and renin-angiotensin system. The XO inhibition may be an effective therapy for hypertensive heart disease.

  21. Identification of Novel Therapeutic Targets for Pulmonary Arterial Hypertension. International-journal Peer-reviewed

    Kimio Satoh, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Shinichiro Sunamura, Mohammad Abdul Hai Siddique, Junichi Omura, Nobuhiro Yaoita, Hiroaki Shimokawa

    International journal of molecular sciences 19 (12) 2018/12/17

    DOI: 10.3390/ijms19124081  

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    Pulmonary arterial hypertension (PAH) and chronic thromboembolic pulmonary hypertension (CTEPH) are fatal diseases; however, their pathogenesis still remains to be elucidated. We have recently screened novel pathogenic molecules and have performed drug discovery targeting those molecules. Pulmonary artery smooth muscle cells (PASMCs) in patients with PAH (PAH-PASMCs) have high proliferative properties like cancer cells, which leads to thickening and narrowing of distal pulmonary arteries. Thus, we conducted a comprehensive analysis of PAH-PASMCs and lung tissues to search for novel pathogenic proteins. We validated the pathogenic role of the selected proteins by using tissue-specific knockout mice. To confirm its clinical significance, we used patient-derived blood samples to evaluate the potential as a biomarker for diagnosis and prognosis. Finally, we conducted a high throughput screening and found inhibitors for the pathogenic proteins.

  22. Small GTP-Binding Protein GDP Dissociation Stimulator Prevents Thoracic Aortic Aneurysm Formation and Rupture by Phenotypic Preservation of Aortic Smooth Muscle Cells. International-journal Peer-reviewed

    Masamichi Nogi, Kimio Satoh, Shinichiro Sunamura, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Junichi Omura, Md Elias-Al-Mamun, Mohammad Abdul Hai Siddique, Kazuhiko Numano, Shun Kudo, Satoshi Miyata, Masatoshi Akiyama, Kiichiro Kumagai, Shunsuke Kawamoto, Yoshikatsu Saiki, Hiroaki Shimokawa

    Circulation 138 (21) 2413-2433 2018/11/20

    DOI: 10.1161/CIRCULATIONAHA.118.035648  

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    BACKGROUND: Thoracic aortic aneurysm (TAA) and dissection are fatal diseases that cause aortic rupture and sudden death. The small GTP-binding protein GDP dissociation stimulator (SmgGDS) is a crucial mediator of the pleiotropic effects of statins. Previous studies revealed that reduced force generation in aortic smooth muscle cells (AoSMCs) causes TAA and thoracic aortic dissection. METHODS: To examine the role of SmgGDS in TAA formation, we used an angiotensin II (1000 ng·min-1·kg-1, 4 weeks)-induced TAA model. RESULTS: We found that 33% of Apoe-/- SmgGDS+/- mice died suddenly as a result of TAA rupture, whereas there was no TAA rupture in Apoe-/- control mice. In contrast, there was no significant difference in the ratio of abdominal aortic aneurysm rupture between the 2 genotypes. We performed ultrasound imaging every week to follow up the serial changes in aortic diameters. The diameter of the ascending aorta progressively increased in Apoe-/- SmgGDS+/- mice compared with Apoe-/- mice, whereas that of the abdominal aorta remained comparable between the 2 genotypes. Histological analysis of Apoe-/- SmgGDS+/- mice showed dissections of major thoracic aorta in the early phase of angiotensin II infusion (day 3 to 5) and more severe elastin degradation compared with Apoe-/- mice. Mechanistically, Apoe-/- SmgGDS+/- mice showed significantly higher levels of oxidative stress, matrix metalloproteinases, and inflammatory cell migration in the ascending aorta compared with Apoe-/- mice. For mechanistic analyses, we primary cultured AoSMCs from the 2 genotypes. After angiotensin II (100 nmol/L) treatment for 24 hours, Apoe-/- SmgGDS+/- AoSMCs showed significantly increased matrix metalloproteinase activity and oxidative stress levels compared with Apoe-/- AoSMCs. In addition, SmgGDS deficiency increased cytokines/chemokines and growth factors in AoSMCs. Moreover, expressions of fibrillin-1 ( FBN1), α-smooth muscle actin ( ACTA2), myosin-11 ( MYH11), MYLLK, and PRKG1, which are force generation genes, were significantly reduced in Apoe-/- SmgGDS+/- AoSMCs compared with Apoe-/- AoSMCs. A similar tendency was noted in AoSMCs from patients with TAA compared with those from control subjects. Finally, local delivery of the SmgGDS gene construct reversed the dilation of the ascending aorta in Apoe-/- SmgGDS+/- mice. CONCLUSIONS: These results suggest that SmgGDS is a novel therapeutic target for the prevention and treatment of TAA.

  23. Whole-brain low-intensity pulsed ultrasound therapy markedly improves cognitive dysfunctions in mouse models of dementia - Crucial roles of endothelial nitric oxide synthase Peer-reviewed

    Kumiko Eguchi, Tomohiko Shindo, Kenta Ito, Tsuyoshi Ogata, Ryo Kurosawa, Yuta Kagaya, Yuto Monma, Sadamitsu Ichijo, Sachie Kasukabe, Satoshi Miyata, Takeo Yoshikawa, Kazuhiko Yanai, Hirofumi Taki, Hiroshi Kanai, Noriko Osumi, Hiroaki Shimokawa

    Brain Stimulation 11 (5) 959-973 2018/09

    DOI: 10.1016/j.brs.2018.05.012  

    ISSN: 1935-861X

    eISSN: 1876-4754

  24. Selenoprotein P Promotes the Development of Pulmonary Arterial Hypertension: Possible Novel Therapeutic Target. International-journal Peer-reviewed

    Nobuhiro Kikuchi, Kimio Satoh, Ryo Kurosawa, Nobuhiro Yaoita, Md Elias-Al-Mamun, Mohammad Abdul Hai Siddique, Junichi Omura, Taijyu Satoh, Masamichi Nogi, Shinichiro Sunamura, Satoshi Miyata, Yoshiro Saito, Yasushi Hoshikawa, Yoshinori Okada, Hiroaki Shimokawa

    Circulation 138 (6) 600-623 2018/08/07

    DOI: 10.1161/CIRCULATIONAHA.117.033113  

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    BACKGROUND: Excessive proliferation and apoptosis resistance of pulmonary artery smooth muscle cells (PASMCs) are key mechanisms of pulmonary arterial hypertension (PAH). Despite the multiple combination therapy, a considerable number of patients develop severe pulmonary hypertension (PH) because of the lack of diagnostic biomarker and antiproliferative therapies for PASMCs. METHODS: Microarray analyses were used to identify a novel therapeutic target for PAH. In vitro experiments, including lung and serum samples from patients with PAH, cultured PAH-PASMCs, and high-throughput screening of 3336 low-molecular-weight compounds, were used for mechanistic study and exploring a novel therapeutic agent. Five genetically modified mouse strains, including PASMC-specific selenoprotein P (SeP) knockout mice and PH model rats, were used to study the role of SeP and therapeutic capacity of the compounds for the development of PH in vivo. RESULTS: Microarray analysis revealed a 32-fold increase in SeP in PAH-PASMCs compared with control PASMCs. SeP is a widely expressed extracellular protein maintaining cellular metabolism. Immunoreactivity of SeP was enhanced in the thickened media of pulmonary arteries in PAH. Serum SeP levels were also elevated in patients with PH compared with controls, and high serum SeP predicted poor outcome. SeP-knockout mice ( SeP-/-) exposed to chronic hypoxia showed significantly reduced right ventricular systolic pressure, right ventricular hypertrophy, and pulmonary artery remodeling compared with controls. In contrast, systemic SeP-overexpressing mice showed exacerbation of hypoxia-induced PH. Furthermore, PASMC-specific SeP-/- mice showed reduced hypoxia-induced PH compared with controls, whereas neither liver-specific SeP knockout nor liver-specific SeP-overexpressing mice showed significant differences with controls. Altogether, protein levels of SeP in the lungs were associated with the development of PH. Mechanistic experiments demonstrated that SeP promotes PASMC proliferation and resistance to apoptosis through increased oxidative stress and mitochondrial dysfunction, which were associated with activated hypoxia-inducible factor-1α and dysregulated glutathione metabolism. It is important to note that the high-throughput screening of 3336 compounds identified that sanguinarine, a plant alkaloid with antiproliferative effects, reduced SeP expression and proliferation in PASMCs and ameliorated PH in mice and rats. CONCLUSIONS: These results indicate that SeP promotes the development of PH, suggesting that it is a novel biomarker and therapeutic target of the disorder.

