Updated on 2026/07/15

写真a

 
HIMORI Koichi
 
Organization
Graduate School of Medicine Assistant Professor
Title
Assistant Professor

Research Interests 7

  1. バイオインフォマティクス

  2. マルチオミクス

  3. 臓器間連関

  4. 糖鎖

  5. 骨格筋

  6. 筋原性疾患

  7. 理学療法学

Research Areas 3

  1. Informatics / Biological, health, and medical informatics

  2. Life Science / Nutrition and health science

  3. Life Science / Rehabilitation science

Research History 4

  1. Nagoya University   Assistant Professor

    2026.6

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    Country:Japan

  2. Nagoya University   Researcher

    2023.4

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    Country:Japan

  3. Japan Society for Promotion of Science

    2020.4 - 2023.3

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    Country:Japan

  4. Japan Society for Promotion of Science

    2018.4 - 2020.3

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    Country:Japan

Education 3

  1. Sapporo Medical University

    2016.4 - 2019.3

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    Country: Japan

  2. Sapporo Medical University   Graduate School of Health Sciences

    2014.4 - 2016.3

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    Country: Japan

  3. Sapporo Medical University   School of Health Sciences

    2010.4 - 2014.3

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    Country: Japan

Professional Memberships 4

  1. 日本バイオインフォマティクス学会

    2024.9

  2. 日本筋学会

    2019.4

  3. 日本理学療法士協会

    2015.4

  4. 日本体力医学会

    2014.4

Awards 1

  1. 優秀論文賞

    2017.11   日本基礎理学療法学会   神経筋電気刺激誘引性の筋肥大における負荷強度と力積の役割

    檜森弘一, 舘林大介, 大山友加, 青木達彦, 山田崇史

 

Papers 28

  1. Skeletal muscle-specific PGC-1α-b overexpression prevents eccentric contraction-induced muscle injury through an utrophin-independent pathway in mice. Reviewed International journal Open Access

    Azuma Naito, Nao Tokuda, Nao Yamauchi, Ayaka Niibori, Kazuma Okada, Koichi Himori, Yuki Ashida, Takashi Yamada

    Physiological reports   Vol. 14 ( 2 ) page: e70743   2026.1

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    Slower oxidative fibers are more resistant to eccentric contraction (ECC)-induced muscle damage than fast-twitch glycolytic fibers, but the mechanisms remain unclear. This study investigated the roles of the exercise-inducible PGC-1α isoform PGC-1α-b and utrophin in protecting against ECC-induced damage. ECCs were induced by supramaximal electrical stimulation of the left triceps surae in C57BL/6N wild-type (WT), PGC-1α-b transgenic (Tg), utrophin knockout (Utrn KO), and PGC-1α-b Tg/Utrn KO mice. Although the proportion of fast-type myosin heavy chain (MyHC) IIb in the gastrocnemius muscle was modestly lower in PGC-1α-b Tg and PGC-1α-b Tg/Utrn KO mice than in WT and Utrn KO mice, MyHC IIb remained the predominant isoform. At 3 days post injury (dpi), WT and Utrn KO mice exhibited reduced maximum isometric torque (MIT), Evans blue dye (EBD) staining in MyHC IIb-positive fibers, and calpain-1 activation. In contrast, PGC-1α-b Tg and PGC-1α-b Tg/Utrn KO mice showed substantial MIT recovery at 1 dpi and minimal EBD uptake and calpain-1 activation at 3 dpi. PGC-1α-b Tg muscles also preserved excitation-contraction coupling proteins and displayed increased mitochondrial markers and integrin α7B expression. Together, our findings suggest that PGC-1α-b confers resistance to ECC-induced muscle damage through a Utrn-independent mechanism.

    DOI: 10.14814/phy2.70743

    Open Access

    PubMed

  2. The contralateral repeated bout effect is not caused by adaptations in skeletal muscle. Reviewed International journal Open Access

    Nao Tokuda, Koichi Himori, Yuki Ashida, Azuma Naito, Nao Yamauchi, Ayaka Niibori, Takashi Yamada

    Journal of applied physiology (Bethesda, Md. : 1985)   Vol. 139 ( 3 ) page: 605 - 615   2025.9

