研究者詳細

顔写真

キリカエ ヒナコ
切替 日奈子
Hinako Kirikae
所属
大学院医学系研究科 医科学専攻 細胞生物学講座(器官解剖学分野)
職名
助教
学位
  • 医学博士 (東北大学)

学歴 2

  • 東北大学 大学院医学系研究科

    2022年4月 ~ 2026年3月

  • 東北大学 医学部 医学科

    2016年4月 ~ 2022年3月

研究キーワード 3

  • 精神疾患

  • 自閉症

  • 神経発達

受賞 3

  1. JNS-FENS科学交流促進事業 トラベルアワード

    2026年1月 日本神経科学会

  2. 日本内科学会ことはじめ2023 優秀演題賞

    2023年4月 日本内科学会

  3. 学生セッション優秀賞

    2023年3月 日本解剖学会

論文 10

  1. Maternal granulocyte colony-stimulating factor alters synaptic maturation and social behaviors in offspring. 国際誌

    Hinako Kirikae, Karina Kimura, Jinghang Fu, Zhengkang Sun, Hongbo Wang, Haruka Shibuya, Yoshiyuki Kasahara, Hirofumi Miyazaki, Yui Yamamoto, Mai Sakai, Zhiqian Yu, Shohei Ochi, Fumito Naganuma, Takeo Yoshikawa, Takashi Namba, Noriko Osumi, Hiroaki Tomita, Yuji Owada, Motoko Maekawa

    Brain, behavior, and immunity 135 106534-106534 2026年3月11日

    DOI: 10.1016/j.bbi.2026.106534  

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    Neurodevelopmental disorders, including autism spectrum disorder (ASD), arise from complex interactions between genetic and environmental factors. Maternal immune activation (MIA) is a key environmental risk factor that disrupts embryonic neurodevelopment, primarily through inflammatory cytokines. However, the contribution of non-inflammatory cytokines, particularly hematopoietic growth factors, remains poorly understood. Here, we identified granulocyte colony-stimulating factor (G-CSF) as a candidate mediator of MIA-induced neurodevelopmental alterations. Polyinosinic:polycytidylic acid [poly(I:C)] administration to pregnant dams at embryonic day 12.5 (E12.5) significantly increased G-CSF levels in both maternal plasma and embryonic tissue. To assess its contribution to neurodevelopmental alterations, we administered human G-CSF (hG-CSF) to pregnant dams at E12.5. At the structural level, male offspring exposed to prenatal hG-CSF showed increased dendritic spine density and a higher proportion of immature spines in the medial prefrontal cortex. Behaviorally, both male and female offspring exhibited altered social preference. Bulk RNA-seq analysis of the prefrontal cortex revealed altered enrichment of pathways related to synapse organization, translation, and mitochondrial function in both sexes, with opposite directions of enrichment in males and females. In vitro, G-CSF attenuated synapse maturation and enhanced microglial phagocytic activity. These findings suggest that G-CSF may contribute to MIA-associated neurodevelopmental alterations, potentially through disrupted synapse maturation and microglial function. Our results highlight a hematopoietic pathway that may contribute to mechanisms underlying neurodevelopmental disorders, including ASD.

  2. [Exploring the therapeutic potential of PPARα in schizophrenia].

    Motoko Maekawa, Karina Kimura, Jinghang Fu, Hinako Kirikae, Hongbo Wang

    Nihon yakurigaku zasshi. Folia pharmacologica Japonica 161 (2) 79-82 2026年

    DOI: 10.1254/fpj.25076  

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    Peroxisome proliferator-activated receptor α (PPARα) is a nuclear receptor that regulates lipid metabolism and inflammatory responses. Recent studies have revealed that PPARα also plays an important role in maintaining neuronal homeostasis through modulation of fatty-acid oxidation and inflammation in the brain. Our previous work using both animal models and human samples has demonstrated that PPARα is involved in the pathophysiology of schizophrenia. Ppara-deficient mice exhibit reduced prepulse inhibition, increased anxiety-like behavior, and decreased dendritic spine density with a reduction of mature spines in the prefrontal cortex. In patients with schizophrenia, decreased expression of the PPARA gene in hair-follicle cells and loss-of-function variants of PPARA have been identified, suggesting that impairment of PPARα signaling contributes to disease development. Moreover, administration of a PPARα agonist ameliorates dendritic spine abnormalities and behavioral deficits in phencyclidine (PCP)-treated model mice. Other groups have reported that prenatal treatment with PPARα agonists improves adult behavioral abnormalities and suppresses fetal cytokine elevation in maternal immune-activation models. In addition, PPARα agonists have shown beneficial effects in animal models and clinical studies of autism spectrum disorder and depression. Collectively, these findings indicate that PPARα represents a novel therapeutic target that bridges metabolic, neurodevelopmental, and neurodegenerative mechanisms, offering new opportunities for drug discovery in psychiatric and neurological disorders.