  25. Different roles of myocardial ROCK1 and ROCK2 in cardiac dysfunction and postcapillary pulmonary hypertension in mice. International-journal Peer-reviewed

    Shinichiro Sunamura, Kimio Satoh, Ryo Kurosawa, Tomohiro Ohtsuki, Nobuhiro Kikuchi, Md Elias-Al-Mamun, Toru Shimizu, Shohei Ikeda, Kota Suzuki, Taijyu Satoh, Junichi Omura, Masamichi Nogi, Kazuhiko Numano, Mohammad Abdul Hai Siddique, Satoshi Miyata, Masahito Miura, Hiroaki Shimokawa

    Proceedings of the National Academy of Sciences of the United States of America 115 (30) E7129-E7138 2018/07/24

    DOI: 10.1073/pnas.1721298115  

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    Although postcapillary pulmonary hypertension (PH) is an important prognostic factor for patients with heart failure (HF), its pathogenesis remains to be fully elucidated. To elucidate the different roles of Rho-kinase isoforms, ROCK1 and ROCK2, in cardiomyocytes in response to chronic pressure overload, we performed transverse aortic constriction (TAC) in cardiac-specific ROCK1-deficient (cROCK1-/-) and ROCK2-deficient (cROCK2-/-) mice. Cardiomyocyte-specific ROCK1 deficiency promoted pressure-overload-induced cardiac dysfunction and postcapillary PH, whereas cardiomyocyte-specific ROCK2 deficiency showed opposite results. Histological analysis showed that pressure-overload-induced cardiac hypertrophy and fibrosis were enhanced in cROCK1-/- mice compared with controls, whereas cardiac hypertrophy was attenuated in cROCK2-/- mice after TAC. Consistently, the levels of oxidative stress were up-regulated in cROCK1-/- hearts and down-regulated in cROCK2-/- hearts compared with controls after TAC. Furthermore, cyclophilin A (CyPA) and basigin (Bsg), both of which augment oxidative stress, enhanced cardiac dysfunction and postcapillary PH in cROCK1-/- mice, whereas their expressions were significantly lower in cROCK2-/- mice. In clinical studies, plasma levels of CyPA were significantly increased in HF patients and were higher in patients with postcapillary PH compared with those without it. Finally, high-throughput screening demonstrated that celastrol, an antioxidant and antiinflammatory agent, reduced the expressions of CyPA and Bsg in the heart and the lung, ameliorating cardiac dysfunction and postcapillary PH induced by TAC. Thus, by differentially affecting CyPA and Bsg expressions, ROCK1 protects and ROCK2 jeopardizes the heart from pressure-overload HF with postcapillary PH, for which celastrol may be a promising agent.

  26. Low-energy cardiac shockwave therapy to suppress left ventricular remodeling in patients with acute myocardial infarction: a first-in-human study. International-journal Peer-reviewed

    Yuta Kagaya, Kenta Ito, Jun Takahashi, Yasuharu Matsumoto, Takashi Shiroto, Ryuji Tsuburaya, Yoku Kikuchi, Kiyotaka Hao, Kensuke Nishimiya, Tomohiko Shindo, Tsuyoshi Ogata, Ryo Kurosawa, Kumiko Eguchi, Yuto Monma, Sadamitsu Ichijo, Kazuaki Hatanaka, Satoshi Miyata, Hiroaki Shimokawa

    Coronary artery disease 29 (4) 294-300 2018/06

    DOI: 10.1097/MCA.0000000000000577  

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    OBJECTIVE: Although primary percutaneous coronary intervention (PCI) substantially reduces the mortality of patients with acute myocardial infarction (AMI), left ventricular (LV) remodeling after AMI still remains an important issue in cardiovascular medicine. We have previously demonstrated that low-energy cardiac shockwave (SW) therapy ameliorates LV remodeling after AMI in pigs. In this first-in-human study, we examined the feasibility and the effects of the SW therapy on LV remodeling after AMI in humans. PATIENTS AND METHODS: Seventeen patients with AMI who successfully underwent primary PCI (peak-creatine kinase<4000 U/l) were treated with the SW therapy. Low-energy shock waves were applied to the ischemic border zone around the infarcted area at 2, 4, and 6 days since AMI. Next, we compared these patients with historical AMI controls by propensity score matching (N=25). RESULTS: There were no procedure-related complications or adverse effects. At 6 and 12 months after AMI, LV function as assessed by MRI showed no signs of deleterious LV remodeling. When we compared the SW-treated group with the historical AMI controls at 6 months after AMI, LV ejection fraction was significantly higher in the SW-treated group (N=7) than in the historical control group (N=25) by echocardiography (66±7 vs. 58±12%, P<0.05). LV end-diastolic dimension also tended to be smaller in the SW than in the control group (47.5±4.6 vs. 50.0±5.9 mm, P=0.29). CONCLUSION: These results suggest that low-energy extracorporeal cardiac SW therapy is feasible and may ameliorate postmyocardial infarction LV remodeling in patients with AMI as an adjunctive therapy to primary PCI.

  27. 慢性心不全患者における可溶型basiginが予後に与える影響 患者1147例を対象とするプロスペクティブ大規模臨床試験(Prognostic Impacts of Soluble Form of Basigin in Patients with Chronic Heart Failure: Prospective Large Clinical Trial with 1,147 Patients) Peer-reviewed

    佐藤 公雄, 大槻 知広, 宮田 敏, 三浦 正暢, 後岡 広太郎, 砂村 慎一郎, 鈴木 康太, 野木 正道, 黒澤 亮, 大村 淳一, 菊地 順裕, 佐藤 大樹, 青木 竜男, 建部 俊介, 杉村 宏一郎, 坂田 泰彦, 下川 宏明

    日本循環器学会学術集会抄録集 82回 PL8-3 2018/03

    Publisher: (一社)日本循環器学会

  28. 大動脈平滑筋細胞の形質保持を機序とした胸部大動脈瘤の形成と破裂に対するSmgGDSの予防的関与

    野木 正道, 佐藤 公雄, 工藤 俊, 大村 淳一, 菊地 順裕, 佐藤 大樹, 砂村 慎一郎, 黒澤 亮, 大槻 知広, 下川 宏明

    血管 41 (1) 36-36 2018/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  29. Activated TAFI Promotes the Development of Chronic Thromboembolic Pulmonary Hypertension: A Possible Novel Therapeutic Target. International-journal Peer-reviewed

    Taijyu Satoh, Kimio Satoh, Nobuhiro Yaoita, Nobuhiro Kikuchi, Junichi Omura, Ryo Kurosawa, Kazuhiko Numano, Elias Al-Mamun, Mohammad Abdul Hai Siddique, Shinichiro Sunamura, Masamichi Nogi, Kota Suzuki, Satoshi Miyata, John Morser, Hiroaki Shimokawa

    Circulation research 120 (8) 1246-1262 2017/04/14

    DOI: 10.1161/CIRCRESAHA.117.310640  

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    RATIONALE: Pulmonary hypertension is a fatal disease; however, its pathogenesis still remains to be elucidated. Thrombin-activatable fibrinolysis inhibitor (TAFI) is synthesized by the liver and inhibits fibrinolysis. Plasma TAFI levels are significantly increased in chronic thromboembolic pulmonary hypertension (CTEPH) patients. OBJECTIVE: To determine the role of activated TAFI (TAFIa) in the development of CTEPH. METHODS AND RESULTS: Immunostaining showed that TAFI and its binding partner thrombomodulin (TM) were highly expressed in the pulmonary arteries (PAs) and thrombus in patients with CTEPH. Moreover, plasma levels of TAFIa were increased 10-fold in CTEPH patients compared with controls. In mice, chronic hypoxia caused a 25-fold increase in plasma levels of TAFIa with increased plasma levels of thrombin and TM, which led to thrombus formation in PA, vascular remodeling, and pulmonary hypertension. Consistently, plasma clot lysis time was positively correlated with plasma TAFIa levels in mice. Additionally, overexpression of TAFIa caused organized thrombus with multiple obstruction of PA flow and reduced survival rate under hypoxia in mice. Bone marrow transplantation showed that circulating plasma TAFI from the liver, not in the bone marrow, was activated locally in PA endothelial cells through interactions with thrombin and TM. Mechanistic experiments demonstrated that TAFIa increased PA endothelial permeability, smooth muscle cell proliferation, and monocyte/macrophage activation. Importantly, TAFIa inhibitor and peroxisome proliferator-activated receptor-α agonists significantly reduced TAFIa and ameliorated animal models of pulmonary hypertension in mice and rats. CONCLUSIONS: These results indicate that TAFIa could be a novel biomarker and realistic therapeutic target of CTEPH.