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    The repeated bout effect (RBE) refers to the phenomenon whereby the recovery of maximal voluntary contraction, a parameter considered to reflect muscle damage, is enhanced in a subsequent bout of exercise following an initial damaging bout. To investigate whether the ipsilateral RBE (IL-RBE) and contralateral RBE (CL-RBE) involve peripheral skeletal muscle adaptations, we assessed strength recovery following damaging eccentric contractions (ECCs) using supramaximal electrical stimulation to recruit all muscle fibers. Male Wistar rats were randomly assigned to one of the four groups: nondamaging control (CNT), damage (DMG), IL-RBE, and CL-RBE. The plantar flexors were exposed to 100 repeated ECCs with supramaximal electrical stimulation: once in the DMG group and twice at 2-wk intervals in the IL-RBE and CL-RBE groups. In the DMG group, the maximum isometric torque (MIT) at a stimulation frequency of 100 Hz remained 30% lower than the initial value even 4 days after ECCs. This was accompanied by an increased number of Evans Blue Dye-positive fibers, activation of calpain 1, and decreased expression of excitation-contraction coupling proteins. In the IL-RBE group, membrane damage and protein degradation were almost completely prevented and MIT returned to baseline by 1 day after ECCs. Conversely, the CL-RBE group did not show these beneficial effects observed in the IL-RBE group. These findings suggest that protective peripheral muscle adaptations contribute to the IL-RBE, but similar adaptations are unlikely to play a role in the CL-RBE.NEW & NOTEWORTHY When damaging contractions are repeatedly applied to a muscle, voluntary strength recovery is promoted not only in the exercised muscle but also in the contralateral muscle. However, the mechanism underlying this contralateral repeated bout effect (CL-RBE) remains unclear. Our findings show that strength recovery, assessed by electrical stimulation, was promoted only in the exercised muscle, not the contralateral side, suggesting the absence of adaptations within peripheral skeletal muscle in CL-RBE.

    DOI: 10.1152/japplphysiol.00495.2025

    Open Access

    PubMed

  3. Erratum: Myofiber androgen receptor increases muscle strength mediated by a skeletal muscle splicing variant of Mylk4. International journal Open Access

    Iori Sakakibara, Yuta Yanagihara, Koichi Himori, Takashi Yamada, Hiroshi Sakai, Yuichiro Sawada, Hirotaka Takahashi, Noritaka Saeki, Hiroyuki Hirakawa, Atsushi Yokoyama, So-Ichiro Fukada, Tatsuya Sawasaki, Yuuki Imai

    iScience   Vol. 28 ( 6 ) page: 112643 - 112643   2025.6

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    [This corrects the article DOI: 10.1016/j.isci.2021.102303.].

    DOI: 10.1016/j.isci.2025.112643

    Open Access

    PubMed

  4. HuTAge: a comprehensive human tissue- and cell-specific ageing signature atlas. Reviewed International journal Open Access

    Koichi Himori, Zhang Bingyuan, Kazuki Hatta, Yusuke Matsui

    Bioinformatics advances   Vol. 5 ( 1 ) page: vbaf072   2025

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    SUMMARY: Ageing is a complex process that involves interorgan and intercellular interactions. To obtain a clear understanding of ageing, cross-tissue single-cell data resources are required. However, a complete resource for humans is not available. To bridge this gap, we developed HuTAge, a comprehensive resource that integrates cross-tissue age-related information from The Genotype-Tissue Expression project with cross-tissue single-cell information from Tabula Sapiens to provide human tissue- and cell-specific ageing molecular information. AVAILABILITY AND IMPLEMENTATION: HuTAge is implemented within an R Shiny application and can be freely accessed at https://igcore.cloud/GerOmics/HuTAge/home. The source code is available at https://github.com/matsui-lab/HuTAge.

    DOI: 10.1093/bioadv/vbaf072

    Open Access

    PubMed

  5. Nrf2 deficiency in muscle attenuates experimental autoimmune myositis-induced muscle weakness. Reviewed International journal Open Access

    Koichi Himori, Mami Yamada, Takahiro Onoki, Daisuke Matsumaru, Hozumi Motohashi, Mitsuharu Okutsu

