研究者詳細

顔写真

ヘ シヤオドン
何 暁東
Xiaodong He
所属
東北メディカル・メガバンク機構 バイオバンク部門
職名
助教
学位
  • 医学博士(群馬大学)

e-Rad 研究者番号
31030645

経歴 3

  • 2025年4月 ~ 継続中
    東北大学東北メディカル・メガバンク機構 助教

  • 2014年6月 ~ 2025年3月
    山東大学 医学部 講師

  • 2012年4月 ~ 2014年6月
    沖縄科学技術大学院大学 G0 Unit 研究員

学歴 1

  • 群馬大学 医科学研究科

    2008年4月 ~ 2012年3月

研究分野 1

  • ライフサイエンス / 細胞生物学 /

論文 11

  1. Chondroitin sulfate alleviates osteoporosis caused by calcium deficiency by regulating lipid metabolism. 国際誌 査読有り

    Tianshu Liu, Hai Yu, Shuai Wang, Huimin Li, Xinyiran Du, Xiaodong He

    Nutrition & metabolism 20 (1) 6-6 2023年2月6日

    DOI: 10.1186/s12986-023-00726-3  

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    The use of non-drug intervention for calcium deficiency has attracted attention in recent years. Although calcium carbonate is the preferred raw material for calcium supplementation, there are few reports on the mechanism of the combined action of chondroitin sulfate and calcium to alleviate osteoporosis from the perspective of gut microbiota and metabolomics. In this study, a rat model of osteoporosis was established by feeding a low-calcium diet. The intestinal microbiota abundance, fecal and plasma metabolite expression levels of rats fed a basal diet, a low-calcium diet, a low-calcium diet plus calcium carbonate, and a low-calcium diet plus chondroitin sulfate were compared. The results showed that compared with the low calcium group, the calcium content and bone mineral density of femur were significantly increased in the calcium carbonate and chondroitin sulfate groups. 16 S rRNA sequencing and metabolomics analysis showed that chondroitin sulfate intervention could reduce short-chain fatty acid synthesis of intestinal flora, slow down inflammatory response, inhibit osteoclast differentiation, promote calcium absorption and antioxidant mechanism, and alleviate osteoporosis in low-calcium feeding rats. Correlation analysis showed that the selected intestinal flora was significantly correlated with metabolites enriched in feces and plasma. This study provides scientific evidence of the potential impact of chondroitin sulfate as a dietary supplement for patients with osteoporosis.

  2. Pathogenic Roles of RNA-Binding Proteins in Sarcomas. 国際誌 査読有り

    Yu Hai, Asuka Kawachi, Xiaodong He, Akihide Yoshimi

    Cancers 14 (15) 2022年8月5日

    DOI: 10.3390/cancers14153812  

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    RNA-binding proteins (RBPs) are proteins that physically and functionally bind to RNA to regulate the RNA metabolism such as alternative splicing, polyadenylation, transport, maintenance of stability, localization, and translation. There is accumulating evidence that dysregulated RBPs play an essential role in the pathogenesis of malignant tumors including a variety of types of sarcomas. On the other hand, prognosis of patients with sarcoma, especially with sarcoma in advanced stages, is very poor, and almost no effective standard treatment has been established for most of types of sarcomas so far, highlighting the urgent need for identifying novel therapeutic targets based on the deep understanding of pathogenesis. Therefore, defining the network of interactions between RBPs and disease-related RNA targets will contribute to a better understanding of sarcomagenesis and identification of a novel therapeutic target for sarcomas.

  3. Atorvastatin Inhibits High-Fat Diet-Induced Lipid Metabolism Disorders in Rats by Inhibiting Bacteroides Reduction and Improving Metabolism. 国際誌 査読有り