  30. Prognostic Impacts of Plasma Levels of Cyclophilin A in Patients With Coronary Artery Disease. International-journal Peer-reviewed

    Tomohiro Ohtsuki, Kimio Satoh, Junichi Omura, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Shinichiro Sunamura, Nobuhiro Yaoita, Tatsuo Aoki, Shunsuke Tatebe, Koichiro Sugimura, Jun Takahashi, Satoshi Miyata, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 37 (4) 685-693 2017/04

    DOI: 10.1161/ATVBAHA.116.308986  

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    OBJECTIVE: Cyclophilin A (CyPA) is secreted from vascular smooth muscle cells, inflammatory cells, and activated platelets in response to oxidative stress. We have recently demonstrated that plasma CyPA level is a novel biomarker for diagnosing coronary artery disease. However, it remains to be elucidated whether plasma CyPA levels also have a prognostic impact in such patients. APPROACH AND RESULTS: In 511 consecutive patients undergoing diagnostic coronary angiography, we measured the plasma levels of CyPA, high-sensitivity C-reactive protein (hsCRP), and brain natriuretic peptide and evaluated their prognostic impacts during the follow-up (42 months, interquartile range: 25-55 months). Higher CyPA levels (≥12 ng/mL) were significantly associated with all-cause death, rehospitalization, and coronary revascularization. Higher hsCRP levels (≥1 mg/L) were also significantly correlated with the primary end point and all-cause death, but not with rehospitalization or coronary revascularization. Similarly, higher brain natriuretic peptide levels (≥100 pg/mL) were significantly associated with all-cause death and rehospitalization, but not with coronary revascularization. Importantly, the combination of CyPA (≥12 ng/mL) and hsCRP (≥1 mg/L) was more significantly associated with all-cause death (hazard ratio, 21.2; 95% confidence interval, 4.9-92.3,; P<0.001) than CyPA (≥12 ng/mL) or hsCRP (≥1 mg/L) alone. CONCLUSIONS: The results indicate that plasma CyPA levels can be used to predict all-cause death, rehospitalization, and coronary revascularization in patients with coronary artery disease and that when combined with other biomarkers (hsCRP and brain natriuretic peptide levels), the CyPA levels have further enhanced prognostic impacts in those patients.

  31. マウスの圧負荷心不全モデルにおけるROCK1による心機能維持機構

    砂村 慎一郎, 佐藤 公雄, 鈴木 康太, 工藤 俊, 大村 淳一, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 野木 正道, 大槻 知広, 沼野 和彦, 下川 宏明

    血管 40 (1) 46-46 2017/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  32. 慢性血栓塞栓性肺高血圧症における新規病因蛋白TAFIの機能解析

    佐藤 大樹, 佐藤 公雄, 矢尾板 信裕, 菊地 順裕, 大村 淳一, 黒澤 亮, Al-Mamun Elias, Hai Siddique Mohammad Abdul, 杉村 宏一郎, 下川 宏明

    血管 40 (1) 51-51 2017/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  33. 新規肺高血圧症治療薬セラストラマイシンの発見

    黒澤 亮, 佐藤 公雄, 菊地 順裕, 大村 淳一, 佐藤 大樹, 野木 正道, 砂村 慎一郎, 沼野 和彦, Hai Siddique Mohammad Abdul, 鈴木 康太, Al-Mamun Md. Elias, 建部 俊介, 青木 竜男, 杉村 宏一郎, 下川 宏明

    血管 40 (1) 38-38 2017/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  34. Low-intensity pulsed ultrasound enhances angiogenesis and ameliorates contractile dysfunction of pressure-overloaded heart in mice. International-journal Peer-reviewed

    Tsuyoshi Ogata, Kenta Ito, Tomohiko Shindo, Kazuaki Hatanaka, Kumiko Eguchi, Ryo Kurosawa, Yuta Kagaya, Yuto Monma, Sadamitsu Ichijo, Hirofumi Taki, Hiroshi Kanai, Hiroaki Shimokawa

    PloS one 12 (9) e0185555 2017

    DOI: 10.1371/journal.pone.0185555  

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    INTRODUCTION: Chronic left ventricular (LV) pressure overload causes relative ischemia with resultant LV dysfunction. We have recently demonstrated that low-intensity pulsed ultrasound (LIPUS) improves myocardial ischemia in a pig model of chronic myocardial ischemia through enhanced myocardial angiogenesis. In the present study, we thus examined whether LIPUS also ameliorates contractile dysfunction in LV pressure-overloaded hearts. METHODS AND RESULTS: Chronic LV pressure overload was induced with transverse aortic constriction (TAC) in mice. LIPUS was applied to the whole heart three times in the first week after TAC and was repeated once a week for 7 weeks thereafter (n = 22). Animals in the control groups received the sham treatment without LIPUS (n = 23). At 8 weeks after TAC, LV fractional shortening was depressed in the TAC-Control group, which was significantly ameliorated in the TAC-LIPUS group (30.4±0.5 vs. 36.2±3.8%, P<0.05). Capillary density was higher and perivascular fibrosis was less in the LV in the TAC-LIPUS group than in the TAC-Control group. Myocardial relative ischemia evaluated with hypoxyprobe was noted in the TAC-Control group, which was significantly attenuated in the TAC-LIPUS group. In the TAC-LIPUS group, as compared with the control group, mRNA expressions of BNP and collagen III were significantly lower (both P<0.05) and protein expressions of VEGF and eNOS were significantly up-regulated associated with Akt activation (all P<0.05). No adverse effect related to the LIPUS therapy was noted. CONCLUSIONS: These results indicate that the LIPUS therapy ameliorates contractile dysfunction in chronically pressure-overloaded hearts through enhanced myocardial angiogenesis and attenuated perivascular fibrosis. Thus, the LIPUS therapy may be a promising, non-invasive treatment for cardiac dysfunction due to chronic pressure overload.