    The Journal of physiology   Vol. 602 ( 22 ) page: 6189 - 6207   2024.11

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    Idiopathic inflammatory myopathies (IIMs) are systemic autoimmune diseases characterised by muscle weakness. Although multiple physiological and pathological processes are associated with IIMs, T-lymphocyte infiltration into muscle plays a key role in the development and exacerbation of IIMs. Nuclear factor erythroid 2-related factor 2 (Nrf2) is a key transcription factor that regulates inflammatory responses; therefore, muscle Nrf2 may serve an important role in the development of IIMs. In this study, we demonstrated that experimental autoimmune myositis (EAM) causes loss of muscle mass and function in oxidative and glycolytic muscles in C57BL/6 mice. EAM increased CD4+ and CD8+ T-lymphocyte infiltration, as well as interferon-gamma (IFN-γ) and tumour necrosis factor-alpha (TNF-α) mRNA expression in oxidative soleus and glycolytic extensor digitorum longus muscles, along with elevated chemokine mRNA levels (i.e. CCL3, CCL5, CXCL9, CXCL10 and CXCL16). IFN-γ and TNF-α treatments increased the mRNA expression levels of these chemokines in C2C12 myotubes. EAM also increased phosphorylated Nrf2 at Ser40 in soleus and glycolytic white vastus lateralis muscle. Although the expression of several chemokines was affected by Nrf2 activation following tert-butylhydroquinone treatment or Keap1 knockdown, CCL5 mRNA expression significantly increased in C2C12 myotubes and mouse skeletal muscle. Moreover, muscle-specific Nrf2 knockout in mice attenuates EAM-induced loss of muscle mass and function, which was associated with the inhibition of CCL5 mRNA expression, CD8+ T-lymphocyte infiltration and IFN-γ mRNA expression. Collectively, these findings reveal that regulating Nrf2 activity is a promising therapeutic approach for treating IIM-mediated muscle weakness. KEY POINTS: Experimental autoimmune myositis (EAM) causes loss of muscle mass and function. Loss of muscle mass and function in EAM were associated with increased chemokine mRNA expression (i.e. CCL3, CCL5, CXCL9, CXCL10 and CXCL16), T-lymphocyte infiltration and inflammatory cytokine mRNA expression (i.e. IFN-γ and TNF-α) in the skeletal muscle. EAM activated Nrf2 in muscle and increased Nrf2 activity in vivo and in vitro increased CCL5 mRNA expression. Muscle-specific Nrf2 knockout in mice attenuated EAM-induced muscle weakness by inhibiting CCL5 mRNA expression, CD8+ T-lymphocyte migration and IFN-γ mRNA expression in muscles. These results provide further evidence for the potential therapeutic targeting of Nrf2 to mitigate EAM-induced muscle weakness.

    DOI: 10.1113/JP286534

    PubMed

  6. Dissociation of SH3 and cysteine rich domain 3 and junctophilin 1 from dihydropyridine receptor in dystrophin-deficient muscles. Reviewed International journal

    Yuki Ashida, Koichi Himori, Nao Tokuda, Azuma Naito, Nao Yamauchi, Nana Takenaka-Ninagawa, Yoshitsugu Aoki, Hidetoshi Sakurai, Takashi Yamada

    American journal of physiology. Cell physiology   Vol. 323 ( 3 ) page: C885-C895   2022.8

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    The disruption of excitation-contraction (EC) coupling and subsequent reduction in Ca2+ release from the sarcoplasmic reticulum (SR) have been shown to account for muscle weakness seen in patients with Duchenne muscular dystrophy (DMD). Here, we examined the mechanisms underlying EC uncoupling in skeletal muscles from mdx52 and DMD-null/NSG mice, animal models for DMD, focusing on the SH3 and cysteine rich domain 3 (STAC3) and junctophilin 1 (JP1), which link the dihydropyridine receptor (DHPR) in the transverse tubule and the ryanodine receptor 1 in the SR. The isometric plantarflexion torque normalized to muscle weight of whole plantar flexor muscles was depressed in mdx52 and DMD-null/NSG mice compared to their control mice. This was accompanied by increased autolysis of calpain-1, decreased levels of STAC3 and JP1 content, and dissociation of STAC3 and JP1 from DHPR-α1s in gastrocnemius muscles. Moreover, in vitro mechanistic experiments demonstrated that STAC3 and JP1 underwent Ca2+-dependent proteolysis which was less pronounced in dystrophin-deficient muscles where calpastatin, the endogenous calpain inhibitor, was upregulated. Eccentric contractions further enhanced autolysis of calpain-1 and proteolysis of STAC3 and JP1 that were associated with severe torque depression in gastrocnemius muscles from DMD-null/NSG mice. These data suggest that Ca2+-dependent proteolysis of STAC3 and JP1 may be an essential factor causing muscle weakness due to EC coupling failure in dystrophin-deficient muscles.