  3. Hypothalamic-pituitary-adrenal dynamics in early-stage COVID-19 observed in a case with arginine vasopressin deficiency. 国際誌

    Hinako Kirikae, Yuta Tezuka, Michiko Okamoto, Ginji Furuta, Kei Omata, Yoshikiyo Ono, Tetsuhiro Tanaka, Fumitoshi Satoh

    BMC endocrine disorders 25 (1) 169-169 2025年7月8日

    DOI: 10.1186/s12902-025-01992-3  

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    BACKGROUND: The impact of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection on pituitary function remains unclear, particularly during the acute phase of coronavirus disease 2019 (COVID-19). CASE PRESENTATION: We report the case of a 40-year-old man with arginine vasopressin deficiency (central diabetes insipidus) who was admitted for the evaluation of anterior pituitary function. The patient developed mild COVID-19 during the hospitalization, when we inadvertently observed rapid activation of the hypothalamic-pituitary-adrenal (HPA) axis prior to the onset of fever. At the estimated onset of COVID-19, the patient's body temperature and the serum level of C-reactive protein remained within normal limits, whereas plasma ACTH levels drastically elevated, and subsequently, serum cortisol levels remain consistently high throughout the day, resulting in increased urinary free cortisol. The serum levels of several cytokines, including IFN-γ, IL-1RA, IL-6, and TNF-α, were also significantly elevated compared to those in the non-infected state. Acute suppression of thyroid and gonadal functions was observed approximately one day after the HPA axis activation. CONCLUSIONS: These findings illustrate the rapid response of the HPA axis to inflammatory factors in the early-stage COVID-19, which may have important implications for understanding the initial host responses to SARS-CoV-2 infection.

  4. Effects of pharmacological inhibition of FABP4 during gestation and lactation on offspring neurodevelopment and behavior. 国際誌

    Sun Zhengkang, Hinako Kirikae, He Xiaofeng, Fumiko Yoshimachi, Minori Ikuta, Tetsuo Ohnishi, Yui Yamamoto, Hirofumi Miyazaki, Yoshiyuki Kasahara, Mai Sakai, Zhiqian Yu, Noriko Osumi, Hiroaki Tomita, Yuji Owada, Motoko Maekawa

    Neuroscience letters 853 138199-138199 2025年3月28日

    DOI: 10.1016/j.neulet.2025.138199  

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    Fatty acid-binding protein 4 (FABP4), a key regulator of lipid metabolism and inflammation, has been implicated in neurodevelopmental disorders, including autism spectrum disorder (ASD). This study investigated the effects of FABP4 inhibition during gestation and lactation on offspring neurodevelopment using the selective FABP4 inhibitor BMS309403. Female mice received BMS309403 (15 mg/kg) via oral gavage from two weeks before mating to postnatal day 28 (P28). Administration of BMS309403 to mouse dams resulted in autism-like phenotypes in male offspring (behavioral tests: n = 7-10 per group; spine analysis: 6 mice per group, n = 26-38 dendrites per group), characterized by increased dendritic spine density in the prefrontal cortex, impaired vocal communication, increased repetitive behaviors, and depression-like symptoms. Fatty acid analysis (n = 4-6 per group) revealed significant alterations in maternal and fetal lipid profiles, including elevated arachidonic acid levels in maternal plasma and increased n6PUFAs in the fetal brain, suggesting a pro-inflammatory lipid environment. Principal component analysis demonstrated distinct clustering of lipid profiles between control and BMS309403-treated groups. Cytokine analysis (n = 6 per group) indicated reductions in IL-10 and IL-12(p40) in maternal plasma and decreased TNFα in the fetal plasma, suggesting dysregulation in systemic inflammatory signaling. These findings suggest that FABP4 inhibition during the perinatal period perturbs lipid metabolism and may influence neurodevelopment through systemic metabolic changes. Although the direct effects of BMS309403 on the fetal brain cannot be excluded, alteration in maternal metabolism and placental function may have contributed to the observed neurodevelopmental changes in offspring.