  35. LDL-Cに依存しない全く新しい新規病因蛋白とバイオマーカーの臨床応用

    佐藤 公雄, 野木 正道, 工藤 俊, 大槻 知広, 杉村 宏一郎, 建部 俊介, 青木 竜男, 矢尾板 信裕, 大村 淳一, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 砂村 慎一郎, 神津 克也, 下川 宏明

    日本心臓病学会学術集会抄録 64回 SS1-5 2016/09

    Publisher: (一社)日本心臓病学会

  36. 日本から発信する肺高血圧診療 肺高血圧症の全く新しい病因蛋白に着目した早期診断と治療薬開発の可能性

    佐藤 公雄, 杉村 宏一郎, 建部 俊介, 青木 竜男, 矢尾板 信裕, 大村 淳一, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 野木 正道, 砂村 慎一郎, 神津 克也, 下川 宏明

    日本心臓病学会学術集会抄録 64回 S15-4 2016/09

    Publisher: (一社)日本心臓病学会

  37. 肺高血圧症の最新の薬物治療と今後の治療薬開発

    佐藤 公雄, 矢尾板 信裕, 大村 淳一, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 山本 沙織, 青木 竜男, 建部 俊介, 杉村 宏一郎, 下川 宏明

    日本心臓病学会学術集会抄録 64回 SP3-1 2016/09

    Publisher: (一社)日本心臓病学会

  38. Molecular mechanisms of the angiogenic effects of low-energy shock wave therapy: roles of mechanotransduction. International-journal Peer-reviewed

    Kazuaki Hatanaka, Kenta Ito, Tomohiko Shindo, Yuta Kagaya, Tsuyoshi Ogata, Kumiko Eguchi, Ryo Kurosawa, Hiroaki Shimokawa

    American journal of physiology. Cell physiology 311 (3) C378-85 2016/09/01

    DOI: 10.1152/ajpcell.00152.2016  

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    We have previously demonstrated that low-energy extracorporeal cardiac shock wave (SW) therapy improves myocardial ischemia through enhanced myocardial angiogenesis in a porcine model of chronic myocardial ischemia and in patients with refractory angina pectoris. However, the detailed molecular mechanisms for the SW-induced angiogenesis remain unclear. In this study, we thus examined the effects of SW irradiation on intracellular signaling pathways in vitro. Cultured human umbilical vein endothelial cells (HUVECs) were treated with 800 shots of low-energy SW (1 Hz at an energy level of 0.03 mJ/mm(2)). The SW therapy significantly upregulated mRNA expression and protein levels of vascular endothelial growth factor (VEGF) and endothelial nitric oxide synthase (eNOS). The SW therapy also enhanced phosphorylation of extracellular signal-regulated kinase 1/2 (Erk1/2) and Akt. Furthermore, the SW therapy enhanced phosphorylation of caveolin-1 and the expression of HUTS-4 that represents β1-integrin activity. These results suggest that caveolin-1 and β1-integrin are involved in the SW-induced activation of angiogenic signaling pathways. To further examine the signaling pathways involved in the SW-induced angiogenesis, HUVECs were transfected with siRNA of either β1-integrin or caveolin-1. Knockdown of either caveolin-1 or β1-integrin suppressed the SW-induced phosphorylation of Erk1/2 and Akt and upregulation of VEGF and eNOS. Knockdown of either caveolin-1 or β1-integrin also suppressed SW-induced enhancement of HUVEC migration in scratch assay. These results suggest that activation of mechanosensors on cell membranes, such as caveolin-1 and β1-integrin, and subsequent phosphorylation of Erk and Akt may play pivotal roles in the SW-induced angiogenesis.

  39. Protective Roles of Endothelial AMP-Activated Protein Kinase Against Hypoxia-Induced Pulmonary Hypertension in Mice. International-journal Peer-reviewed

    Junichi Omura, Kimio Satoh, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Tomohiro Otsuki, Katsuya Kozu, Kazuhiko Numano, Kota Suzuki, Shinichiro Sunamura, Shunsuke Tatebe, Tatsuo Aoki, Koichiro Sugimura, Satoshi Miyata, Yasushi Hoshikawa, Yoshinori Okada, Hiroaki Shimokawa

    Circulation research 119 (2) 197-209 2016/07/08

    DOI: 10.1161/CIRCRESAHA.115.308178  

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    RATIONALE: Endothelial AMP-activated protein kinase (AMPK) plays an important role for vascular homeostasis, and its role is impaired by vascular inflammation. However, the role of endothelial AMPK in the pathogenesis of pulmonary arterial hypertension (PAH) remains to be elucidated. OBJECTIVE: To determine the role of endothelial AMPK in the development of PAH. METHODS AND RESULTS: Immunostaining showed that endothelial AMPK is downregulated in the pulmonary arteries of patients with PAH and hypoxia mouse model of pulmonary hypertension (PH). To elucidate the role of endothelial AMPK in PH, we used endothelial-specific AMPK-knockout mice (eAMPK(-/-)), which were exposed to hypoxia. Under normoxic condition, eAMPK(-/-) mice showed the normal morphology of pulmonary arteries compared with littermate controls (eAMPK(flox/flox)). In contrast, development of hypoxia-induced PH was accelerated in eAMPK(-/-) mice compared with controls. Furthermore, the exacerbation of PH in eAMPK(-/-) mice was accompanied by reduced endothelial function, upregulation of growth factors, and increased proliferation of pulmonary artery smooth muscle cells. Importantly, conditioned medium from endothelial cells promoted pulmonary artery smooth muscle cell proliferation, which was further enhanced by the treatment with AMPK inhibitor. Serum levels of inflammatory cytokines, including tumor necrosis factor-α and interferon-γ were significantly increased in patients with PAH compared with healthy controls. Consistently, endothelial AMPK and cell proliferation were significantly reduced by the treatment with serum from patients with PAH compared with controls. Importantly, long-term treatment with metformin, an AMPK activator, significantly attenuated hypoxia-induced PH in mice. CONCLUSIONS: These results indicate that endothelial AMPK is a novel therapeutic target for the treatment of PAH.

  40. Low-Intensity Pulsed Ultrasound Enhances Angiogenesis and Ameliorates Left Ventricular Dysfunction in a Mouse Model of Acute Myocardial Infarction. International-journal Peer-reviewed

    Tomohiko Shindo, Kenta Ito, Tsuyoshi Ogata, Kazuaki Hatanaka, Ryo Kurosawa, Kumiko Eguchi, Yuta Kagaya, Kenichiro Hanawa, Kentaro Aizawa, Takashi Shiroto, Sachie Kasukabe, Satoshi Miyata, Hirofumi Taki, Hideyuki Hasegawa, Hiroshi Kanai, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 36 (6) 1220-9 2016/06

    DOI: 10.1161/ATVBAHA.115.306477  

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    OBJECTIVE: Left ventricular (LV) remodeling after acute myocardial infarction still remains an important issue in cardiovascular medicine. We have recently demonstrated that low-intensity pulsed ultrasound (LIPUS) therapy improves myocardial ischemia in a pig model of chronic myocardial ischemia through enhanced myocardial angiogenesis. In the present study, we aimed to demonstrate whether LIPUS also ameliorates LV remodeling after acute myocardial infarction and if so, to elucidate the underlying molecular mechanisms involved in the beneficial effects of LIPUS. APPROACH AND RESULTS: We examined the effects of LIPUS on LV remodeling in a mouse model of acute myocardial infarction, where the heart was treated with either LIPUS or no-LIPUS 3 times in the first week (days 1, 3, and 5). The LIPUS improved mortality and ameliorated post-myocardial infarction LV remodeling in mice. The LIPUS upregulated the expression of vascular endothelial growth factor, endothelial nitric oxide synthase, phosphorylated ERK, and phosphorylated Akt in the infarcted area early after acute myocardial infarction, leading to enhanced angiogenesis. Microarray analysis in cultured human endothelial cells showed that a total of 1050 genes, including those of the vascular endothelial growth factor signaling and focal adhesion pathways, were significantly altered by the LIPUS. Knockdown with small interfering RNA of either β1-integrin or caveolin-1, both of which are known to play key roles in mechanotransduction, suppressed the LIPUS-induced upregulation of vascular endothelial growth factor. Finally, in caveolin-1-deficient mice, the beneficial effects of LIPUS on mortality and post-myocardial infarction LV remodeling were absent. CONCLUSIONS: These results indicate that the LIPUS therapy ameliorates post-myocardial infarction LV remodeling in mice in vivo, for which mechanotransduction and its downstream pathways may be involved.