    Huimin Li, Shue Wang, Shuai Wang, Hai Yu, Wenhao Yu, Xiaomin Ma, Xiaodong He

    Drug design, development and therapy 16 3805-3816 2022年

    DOI: 10.2147/DDDT.S379335  

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    PURPOSE: The prevalence of hyperlipidemia and related illnesses is on its rise, and atorvastatin is the frequently used hypolipidemic agent. However, there is still uncertainty about the mechanisms, especially the relationship between the lipid-lowering effect, intestinal microbiome, and metabolic profiles. We aim to intensively explain the mechanism of the hypolipidemic effect of atorvastatin through multi-omics perspective of intestinal microbiome and metabolomics. METHODS: Multi-omics methods play an increasingly important role in the analysis of intestinal triggers and evaluation of metabolic disorders such as obesity, hyperlipidemia, and diabetes. Therefore, we were prompted to explore intestinal triggers, underlying biomarkers, and potential intervention targets of atorvastatin in the treatment of dyslipidemia through multi-omics. To achieve this, SPF Wistar rats were fed a high-fat diet or normal diet for 8 weeks. Atorvastatin was then administered to high-fat diet-fed rats. RESULTS: By altering intestinal microbiome, a high-fat diet can affect feces and plasma metabolic profiles. Treatment with atorvastatin possibly increases the abundance of Bacteroides, thereby improving "propanoate metabolism" and "glycine, serine and threonine metabolism" in feces and plasma, and contributing to blood lipid reduction. CONCLUSION: Our study elucidated the intestinal triggers and metabolites of high-fat diet-induced dyslipidemia from the perspective of intestinal microbiome and metabolomics. It equally identified potential intervention targets of atorvastatin. This further explains the mechanism of the hypolipidemic effect of atorvastatin from a multi-omics perspective.

  4. Multi-omics: Opportunities for research on mechanism of type 2 diabetes mellitus. 国際誌 査読有り

    Shuai Wang, Hui Yong, Xiaodong He

    World journal of diabetes 12 (7) 1070-1080 2021年7月15日

    DOI: 10.4239/wjd.v12.i7.1070  

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    Type 2 diabetes mellitus (T2DM) is a burdensome global disease. In-depth understanding of its mechanism will help to optimize diagnosis and treatment, which reduces the burden. Multi-omics research has unparalleled advantages in contributing to the overall understanding of the mechanism of this chronic metabolic disease. In the past two decades, the study of multi-omics on T2DM-related intestinal flora perturbation and plasma dyslipidemia has shown tremendous potential and is expected to achieve major breakthroughs. The regulation of intestinal flora in diabetic patients has been confirmed by multiple studies. The use of metagenomics, 16S RNA sequencing, and metabolomics has comprehensively identified the overall changes in the intestinal flora and the metabolic disturbances that could directly or indirectly participate in the intestinal flora-host interactions. Lipidomics combined with other "omics" has characterized lipid metabolism disorders in T2DM. The combined application and cross-validation of multi-omics can screen for dysregulation in T2DM, which will provide immense opportunities to understand the mechanisms behind T2DM.

  5. Phocea, Pseudoflavonifractor and Lactobacillus intestinalis: Three Potential Biomarkers of Gut Microbiota That Affect Progression and Complications of Obesity-Induced Type 2 Diabetes Mellitus. 国際誌 査読有り

    Yuxin Wang, Meishuo Ouyang, Xibao Gao, Shuai Wang, Chunyang Fu, Jiayi Zeng, Xiaodong He

    Diabetes, metabolic syndrome and obesity : targets and therapy 13 835-850 2020年

    DOI: 10.2147/DMSO.S240728  

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    PURPOSE: The purpose of this study was to explore the difference and association between intestinal microbiota and plasma metabolomics between type 2 diabetes mellitus (T2DM) and normal group and to identify potential microbiota biomarkers that contribute the most to the difference in metabolites. METHODS: Six male ZDF model (fa/fa) rats were fed by a Purina #5008 Lab Diet (crude protein 23.5%, crude fat 6.5%) for 3 weeks and their age-matched 6 ZDF control (fa/+) rats were fed by normal rodent diet. Their stool and blood samples were collected at 12 weeks. To analyze the microbial populations in these samples, we used a 16S rRNA gene sequencing approach. Liquid chromatography-mass spectrometry (LC-MS) followed by multivariate statistical analysis was applied to the plasma metabolites profiling. Correlation analysis of them was calculated by Pearson statistical method. RESULTS: Twelve potential biomarkers of intestinal microbial flora and 357 differential metabolites were found in ZDF fa/fa rats, among which there are three flora that contributed the most to the perturbation of metabolites, including genus Phocea, Pseudoflavonifractor and species Lactobacillus intestinalis. CONCLUSION: Our study demonstrates the alterations of the abundance and diversity of the intestinal microbiota and the perturbation of metabolites in ZDF rats (fa/fa). We found three potential biomarkers of intestinal microbiota that may lead to perturbation in plasma metabolites. This may prompt new pathogenesis of obesity-related T2DM, but we also need to study further about the causal relationship between intestinal microbe and T2DM, so as to find the target of T2DM treatment or preventive measures.