  5. Gene Expression Profiling in the Cortex of Fabp4 Knockout Mice 国際誌

    Kirikae, H., He, X., Ohnishi, T., Miyazaki, H., Yoshikawa, T., Owada, Y., Maekawa, M.

    Neuropsychopharmacology Reports 45 (1) e70006 2025年

    DOI: 10.1002/npr2.70006  

    ISSN:2574-173X

  6. Comprehensive genetic analysis for identification of monogenic disorders and selection of appropriate treatments in pediatric patients with persistent thrombocytopenia. 国際誌

    Daichi Sato, Hinako Kirikae, Tomohiro Nakano, Saori Katayama, Hisao Yaoita, Jun Takayama, Gen Tamiya, Shigeo Kure, Atsuo Kikuchi, Yoji Sasahara

    Pediatric hematology and oncology 41 (8) 541-556 2024年11月

    DOI: 10.1080/08880018.2024.2395358  

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    Persistent thrombocytopenia is caused by various diseases, including immune thrombocytopenia, inherited thrombocytopenia, and inherited bone marrow failure syndromes. Considering the large number of genes responsible for inherited disorders, comprehensive genetic analysis is required to diagnose monogenic disorders. In this study, we enrolled 53 pediatric patients with persistent thrombocytopenia exhibiting visually small or normal-sized platelets. We performed whole-exome sequencing, including 56 genes responsible for inherited thrombocytopenia, and evaluated clinical parameters according to disease type. Among 53 patients, 12 patients (22.6%) were diagnosed with monogenic disorders. Nine patients had a family history of thrombocytopenia. Pathogenic or novel variants of genes responsible for inherited thrombocytopenia were identified in three and six patients, respectively. The variants in genes for inherited thrombocytopenia with large or giant platelets were unexpectedly identified in six patients. Pathogenic variants in genes for inherited bone marrow failure syndromes with systemic features were identified in three patients with atypical symptoms. Since the definitive diagnostic methods for immune thrombocytopenia are limited, and a substantial number of patients with inherited thrombocytopenia are at a high risk of developing malignancies, comprehensive genetic analysis is indispensable for selecting appropriate therapies, avoidance of unnecessary treatments for immune thrombocytopenia, and long-term follow-up of patients with inherited thrombocytopenia.

  7. Postnatal persistence of hippocampal Cajal-Retzius cells has a crucial role in the establishment of the hippocampal circuit. 国際誌

    Ingvild Lynneberg Glærum, Keagan Dunville, Kristian Moan, Maike Krause, Nicola Pietro Montaldo, Hinako Kirikae, Maximiliano Jose Nigro, Pål Sætrom, Barbara van Loon, Giulia Quattrocolo

    Development (Cambridge, England) 151 (1) 2024年1月1日

    DOI: 10.1242/dev.202236  

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    Cajal-Retzius (CR) cells are a transient neuron type that populate the postnatal hippocampus. To understand how the persistence of CR cells influences the maturation of hippocampal circuits, we combined a specific transgenic mouse line with viral vector injection to selectively ablate CR cells from the postnatal hippocampus. We observed layer-specific changes in the dendritic complexity and spine density of CA1 pyramidal cells. In addition, transcriptomic analysis highlighted significant changes in the expression of synapse-related genes across development. Finally, we were able to identify significant changes in the expression levels of latrophilin 2, a postsynaptic guidance molecule known for its role in the entorhinal-hippocampal connectivity. These findings were supported by changes in the synaptic proteomic content in CA1 stratum lacunosum-moleculare. Our results reveal a crucial role for CR cells in the establishment of the hippocampal network.

  8. Case Report: Vertebro-vertebral arteriovenous fistula showing symptoms mimicking ALS: Diagnostic imaging supports accurate differentiation between ALS and mimicking conditions 国際誌

    Kirikae, H., Harada, R., Hosaka, T., Misu, T., Ando, D., Warita, H., Endo, T., Sonobe, S., Niizuma, K., Aoki, M.