  41. CTEPHにおける新規病因蛋白TAFIの基礎的・臨床的機能解析

    佐藤 大樹, 佐藤 公雄, 矢尾板 信裕, 菊地 順裕, 大村 淳一, 黒澤 亮, 杉村 宏一郎, 中村 一文, 伊藤 浩, 下川 宏明

    呼吸と循環 64 (5) S19-S20 2016/05

    Publisher: (株)医学書院

    ISSN: 0452-3458

    eISSN: 1882-1200

  42. 肺動脈血管内皮AMPKは肺高血圧症の進行を抑制する

    大村 淳一, 佐藤 公雄, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 神津 克也, 沼野 和彦, 青木 竜男, 建部 俊介, 杉村 宏一郎, 下川 宏明

    呼吸と循環 64 (5) S23-S23 2016/05

    Publisher: (株)医学書院

    ISSN: 0452-3458

    eISSN: 1882-1200

  43. PH患者の血漿中サイクロフィリンAと炎症性サイトカインの相関

    沼野 和彦, 佐藤 公雄, 大槻 知広, 菊地 順裕, 大村 淳一, 佐藤 大樹, 黒澤 亮, 青木 竜男, 建部 俊介, 杉村 宏一郎, 下川 宏明

    呼吸と循環 64 (5) S23-S23 2016/05

    Publisher: (株)医学書院

    ISSN: 0452-3458

    eISSN: 1882-1200

  44. SmgGDS as a Crucial Mediator of the Inhibitory Effects of Statins on Cardiac Hypertrophy and Fibrosis: Novel Mechanism of the Pleiotropic Effects of Statins. International-journal Peer-reviewed

    Shun Kudo, Kimio Satoh, Masamichi Nogi, Kota Suzuki, Shinichiro Sunamura, Junichi Omura, Nobuhiro Kikuchi, Ryo Kurosawa, Taijyu Satoh, Tatsuro Minami, Shohei Ikeda, Satoshi Miyata, Hiroaki Shimokawa

    Hypertension (Dallas, Tex. : 1979) 67 (5) 878-89 2016/05

    DOI: 10.1161/HYPERTENSIONAHA.115.07089  

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    The detailed molecular mechanisms of the pleiotropic effects of statins remain to be fully elucidated. Here, we hypothesized that cardioprotective effects of statins are mediated by small GTP-binding protein GDP dissociation stimulator (SmgGDS). SmgGDS(+/-) and wild-type (WT) mice were treated with continuous infusion of angiotensin II (Ang II) for 2 weeks with and without oral treatment with atorvastatin or pravastatin. At 2 weeks, the extents of Ang II-induced cardiac hypertrophy and fibrosis were comparable between the 2 genotypes. However, statins significantly attenuated cardiomyocyte hypertrophy and fibrosis in WT mice, but not in SmgGDS(+/-) mice. In SmgGDS(+/-) cardiac fibroblasts (CFs), Rac1 expression, extracellular signal-regulated kinases 1/2 activity, Rho-kinase activity, and inflammatory cytokines secretion in response to Ang II were significantly increased when compared with WT CFs. Atorvastatin significantly reduced Rac1 expression and oxidative stress in WT CFs, but not in SmgGDS(+/-) CFs. Furthermore, Bio-plex analysis revealed significant upregulations of inflammatory cytokines/chemokines and growth factors in SmgGDS(+/-) CFs when compared with WT CFs. Importantly, conditioned medium from SmgGDS(+/-) CFs increased B-type natriuretic peptide expression in rat cardiomyocytes to a greater extent than that from WT CFs. Furthermore, atorvastatin significantly increased SmgGDS secretion from mouse CFs. Finally, treatment with recombinant SmgGDS significantly reduced Rac1 expression in SmgGDS(+/-) CFs. These results indicate that both intracellular and extracellular SmgGDS play crucial roles in the inhibitory effects of statins on cardiac hypertrophy and fibrosis, partly through inhibition of Rac1, Rho kinase, and extracellular signal-regulated kinase 1/2 pathways, demonstrating the novel mechanism of the pleiotropic effects of statins.

  45. Basigin Promotes Cardiac Fibrosis and Failure in Response to Chronic Pressure Overload in Mice. International-journal Peer-reviewed

    Kota Suzuki, Kimio Satoh, Shohei Ikeda, Shinichiro Sunamura, Tomohiro Otsuki, Taijyu Satoh, Nobuhiro Kikuchi, Junichi Omura, Ryo Kurosawa, Masamichi Nogi, Kazuhiko Numano, Koichiro Sugimura, Tatsuo Aoki, Shunsuke Tatebe, Satoshi Miyata, Rupak Mukherjee, Francis G Spinale, Kenji Kadomatsu, Hiroaki Shimokawa

    Arteriosclerosis, thrombosis, and vascular biology 36 (4) 636-46 2016/04

    DOI: 10.1161/ATVBAHA.115.306686  

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    OBJECTIVE: Basigin (Bsg) is a transmembrane glycoprotein that activates matrix metalloproteinases and promotes inflammation. However, the role of Bsg in the pathogenesis of cardiac hypertrophy and failure remains to be elucidated. We examined the role of Bsg in cardiac hypertrophy and failure in mice and humans. APPROACH AND RESULTS: We performed transverse aortic constriction in Bsg(+/-) and in wild-type mice. Bsg(+/-) mice showed significantly less heart and lung weight and cardiac interstitial fibrosis compared with littermate controls after transverse aortic constriction. Both matrix metalloproteinase activities and oxidative stress in loaded left ventricle were significantly less in Bsg(+/-) mice compared with controls. Echocardiography showed that Bsg(+/-) mice showed less hypertrophy, less left ventricular dilatation, and preserved left ventricular fractional shortening compared with littermate controls after transverse aortic constriction. Consistently, Bsg(+/-) mice showed a significantly improved long-term survival after transverse aortic constriction compared with Bsg(+/+) mice, regardless of the source of bone marrow (Bsg(+/+) or Bsg(+/-)). Conversely, cardiac-specific Bsg-overexpressing mice showed significantly poor survival compared with littermate controls. Next, we isolated cardiac fibroblasts and examined their responses to angiotensin II or mechanical stretch. Both stimuli significantly increased Bsg expression, cytokines/chemokines secretion, and extracellular signal-regulated kinase/Akt/JNK activities in Bsg(+/+) cardiac fibroblasts, all of which were significantly less in Bsg(+/-) cardiac fibroblasts. Consistently, extracellular and intracellular Bsg significantly promoted cardiac fibroblast proliferation. Finally, serum levels of Bsg were significantly elevated in patients with heart failure and predicted poor prognosis. CONCLUSIONS: These results indicate the crucial roles of intracellular and extracellular Bsg in the pathogenesis of cardiac hypertrophy, fibrosis, and failure in mice and humans.

  46. 肺高血圧の基礎から臨床まで

    佐藤 公雄, 杉村 宏一郎, 青木 竜男, 建部 俊介, 三浦 正暢, 矢尾板 信裕, 鈴木 秀明, 山本 沙織, 菊地 順裕, 大村 淳一, 佐藤 大樹, 黒澤 亮, 神津 克也, 下川 宏明

    日本小児肺循環研究会プログラム・抄録集 22回 37-37 2016/02

    Publisher: 日本小児肺循環研究会

  47. 化合物スクリーニングによる新規肺高血圧症治療薬の開発 Peer-reviewed

    黒澤 亮, 佐藤, 公雄, 菊地, 順裕, 大村, 淳一, 佐藤, 大樹, 野木, 正道, 沼野, 和彦, Siddique Mohammad, Al-Mamun Elias, 杉村, 宏一郎, 下川 宏明

    呼吸と循環 64 (5) S24-S24 2016

    Publisher:

    ISSN: 0452-3458

    eISSN: 1882-1200

  48. 肺動脈血管内皮AMPKは肺高血圧症の進行を抑制する

    大村 淳一, 佐藤 公雄, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 神津 克也, 青木 竜男, 建部 俊介, 杉村 宏一郎, 下川 宏明

    血管 39 (1) 45-45 2016/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  49. PDE1C negatively regulates growth factor receptor degradation and promotes VSMC proliferation. International-journal

    Kimio Satoh, Nobuhiro Kikuchi, Ryo Kurosawa, Hiroaki Shimokawa

    Circulation research 116 (7) 1098-100 2015/03/27

    DOI: 10.1161/CIRCRESAHA.115.306139  

  50. Basigin mediates pulmonary hypertension by promoting inflammation and vascular smooth muscle cell proliferation. International-journal Peer-reviewed