  6. Metalloproteins and apolipoprotein C: candidate plasma biomarkers of T2DM screened by comparative proteomics and lipidomics in ZDF rats. 国際誌 査読有り

    Shuai Wang, Zhiyuan Lu, Yuxin Wang, Tianran Zhang, Xiaodong He

    Nutrition & metabolism 17 66-66 2020年

    DOI: 10.1186/s12986-020-00488-2  

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    BACKGROUND: Early diagnosis of type 2 diabetes mellitus (T2DM) is still difficult. Screening of plasma biomarkers has great significance of optimizing diagnosis and predicting the complications of T2DM. METHODS: We used a special diet, Purina #5008, to induce diabetes in Zucker leptin receptor gene-deficient rats (fa/fa) to establish Zucker diabetic fatty (ZDF) rats, simulating the early stage of T2DM. The differentially expressed proteins (DEP) and lipids (DEL), as potential biomarkers, were screened to compare the plasma expression levels in ZDF rats and their basic diet-fed wild-type controls (fa/+) by Tandem Mass Tags (TMT) and liquid chromatography-tandem mass spectrometry. RESULTS: These two groups had different plasma proteins and lipids profiles consisting of 84 DEPs and, 179 DELs identified in the positive ion mode and 178 DELs in the negative ion mode, respectively. Enrichment analysis of these different indicators showed that oxidative stress, insulin resistance and metabolic disorders of glycan and lipid played an important role in generating the difference. Some markers can be used as candidate biomarkers in prediction and treatments of T2DM, such as ceruloplasmin, apolipoprotein C-I, apolipoprotein C-II and apolipoprotein C-IV. CONCLUSION: These plasma differences help to optimize the diagnosis and predict the complications of T2DM, although this remains to be verified in the crowd. Trace elements related-metalloproteins, such as ceruloplasmin, and lipid metabolism and transport-related apolipoprotein C are expected to be candidate biomarkers of T2DM and should be given more attention.

  7. A new water-soluble and mitochondria-targeted fluorescence probe for ratiometric detection of hypochlorous acid in living cells 査読有り

    Li-Jie Zhang, Xuan Zhao, Di Yang, Zhen-Zhen Jia, Xiao Han, Lin-Quan Sun, Li-Li Yu, Jin-Ting Liu, Xiaodong He, Jun-Ying Miao, Bao-Xiang Zhao

    Sensors and Actuators B: Chemical 276 8-12 2018年12月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.snb.2018.08.071  

    ISSN:0925-4005

  8. A new lipid droplets-targeted fluorescence probe for specific detection of SO2 derivatives in living cells 査読有り

    Miao-Fei Huang, Li-Na Chen, Jun-Ya Ning, Wen-Li Wu, Xiaodong He, Jun-Ying Miao, Bao-Xiang Zhao

    Sensors and Actuators B: Chemical 261 196-202 2018年5月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.snb.2018.01.139  

    ISSN:0925-4005

  9. Involvement of proton-sensing receptor TDAG8 in the anti-inflammatory actions of dexamethasone in peritoneal macrophages. 国際誌 査読有り

    Xiaodong He, Masayuki Tobo, Chihiro Mogi, Takashi Nakakura, Mayumi Komachi, Naoya Murata, Mutsumi Takano, Hideaki Tomura, Koichi Sato, Fumikazu Okajima

    Biochemical and biophysical research communications 415 (4) 627-31 2011年12月2日

    DOI: 10.1016/j.bbrc.2011.10.122  

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    Dexamethasone (DEX), a potent glucocorticoid, increased the expression of T-cell death associated gene 8 (TDAG8), a proton-sensing G protein-coupled receptor, which is associated with the enhancement of acidic pH-induced cAMP accumulation, in peritoneal macrophages. We explored the role of increased TDAG8 expression in the anti-inflammatory actions of DEX. The treatment of macrophages with either DEX or acidic pH induced the cell death of macrophages; however, the cell death was not affected by TDAG8 deficiency. While DEX inhibited lipopolysaccharide-induced production of tumor necrosis factor-α, an inflammatory cytokine, which was independent of TDAG8, at neutral pH, the glucocorticoid enhanced the acidic pH-induced inhibition of tumor necrosis factor-α production in a manner dependent on TDAG8. In conclusion, the DEX-induced increase in TDAG8 expression is in part involved in the glucocorticoid-induced anti-inflammatory actions through the inhibition of inflammatory cytokine production under the acidic pH environment. On the other hand, the role of TDAG8 in the DEX-induced cell death is questionable.