    F1000Research 11 546-546 2022年10月13日

    DOI: 10.12688/f1000research.121554.3  

    ISSN:2046-1402

  9. Not All That Is Gold Glitters: PV-IRES-Cre Mouse Line Shows Low Efficiency of Labeling of Parvalbumin Interneurons in the Perirhinal Cortex 国際誌

    Maximiliano Jos{\'{e } } Nigro, Hinako Kirikae, Kasper Kjelsberg, Rajeevkumar Raveendran Nair, Menno P. Witter

    Frontiers in Neural Circuits 15 781928-781928 2021年11月8日

    出版者・発行元: Frontiers Media {SA}

    DOI: 10.3389/fncir.2021.781928  

    ISSN:1662-5110

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    <jats:p>The wide diversity of cortical inhibitory neuron types populating the cortex allows the assembly of diverse microcircuits and endows these circuits with different computational properties. Thus, characterizing neuronal diversity is fundamental to describe the building blocks of cortical microcircuits and probe their function. To this purpose, the mouse has emerged as a powerful tool to genetically label and manipulate specific inhibitory cell-types in the mammalian brain. Among these cell-types, the parvalbumin-expressing interneuron type (PV-INs) is perhaps the most characterized. Several mouse lines have been generated to target PV-INs. Among these mouse lines, the PV-IRES-Cre lines is the most widely used and demonstrated a high specificity and efficiency in targeting PV-INs in different cortical areas. However, a characterization of the performance across cortical regions is still missing. Here we show that the PV-IRES-Cre mouse line labels only a fraction of PV immunoreactive neurons in perirhinal cortex and other association areas. Our results point to a yet uncharacterized diversity within the PV-INs and emphasize the need to characterize these tools in specific cortical areas.</jats:p>

  10. Two types of early epileptic encephalopathy in a Pitt-Hopkins syndrome patient with a novel TCF4 mutation 国際誌

    Hinako Kirikae, Mitsugu Uematsu, Yurika Numata-Uematsu, Naoya Saijo, Yu Katata, Yoshitsugu Oikawa, Atsuo Kikuchi, Kumiko Yanagi, Tadashi Kaname, Kazuhiro Haginoya, Shigeo Kure

    Brain and Development 44 (2) 148-152 2021年9月

    出版者・発行元: Elsevier {BV}

    DOI: 10.1016/j.braindev.2021.09.003  

    ISSN:0387-7604

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    INTRODUCTION: Pitt-Hopkins syndrome (PTHS) is a neurodevelopmental disorder caused by mutations in TCF4. Seizures have been found to vary among patients with PTHS. We report the case of a PTHS patient with a novel missense mutation in the gene TCF4, presenting with two types of early epileptic encephalopathy. CASE REPORT: The patient was a Japanese boy. His first seizure was reported at 17 days of age, with twitching of the left eyelid and tonic-clonic seizures on either side of his body. An ictal electroencephalogram (EEG) showed epileptic discharges arising independently from both hemispheres, occasionally resembling migrating partial seizures of infancy (MPSI) that migrated from one side to the other. Brain magnetic resonance imaging revealed agenesis of the corpus callosum. His facial characteristics included a distinctive upper lip and thickened helices. His seizures were refractory, and psychomotor development was severely delayed. At the age of 10 months, he developed West syndrome with spasms and hypsarrhythmia. After being prescribed topiramate (TPM), his seizures and EEG abnormalities dramatically improved. Also, psychomotor development progressed. Whole-exome sequencing revealed a novel de novo missense mutation in exon 18 (NM_001083962.2:c.1718A > T, p.(Asn573Ile)), corresponding to the basic region of the basic helix-loop-helix domain, which may be a causative gene for epileptic encephalopathy. CONCLUSIONS: To our knowledge, this is the first report of a patient with PTHS treated with TPM, who presented with both MPSI as well as West syndrome. This may help provide new insights regarding the phenotypes caused by mutations in TCF4.

︎全件表示 ︎最初の5件までを表示

MISC 1

  1. 持続性血小板減少症の小児患者における単一遺伝子疾患を同定するための包括的遺伝子解析

    佐藤 大地, 切替 日奈子, 中野 智太, 片山 紗乙莉, 矢尾板 久雄, 呉 繁夫, 菊池 敦生, 笹原 洋二

    日本小児科学会雑誌 128 (2) 267-267 2024年2月

    出版者・発行元: (公社)日本小児科学会

    ISSN: 0001-6543

共同研究・競争的資金等の研究課題 1

  1. 母体免疫活性化自閉症モデルマウスを用いたシナプス分子動態の解析

    切替 日奈子

    2024年4月23日 ~ 2026年3月31日