    Kimio Satoh, Taijyu Satoh, Nobuhiro Kikuchi, Junichi Omura, Ryo Kurosawa, Kota Suzuki, Koichiro Sugimura, Tatsuo Aoki, Kotaro Nochioka, Shunsuke Tatebe, Saori Miyamichi-Yamamoto, Masanobu Miura, Toru Shimizu, Shohei Ikeda, Nobuhiro Yaoita, Yoshihiro Fukumoto, Tatsuro Minami, Satoshi Miyata, Kazufumi Nakamura, Hiroshi Ito, Kenji Kadomatsu, Hiroaki Shimokawa

    Circulation research 115 (8) 738-50 2014/09/26

    DOI: 10.1161/CIRCRESAHA.115.304563  

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    RATIONALE: Cyclophilin A (CyPA) is secreted from vascular smooth muscle cells (VSMCs) by oxidative stress and promotes VSMC proliferation. However, the role of extracellular CyPA and its receptor Basigin (Bsg, encoded by Bsg) in the pathogenesis of pulmonary hypertension (PH) remains to be elucidated. OBJECTIVE: To determine the role of CyPA/Bsg signaling in the development of PH. METHODS AND RESULTS: In the pulmonary arteries of patients with PH, immunostaining revealed strong expression of CyPA and Bsg. The pulmonary arteries of CyPA(±) and Bsg(±) mice exposed to normoxia did not differ in morphology compared with their littermate controls. In contrast, CyPA(±) and Bsg(±) mice exposed to hypoxia for 4 weeks revealed significantly reduced right ventricular systolic pressure, pulmonary artery remodeling, and right ventricular hypertrophy compared with their littermate controls. These features were unaltered by bone marrow reconstitution. To further evaluate the role of vascular Bsg, we harvested pulmonary VSMCs from Bsg(+/+) and Bsg(±) mice. Proliferation was significantly reduced in Bsg(±) compared with Bsg(+/+) VSMCs. Mechanistic studies demonstrated that Bsg(±) VSMCs revealed reduced extracellular signal-regulated kinase 1/2 activation and less secretion of cytokines/chemokines and growth factors (eg, platelet-derived growth factor-BB). Finally, in the clinical study, plasma CyPA levels in patients with PH were increased in accordance with the severity of pulmonary vascular resistance. Furthermore, event-free curve revealed that high plasma CyPA levels predicted poor outcome in patients with PH. CONCLUSIONS: These results indicate the crucial role of extracellular CyPA and vascular Bsg in the pathogenesis of PH.

  51. Extracorporeal low-energy shock-wave therapy exerts anti-inflammatory effects in a rat model of acute myocardial infarction. Peer-reviewed

    Yuzuru Abe, Kenta Ito, Kiyotaka Hao, Tomohiko Shindo, Tsuyoshi Ogata, Yuta Kagaya, Ryo Kurosawa, Kensuke Nishimiya, Kimio Satoh, Satoshi Miyata, Kazuyoshi Kawakami, Hiroaki Shimokawa

    Circulation journal : official journal of the Japanese Circulation Society 78 (12) 2915-25 2014

    eISSN: 1347-4820

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    BACKGROUND: It has been previously demonstrated that extracorporeal low-energy shock-wave (SW) therapy ameliorates left ventricular (LV) remodeling through enhanced angiogenesis after acute myocardial infarction (AMI) in pigs in vivo. However, it remains to be examined whether SW therapy also exerts anti-inflammatory effects on AMI. METHODS AND RESULTS: AMI was created by ligating the proximal left anterior descending coronary artery in rats. They were randomly assigned to 2 groups: with (SW group) or without (control group) SW therapy (0.1 mJ/mm(2), 200 shots, 1 Hz to the whole heart at 1, 3 and 5 days after AMI). Four weeks after AMI, SW therapy significantly ameliorated LV remodeling and fibrosis. Histological examinations showed that SW therapy significantly suppressed the infiltration of neutrophils and macrophages at days 3 and 6, in addition to enhanced capillary density in the border area. Molecular examinations demonstrated that SW therapy enhanced the expression of endothelial nitric oxide synthase and suppressed the infiltration of transforming growth factor-β1-positive cells early after AMI. SW therapy also upregulated anti-inflammatory cytokines and downregulated pro-inflammatory cytokines in general. CONCLUSIONS: These results suggest that low-energy SW therapy suppressed post-MI LV remodeling in rats in vivo, which was associated with anti-inflammatory effects in addition to its angiogenic effects, and demonstrated a novel aspect of the therapy for AMI.

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Misc. 13

  1. Up-to-date Genetic Diagnosis and Treatment for Cardiovascular Diseases: Understanding Polygenic Risk Scores for Coronary Artery Disease Invited

    Ryo Kurosawa, Kaoru Ito

    Heart View 28 (5) 416-420 2024/05

    Publisher: (株)メジカルビュー社

    ISSN: 1342-6591

  2. 冠動脈疾患における新規予後予測バイオマーカーAdipsinの発見 補体系を介した心筋梗塞発症予測の新たな展開

    大槻 知広, 佐藤 公雄, 清水 亨, 池田 尚平, 菊地 順裕, 佐藤 大樹, 黒澤 亮, 野木 正道, 砂村 慎一郎, 矢尾板 信裕, 大村 淳一, 杉村 宏一郎, 青木 竜男, 建部 俊介, 高橋 潤, 宮田 敏, 下川 宏明

    血管 43 (1) 36-36 2020/01

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  3. 左心不全に伴う肺高血圧症発症におけるROCK1とROCK2の役割分担の解明 Invited

    砂村 慎一郎, 佐藤 公雄, 黒澤 亮, 大槻 知広, 菊地 順裕, Elias Al-Mamun, 清水 亨, 池田 尚平, 鈴木 康太, 佐藤 大樹, 大村 淳一, 野木 正道, Mohammad Abdul Hai Siddique, 宮田 敏, 下川 宏明

    血管 41 (4) 9-17 2018

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

  4. Protective Roles of Small GTP-Binding Protein GDP Dissociation Stimulator Against Angiotensin II-Induced Thoracic Aortic Aneurysm Formation and Rupture in Mice -A Possible Novel Therapeutic Target

    Masamichi Nogi, Kimio Satoh, Shun Kudo, Junichi Omura, Nobuhiro Kikuchi, Taijyu Satoh, Shinichiro Sunamura, Ryo Kurosawa, Tohmohiro Ohtsuki, Kazuhiko Numano, Kota Suzuki, Hiroaki Shimokawa

    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY 37 2017/05

    ISSN: 1079-5642

    eISSN: 1524-4636

  5. Celastramycin Inhibits Pulmonary Arterial Smooth Muscle Cell Proliferation and Ameliorates Hypoxia-induced Pulmonary Hypertension in Mice

    Ryo Kurosawa, Kimio Satoh, Nobuhiro Kikuchi, Junichi Omura, Taijyu Satoh, Masamichi Nogi, Shinichiro Sunamura, Kazuhiko Numano, Kota Suzuki, Mohammad Abdul Hai Siddique, Elias Al-Mamun, Hiroaki Shimokawa

    CIRCULATION 134 2016/11

    ISSN: 0009-7322

    eISSN: 1524-4539

  6. Crucial Role of ROCK1 to Maintain Contractile Cardiac Function in Response to Chronic Pressure-Overload in Mice

    Shinichiro Sunamura, Kimio Satoh, Kota Suzuki, Shun Kudo, Shohei Ikeda, Kikuchi Nobuhiro, Omura Junichi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Kazuhiko Numano, Toru Shimizu, Hiroaki Shimokawa

    CIRCULATION 134 2016/11

    ISSN: 0009-7322

    eISSN: 1524-4539

  7. Identification of Emetine as a Novel Therapeutic Agent for Pulmonary Hypertension in Rats -High-throughput Screening of 5,562 Compounds

    Mohammad Abdul Hai Siddique, Kimio Satoh, Ryo Kurosawa, Md. Elias Al-Mamun, Nobuhiro Kikuchi, Junichi Omura, Taijyu Satoh, Masamichi Nogi, Shinichiro Sunamura, Hiroaki Shimokawa