    DOI: 10.1152/ajpcell.00163.2022

    PubMed

  7. Improved skeletal muscle fatigue resistance in experimental autoimmune myositis mice following high-intensity interval training. Reviewed International journal Open Access

    Takashi Yamada, Yuki Ashida, Katsuyuki Tamai, Iori Kimura, Nao Yamauchi, Azuma Naito, Nao Tokuda, Håkan Westerblad, Daniel C Andersson, Koichi Himori

    Arthritis research & therapy   Vol. 24 ( 1 ) page: 156 - 156   2022.6

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    BACKGROUND: Muscle weakness and decreased fatigue resistance are key manifestations of systemic autoimmune myopathies (SAMs). We here examined whether high-intensity interval training (HIIT) improves fatigue resistance in the skeletal muscle of experimental autoimmune myositis (EAM) mice, a widely used animal model for SAM. METHODS: Female BALB/c mice were randomly assigned to control (CNT) or EAM groups (n = 28 in each group). EAM was induced by immunization with three injections of myosin emulsified in complete Freund's adjuvant. The plantar flexor (PF) muscles of mice with EAM were exposed to either an acute bout or 4 weeks of HIIT (a total of 14 sessions). RESULTS: The fatigue resistance of PF muscles was lower in the EAM than in the CNT group (P < 0.05). These changes were associated with decreased activities of citrate synthase and cytochrome c oxidase and increased expression levels of the endoplasmic reticulum stress proteins (glucose-regulated protein 78 and 94, and PKR-like ER kinase) (P < 0.05). HIIT restored all these alterations and increased the peroxisome proliferator-activated receptor γ coactivator-1α (PGC-1α) and the mitochondrial electron transport chain complexes (I, III, and IV) in the muscles of EAM mice (P < 0.05). CONCLUSIONS: HIIT improves fatigue resistance in a SAM mouse model, and this can be explained by the restoration of mitochondria oxidative capacity via inhibition of the ER stress pathway and PGC-1α-mediated mitochondrial biogenesis.

    DOI: 10.1186/s13075-022-02846-2

    Open Access

    PubMed

  8. ストレッチは脱神経後早期における骨格筋の興奮性低下を軽減する Reviewed

    芦田 雪, 渡邊 大輝, 宮田 浩文, 檜森 弘一, 玉井 勝是, 木村 伊織, 阿部 真佐美, 今井 富裕, 山田 崇史

    基礎理学療法学   Vol. 24 ( 1 ) page: 1 - 10   2021.10

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    Language:Japanese   Publishing type:Research paper (scientific journal)   Publisher:(一社)日本基礎理学療法学会  

  9. Preconditioning contractions prevent prolonged force depression and Ca2+-dependent proteolysis of STAC3 after damaging eccentric contractions. Reviewed International journal

    Yuki Ashida, Koichi Himori, Katsuyuki Tamai, Iori Kimura, Takashi Yamada

    Journal of applied physiology (Bethesda, Md. : 1985)   Vol. 131 ( 5 ) page: 1399 - 1407   2021.9

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    Preconditioning contractions (PCs) have been shown to markedly improve recovery from eccentric contractions (ECCs)-induced force depression. We here examined the mechanism behind the effects of PCs with focusing on the SH3 and cysteine rich domain 3 (STAC3) that is essential for coupling membrane depolarization to Ca2+ release from the sarcoplasmic reticulum. Rat medial gastrocnemius (MG) muscles were excised immediately (REC0), 1 day (REC1), and 4 days (REC4) after exposure to 100 repeated damaging ECCs in vivo. PCs with 10 repeated non-damaging ECCs were applied 2 days before the damaging ECCs. Damaging ECCs induced in vivo isometric torque depression at 50 and 100 Hz stimulation frequencies, which was accompanied by a significant decrease in the amount of full-length STAC3, an activation of calpain 1, and an increased number of Evans Blue dye positive fibers in MG muscles at REC1 and REC4. Interestingly, PCs attenuated all these deleterious alterations induced by damaging ECCs. Moreover, mechanistic experiments performed on normal muscle samples exposed to various concentration of Ca2+ showed a Ca2+-dependent proteolysis of STAC3, which was prevented by calpain inhibitor MDL-28170. In conclusion, PCs may improve recovery from force depression after damaging ECCs, in part by inhibiting the loss of STAC3 due to the increased permeability of cell membrane and subsequent activation of calpain 1.