  10. Each one of certain histidine residues in G-protein-coupled receptor GPR4 is critical for extracellular proton-induced stimulation of multiple G-protein-signaling pathways. 国際誌 査読有り

    Jin-Peng Liu, Takashi Nakakura, Hideaki Tomura, Masayuki Tobo, Chihiro Mogi, Ju-Qiang Wang, Xiaodong He, Mutsumi Takano, Alatangaole Damirin, Mayumi Komachi, Koichi Sato, Fumikazu Okajima

    Pharmacological research 61 (6) 499-505 2010年6月

    DOI: 10.1016/j.phrs.2010.02.013  

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    GPR4, previously proposed as the receptor for sphingosylphosphorylcholine, has recently been identified as the proton-sensing G-protein-coupled receptor coupling to multiple intracellular signaling pathways, including the G(s)-protein/cAMP, G(12/13)-protein/Rho, and G(q)-protein/phospholipase C pathways. In the present study, we examined whether extracellularly located histidine residues of GPR4 sense extracellular protons and, if so, whether a certain histidine residue is critical for coupling to the single or multiple signaling pathway(s). We found that the mutation of histidine residue at 79, 165, or 269 from the N-terminal of GPR4 to phenylalanine shifted the half-maximal effective concentration (EC(50)) of proton-induced signaling activities to the right, including cAMP accumulation, SRE promoter activity reflecting Rho activity, and NFAT promoter activity reflecting phospholipase C signaling activity, without an appreciable change in the maximal activities. These results suggest that the protonation of each one of histidine residues at 79, 165, and 269 in GPR4 may be critical for conformational change of the receptor for coupling to multiple intracellular signaling pathways through G-proteins.

  11. Involvement of proton-sensing TDAG8 in extracellular acidification-induced inhibition of proinflammatory cytokine production in peritoneal macrophages. 国際誌 査読有り

    Chihiro Mogi, Masayuki Tobo, Hideaki Tomura, Naoya Murata, Xiaodong He, Koichi Sato, Takao Kimura, Tamotsu Ishizuka, Takehiko Sasaki, Takashi Sato, Yasuyuki Kihara, Satoshi Ishii, Akihiro Harada, Fumikazu Okajima

    Journal of immunology (Baltimore, Md. : 1950) 182 (5) 3243-51 2009年3月1日

    DOI: 10.4049/jimmunol.0803466  

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    Extracellular acidification inhibited LPS-induced TNF-alpha protein production, which was associated with an inhibition of TNF-alpha mRNA expression, in mouse peritoneal macrophages. The LPS-induced cytokine production was also inhibited by G(s) protein-coupled receptor agonists prostaglandin E(1) and isoproterenol. Among OGR1 family proton-sensing GTP-binding regulatory protein-coupled receptors, TDAG8, OGR1, and G2A are expressed in the cells. The inhibitory action by acidic pH on TNF-alpha production was significantly attenuated in macrophages from TDAG8(Tp/Tp) mice but not in those from OGR1(geo/geo) mice. Moreover, small interfering RNA specific to TDAG8, but not to G2A, clearly attenuated the acidification-induced inhibition of TNF-alpha production. On the other hand, the down-regulation or deficiency of TDAG8 hardly affected prostaglandin E(1)- or isoproterenol-induced actions. LPS-induced IL-6 production was also inhibited by extracellular acidification in a manner that was sensitive to TDAG8 expression. The acidic pH-induced inhibitory action on the cytokine production was significantly reversed either by a small interfering RNA specific to G(s) proteins or by a protein kinase A (PKA)-specific inhibitor H89. Indeed, a PKA-specific cAMP derivative inhibited LPS-induced cytokine production. Moreover, acidification induced cAMP accumulation in a TDAG8-specific way. We conclude that TDAG8, at least partly, mediates the extracellular acidification-induced inhibition of proinflammatory cytokine production through the G(s) protein/cAMP/PKA signaling pathway in mouse macrophages.

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担当経験のある科目(授業) 1

  1. 医化学 山東大学