    CIRCULATION 134 2016/11

    ISSN: 0009-7322

    eISSN: 1524-4539

  8. Thrombin Activatable Fibrinolysis Inhibitor Promotes Development of Chronic Thromboembolic Pulmonary Hypertension -A Possible Novel Therapeutic Target

    Taijyu Satoh, Kimio Satoh, Nobuhiro Yaoita, Nobuhiro Kikuchi, Junichi Omura, Ryo Kurosawa, Shinichiro Sunamura, Masamichi Nogi, Tomohiro Otsuki, Kazuhiko Numano, Md Elias Al-Mamun, Mohammad Abdul Hai Siddique, Shunsuke Tatebe, Tatsuo Aoki, Koichiro Sugimura, John Morser, Hiroaki Shimokawa

    CIRCULATION 134 2016/11

    ISSN: 0009-7322

    eISSN: 1524-4539

  9. Cardiopulmonary Best Abstract Award: A Disintegrin and Metalloproteinase With Thrombospondin Motifs 8 Downregulates AMP-activated Protein Kinase and Promotes Matrix Metalloproteinases Activation and Pulmonary Hypertension

    Junichi Omura, Kimio Satoh, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Masamichi Nogi, Shinichiro Sunamura, Tomohiro Ohtsuki, Katsuya Kozu, Kazuhiko Numano, Koichiro Sugimura, Shunsuke Tatebe, Tatsuo Aoki, Kota Suzuki, Nobuhiro Yaoita, Hiroaki Shimokawa

    CIRCULATION 134 2016/11

    ISSN: 0009-7322

    eISSN: 1524-4539

  10. Basigin promotes cardiac fibrosis and failure in response to chronic pressure-overload in mice

    K. Suzuki, K. Satoh, S. Ikeda, S. Sunamura, T. Otsuki, T. Satoh, J. Omura, R. Kurosawa, M. Nogi, K. Numano, K. Sugimura, S. Miyata, H. Shimokawa

    EUROPEAN HEART JOURNAL 37 409-409 2016/08

    ISSN: 0195-668X

    eISSN: 1522-9645

  11. ROCK1 Plays a Crucial Role to Maintain Cardiac Function in Response to Pressure-Overload in Mice

    Shinichiro Sunamura, Kimio Satoh, Kota Suzuki, Junichi Omura, Nobuhiro Kikuchi, Taijyu Satoh, Ryo Kurosawa, Shun Kudo, Shohei Ikeda, Hiroaki Shimokawa

    JOURNAL OF CARDIAC FAILURE 21 (10) S175-S175 2015/10

    ISSN: 1071-9164

    eISSN: 1532-8414

  12. Selenoprotein p promotes vascular smooth muscle cell proliferation and pulmonary hypertension - a possible novel therapeutic target

    N. Kikuchi, K. Satoh, J. Omura, T. Satoh, R. Kurosawa, M. Nogi, S. Tatebe, T. Aoki, K. Sugimura, H. Shimokawa

    EUROPEAN HEART JOURNAL 36 1206-1206 2015/08

    ISSN: 0195-668X

    eISSN: 1522-9645

  13. サイクロフィリンA受容体Basiginによる肺高血圧症促進機構 基礎研究の臨床応用

    佐藤 公雄, 鈴木, 康太, 大村, 淳一, 菊池, 順裕, 佐藤, 大樹, 黒澤 亮, 矢尾板, 信裕, 杉村, 宏一郎, 福本, 義弘, 中村, 一文, 伊藤, 浩, 下川 宏明

    血管 38 (1) 42-42 2015

    Publisher: 日本心脈管作動物質学会

    ISSN: 0911-4637

Show all ︎Show first 5

Books and Other Publications 4

  1. Heart View Vol.28 No.5 P.4-8 (416-420), 2024

    MEDICAL VIEW 2024/05

  2. Japanese Journal of Circulation Research VOL45 NO.3/2022

    Ryo Kurosawa

    The Japanese Society for Circulation Research 2022/12

  3. Cardioangiology 92.5

    Ryo Kurosawa, Kaoru Ito

    2022/11

  4. Pulmonary Hypertension Update(Vol.6 No.1)

    Ryo Kurosawa, Kimio Satoh, Hiroaki Shimokawa

    Medical Review Co., Ltd. 2020/09

    ISBN: 9784779225109

Presentations 25

  1. Recent Achievements in the Tohoku Medical Megabank Project and Utilization of the Biobank(educational session 1) Invited

    Ryo Kurosawa

    The 181st Meeting of the Japanese Circulation Society, Tohoku Regional Conference 2025/12/06

  2. East Asian-specific genome-wide association study and multi-ancestry meta-analysis reveal the genetic foundations for valvular heart disease and its subtypes(Genomic and Precision Medicine Early Career Investigator Award Competition)

    Ryo Kurosawa

    American Heart Association 2025/11/08

  3. East Asian-specific genome-wide association study and cross-ancestry meta-analysis reveal the genetic foundations of valvular heart disease and its subtypes(Young Investigator Award Session in Population Science, Genetics and Epidemiology. Winner)

    Ryo Kurosawa, Kazuo Miyazawa, Satoshi Koyama, Hirotaka Ieki, Hiroki Yoshida, Nobuyuki Enzan, Fumie Takechi, Masashi Fukuyama, Ryosuke Osako, Kaoru Ito

    European Society of Cardiology Congress 2025, 30 August 2025, Madrid, Spain 2025/08/30

  4. Basic research and cardiologist Invited

    Ryo Kurosawa

    2022/12/03

  5. スクリーニングによる新規肺高血圧症治療薬Celastramycinの発見(奨励賞受賞講演)

    黒澤亮

    第5回日本肺高血圧・肺循環学会学術集会 2020/09/26

  6. 化合物スクリーニングによる新規肺高血圧症治療薬の発見(Meet the Expert) Invited

    黒澤亮

    第84回日本循環器学会学術集会 2020/07/27

  7. Identification of Celastrol as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension and Right Ventricular Failure through Suppression of Basigin/Cyclophilin A(Oral Presentation)

    Ryo Kurosawa

    第84回日本循環器学会学術集会 2020/07/27

  8. 肺高血圧症、右心不全治療薬としてのBasigin/Cyclophilin A 阻害薬 Celastrol の同定(YIAセッション研究奨励賞優秀賞受賞)

    黒澤亮

    第49回日本心脈管作動物質学会 2020/02/08

  9. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds (Oral presentation)

    Ryo Kurosawa

    American Heart Association (AHA) Scientific Sessions (Philadelphia, Pennsylvania, USA) 2019/11/16

  10. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds-(oral presentation)

    Ryo Kurosawa

    The Environmental Response V/17th JBS Biofrontier Symposium (Sendai, Japan) 2019/09/12

  11. Identification of celastramycin as a novel therapeutic agent for pulmonary arterial hypertension -high-throughput screening of 5,562 compounds (Advances in Science Session (Oral Abstract Presentation))

    Ryo Kurosawa

    ESC Congress 2019 (Paris, France) 2019/08/31

  12. スクリーニングによる新規肺高血圧症治療薬Celastramycinの発見(口頭発表)

    黒澤亮

    第4回日本肺高血圧・肺循環学会学術集会 2019/06/21

  13. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds-(最優秀賞受賞、Young Investigator's Award Finalists Lectures (Basic Research))

    Ryo Kurosawa

    第83回日本循環器学会学術集会 2019/03/29

  14. Identification of celastramycin as a novel therapeutic agent for pulmonary arterial hypertension -high-throughput screening of 5,562 compounds (Oral presentation).

    Ryo Kurosawa

    2018/11/10

  15. スクリーニングによる新規肺高血圧症治療薬Celastramycin の発見(優秀賞受賞、YIA セッション(基礎))

    黒澤亮

    第3回日本肺高血圧・肺循環学会学術集会 2018/06/22

  16. スクリーニングによる新規肺高血圧症治療薬Celastramycin の発見(シンポジウム) Invited

    黒澤亮

    第3回日本肺高血圧・肺循環学会学術集会 2018/06/02

  17. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds-(Featured Research Session)

    Ryo Kurosawa

    第82回日本循環器学会学術集会 2018/03/23

  18. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds- (poster session).