    DOI: 10.1152/japplphysiol.00463.2021

    PubMed

  10. Eccentric Resistance Training Ameliorates Muscle Weakness in a Mouse Model of Idiopathic Inflammatory Myopathies. Reviewed International journal

    Koichi Himori, Yuki Ashida, Daisuke Tatebayashi, Masami Abe, Yuki Saito, Takako Chikenji, Håkan Westerblad, Daniel C Andersson, Takashi Yamada

    Arthritis & rheumatology (Hoboken, N.J.)   Vol. 73 ( 5 ) page: 848 - 857   2021.5

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    OBJECTIVE: High-force eccentric contractions (ECCs) have traditionally been excluded from rehabilitation programs that include patients with idiopathic inflammatory myopathies (IIMs) due to unverified fear of causing muscle damage and inflammation. In an IIM animal model that used mice with experimental autoimmune myositis (EAM), we undertook this study to investigate whether ECC training can safely and effectively be used to counteract muscle weakness in IIM. METHODS: EAM was induced in BALB/c mice by immunization with 3 injections of myosin emulsified in Freund's complete adjuvant. Controls (n = 12) and mice with EAM (n = 12) were exposed to either an acute bout of 100 ECCs or 4 weeks of ECC training (20 ECCs every other day). To induce ECCs, plantar flexor muscles were electrically stimulated while the ankle was forcibly dorsiflexed. RESULTS: Less cell damage, as assessed by Evans blue dye uptake, was observed in the muscles of mice with EAM, compared to controls, after an acute bout of 100 ECCs (P < 0.05). Maximum Ca2+ -activated force was decreased in skinned gastrocnemius muscle fibers from mice with EAM, and this was accompanied by increased expression of endoplasmic reticulum (ER) stress proteins, including Gsp78 and Gsp94 (P < 0.05). ECC training prevented the decrease in force and the increase in ER stress proteins and also enhanced the expression and myofibrillar binding of small heat-shock proteins (HSPs) (P < 0.05), which can stabilize myofibrillar structure and function. CONCLUSION: ECC training protected against the reduction in myofibrillar force-generating capacity in an IIM mouse model, and this occurred via inhibition of ER stress responses and small HSP-mediated myofibrillar stabilization.

    DOI: 10.1002/art.41594

    PubMed

  11. Myofiber androgen receptor increases muscle strength mediated by a skeletal muscle splicing variant of Mylk4. Reviewed International journal Open Access

    Iori Sakakibara, Yuta Yanagihara, Koichi Himori, Takashi Yamada, Hiroshi Sakai, Yuichiro Sawada, Hirotaka Takahashi, Noritaka Saeki, Hiroyuki Hirakawa, Atsushi Yokoyama, So-Ichiro Fukada, Tatsuya Sawasaki, Yuuki Imai

    iScience   Vol. 24 ( 4 ) page: 102303 - 102303   2021.4

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    Androgens have a robust effect on skeletal muscles to increase muscle mass and strength. The molecular mechanism of androgen/androgen receptor (AR) action on muscle strength is still not well known, especially for the regulation of sarcomeric genes. In this study, we generated androgen-induced hypertrophic model mice, myofiber-specific androgen receptor knockout (cARKO) mice supplemented with dihydrotestosterone (DHT). DHT treatment increased grip strength in control mice but not in cARKO mice. Transcriptome analysis by RNA-seq, using skeletal muscles obtained from control and cARKO mice treated with or without DHT, identified a fast-type muscle-specific novel splicing variant of Myosin light-chain kinase 4 (Mylk4) as a target of AR in skeletal muscles. Mylk4 knockout mice exhibited decreased maximum isometric torque of plantar flexion and passive stiffness of myofibers due to reduced phosphorylation of Myomesin 1 protein. This study suggests that androgen-induced skeletal muscle strength is mediated with Mylk4 and Myomesin 1 axis.