    Ryo Kurosawa

    World symposium on pulmonary hypertension (Nice, France) 2018/02/27

  19. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension -High-throughput Screening of 5,562 Compounds- (Oral presentation)

    Ryo Kurosawa

    2017/11/11

  20. 薬物スクリーニングによる新規肺高血圧治療薬Celastamycinの発見(YIA優秀賞受賞、YIA セッション(基礎・優秀演題))

    黒澤亮

    第2回日本肺高血圧・肺循環学会学術集会 2017/06/02

  21. Celastramycin Inhibits Pulmonary Arterial Smooth Muscle Cell Proliferation and Ameliorates Hypoxia-induced Pulmonary Hypertension (Featured Research Session).

    Ryo Kurosawa

    2017/03/17

  22. 新規肺高血圧症治療薬セラストラマイシンの発見(YIAセッション)

    黒澤亮

    第46回日本心脈管作動物質学会 2017/02/11

  23. Celastramycin Inhibits Pulmonary Arterial Smooth Muscle Cell Proliferation and Ameliorates Hypoxia-induced Pulmonary Hypertension in Mice (Poster presentations, 3CPR Junior Investigator Travel Stipend受賞)

    Ryo Kurosawa

    American Heart Association (AHA) Scientific Sessions (New Orleans, USA) 2016/11/12

  24. 化合物スクリーニングによる新規肺高血圧症治療薬の開発(口頭発表)

    黒澤亮

    第1回日本肺高血圧・肺循環学会学術集会 2016/10/01

  25. 化合物スクリーニングによる新規肺高血圧症治療薬の開発(口頭発表)

    黒澤亮

    第4回日本肺循環学会・第3回日本肺高血圧学会合同学術集会 2015/10/03

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Industrial Property Rights 4

  1. 生薬成分を含む肺高血圧症の予防又は治療剤

    下川 宏明, 徳山 英利, 植田 浩史, 青木 淳賢, 土井 隆行, 可野 邦行, 佐藤 公雄, 黒澤 亮

    特許第6875747号

    Property Type: Patent

  2. メベンダゾール及び/もしくはイトラコナゾール又はその塩を含有する、肺高血圧症の予防又は治療剤

    下川 宏明, 佐藤 公雄, 大村 淳一, 菊池 順裕, 黒澤 亮

    Property Type: Patent

  3. 不飽和複素5員環含有化合物を含有する肺高血圧症の予防又は治療剤

    下川 宏明, 大島 吉輝, 菊地 晴久, 青木 淳賢, 土井 隆行, 可野 邦行, 佐藤 公雄, 黒澤 亮

    Property Type: Patent

  4. 生薬成分を含む肺高血圧症の予防又は治療剤

    下川宏明, 佐藤公雄, 黒澤亮

    Property Type: Patent

Research Projects 5

  1. 弁膜症とそのサブタイプに対する世界初のゲノムワイド関連解析による遺伝的基盤の解明

    黒澤 亮

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(C)

    Institution: 国立研究開発法人理化学研究所

    2025/04/01 - 2028/03/31

  2. 冠攣縮性狭心症に対する世界初のゲノムワイド関連解析による遺伝要因の同定

    黒澤 亮

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 若手研究

    Category: 若手研究

    Institution: 国立研究開発法人理化学研究所

    2022/04/01 - 2025/03/31

  3. 次世代型先制医療実現のための肺高血圧症病因蛋白群の抽出と治療法開発

    佐藤 公雄, 黒澤 亮, 宮田 敏, 菊地 順裕

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 基盤研究(B)

    Category: 基盤研究(B)

    Institution: 東北大学

    2019/04/01 - 2022/03/31

    More details Close

    肺動脈性肺高血圧症(PAH)は、依然として内科的根治療法のない致死性疾患である。病態の基盤は肺動脈血管平滑筋細胞の癌類似の増殖性亢進にあるが、その機序も不明であり、病因蛋白の探索と病態に根差した根本的治療薬の開発が求められている。肺移植施設である東北大学病院は重症患者を多く抱え、肺血管拡張薬の多剤併用療法によっても助けられない症例が依然多く、基礎研究とその臨床応用研究を長年継続してきた。これまで、ライブラリー化した患者由来の肺組織や肺動脈血管平滑筋細胞を用いて網羅的オミックス解析や候補遺伝子・病因蛋白の大規模スクリーニングを行い、PAH病因蛋白群を発見した。最初に発見したSelenoprotein Pについては血液中で測定可能な分泌蛋白であり、血管平滑筋細胞で欠損させることにより、PAHを改善することに成功した (Circulation 2018)。次に発見したADAMTS8についても、右室機能低下との関連も確認された(Circulation Research 2019)。そこで本研究では、以上の知見に基づき、全く新しいPAHの早期診断技術開発とアカデミア創薬の臨床応用を目指すこととした。2019年度は、セレノプロテインPについての新しい独自の診断試薬開発に成功した(ATVB 2019)。また、セレノプロテインPの発現抑制を指標にした創薬スクリーニングによって、天然化合物数種類を見出している。この低分子化合物は、肺高血圧モデルラットでの治療効果を示し、肺組織でのセレノプロテインP発現レベルを低下させることが分かった。一方で、ADAMTS8の発現を低下させる低分子化合物のスクリーニングも実施し、二種類の化合物を発見した。これらも、動物モデルでの治療効果を確認し、特許出願を行っている。このように、当初計画は順調に進んでおり、今年度もこれまで通り、研究を進めていく予定である。

  4. Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension High-Throughput Screening of 5562 Compounds.

    Kurosawa Ryo

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for Early-Career Scientists

    Institution: Tohoku University

    2019/04/01 - 2022/03/31

    More details Close

    We screened 5,562 compounds from original library using high-throughput screening system to discover compounds which inhibit proliferation of smooth muscle cells from patients with PAH with less inflammation and reactive oxygen species levels, and recovered mitochondrial energy metabolism. Celastramycin treatment ameliorated pulmonary hypertension in three experimental animal models. Moreover, these celastramycin-mediated effects were regulated by ZFC3H1 (zinc finger C3H1 domaincontaining protein), a binding partner of celastramycin.

  5. 化合物ライブラリーを利用した新規肺高血圧症治療薬の開発

    黒澤 亮

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 特別研究員奨励費

    Category: 特別研究員奨励費

    Institution: 東北大学

    2017/04/26 - 2019/03/31

    More details Close

    我々は、東北大学化合物ライブラリーを利用し肺動脈性肺高血圧症 (PAH) に有効な新しい化合物celsatramycin (CEL) を発見した。PAHの原因の一つである肺動脈平滑筋細胞 (PASMC) の増殖を抑制するという全く新しい機序による治療薬として更なる検討を行い臨床応用を目指した。具体的には、PAH患者由来のPASMCを用いたin vitroでのCEL刺激実験、CELを投与したin vivoでの肺高血圧モデルマウスの肺検体、血漿検体等を用いた蛋白解析、遺伝子発現解析、組織解析等を行い、作用機序を明らかにした。またCELは既に24種類の誘導体が東北大学の研究室に存在するが、最適化研究としてより有効で副作用の少ない誘導体を選び出した。セラストラマイシンの機序についてさらに、ZFC3H1というzinc finger proteinに直接結合することから、様々なシグナル経路に影響を与えることが示された。肺高血圧モデル動物を用いた実験では、右室収縮気圧だけでなく、肺動脈圧の測定も行い、CELの効果を確認した。最終的には臨床応用を目的としているため、動物レベルでの副作用についても検討を行い、CEL投与ラットでの血液検査から、肝毒性、腎毒性などないことを確認した。さらに、ADMEの検討を行い、毒性、選択性、溶解性、膜透過性、血中での安定性などをAMEDと連携して検討した。これまでの結果を踏まえ、将来的には企業と連携し、高血圧症の新規治療薬としての臨床試験、製品化を目指したい。