    DOI: 10.1016/j.isci.2021.102303

    Open Access

    PubMed

  12. Cancer Cachexia Induces Preferential Skeletal Muscle Myosin Loss When Combined With Denervation. Reviewed International journal Open Access

    Takashi Yamada, Yuki Ashida, Daisuke Tatebayashi, Masami Abe, Koichi Himori

    Frontiers in physiology   Vol. 11   page: 445 - 445   2020

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    Patients with cancer cachexia (CCX) suffer from muscle wasting, which is often but not always accompanied by selective loss of myosin. Here we examined the effects of CCX on muscle mass and myosin heavy chain (MyHC) expression in denervated (DEN) muscles, especially focusing on the protein synthesis and degradation pathways. Male CD2F1 mice were randomly divided into control (CNT) and CCX groups and their left sciatic nerve was transected. CCX was induced by an intraperitoneal injection of colon 26 cells. After 14 days, the serum concentration of IL-6 and corticosteroid was higher in CCX mice than in CNT mice. The combination of CCX with DEN (CCX + DEN) resulted in a marked reduction of the gastrocnemius muscle weight (-69%) that was significantly lower than DEN (-53%) or CCX (-36%) alone. CCX had no effect on MyHC content, but it elicited a preferential MyHC loss when combined with DEN. The expression levels of autophagy markers cathepsin D and LC3BII/I ratio were markedly higher in the CCX + DEN group than in the CNT + DEN and the CCX groups. Paradoxically, there was an increase in protein synthesis rate and phosphorylation levels of p70S6K and rpS6, markers of mTORC1 signaling, in the CNT + DEN group, and these molecular alterations were inhibited in the CCX + DEN group. Our data indicate that CCX aggravates muscle atrophy in DEN muscles by inducing seletive loss of myosin, which involves inactivity dependent mechanisms that is likely to be a consequence of increased autophagy-mediated protein breakdown coupled with impaired protein synthesis.

    DOI: 10.3389/fphys.2020.00445

    Open Access

    PubMed

  13. 神経筋電気刺激療法とグルタミン投与の併用がcolon 26がんモデルマウスにおける筋萎縮に及ぼす影響

    舘林 大介, 檜森 弘一, 芦田 雪, 山田 崇史

    日本基礎理学療法学雑誌   Vol. 22 ( 1 ) page: 39 - 47   2019.12

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    Language:Japanese   Publishing type:Research paper (scientific journal)   Publisher:日本基礎理学療法学雑誌編集委員会  

    神経筋電気刺激(ES)トレーニングおよびグルタミン(GLN)投与の単独ならびに併用効果がマウス直腸がん由来細胞株(colon26:C-26)播種マウスの筋量およびグルタミン合成酵素(GS)発現量に及ぼす影響について検討した。5週齢のCD2F1雄性マウスを対象とし、ランダムに対照(control:CNT)マウスとC-26マウスに分け、さらにGLN非投与群(CNT群およびC-26群)とGLN投与群(CNT+GLN群およびC-26+GLN群)に分けた。また、右後肢を非トレーニング側、左後肢をトレーニング側(CNT+ES群、C-26+ES群、CNT+GLN+ES群、C-26+GLN+ES群)とした。多重比較検定の結果、C-26群の腓腹筋の筋湿重量はCNT群と比較して17%低値を示した。C-26播種、GLN投与およびES負荷を3要因とする三元配置分散分析の結果、GS発現量に関してC-26播種とES負荷に主効果が認められ、C-26播種とGLN投与の因子間で一次の交互作用が認められた。CNT+ES群のGS発現量はCNT群に比べ約半減し、C-26群、C-26+ES群、C-26+GLN群のGS発現量はCNT群と比較して高値を示していた。

  14. A Mechanism for Statin-Induced Susceptibility to Myopathy. Reviewed International journal Open Access

    Sabine Lotteau, Niklas Ivarsson, Zhaokang Yang, Damien Restagno, John Colyer, Philip Hopkins, Andrew Weightman, Koichi Himori, Takashi Yamada, Joseph Bruton, Derek Steele, Håkan Westerblad, Sarah Calaghan

    JACC. Basic to translational science   Vol. 4 ( 4 ) page: 509 - 523   2019.8

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    This study aimed to identify a mechanism for statin-induced myopathy that explains its prevalence and selectivity for skeletal muscle, and to understand its interaction with moderate exercise. Statin-associated adverse muscle symptoms reduce adherence to statin therapy; this limits the effectiveness of statins in reducing cardiovascular risk. The issue is further compounded by perceived interactions between statin treatment and exercise. This study examined muscles from individuals taking statins and rats treated with statins for 4 weeks. In skeletal muscle, statin treatment caused dissociation of the stabilizing protein FK506 binding protein (FKBP12) from the sarcoplasmic reticulum (SR) calcium (Ca2+) release channel, the ryanodine receptor 1, which was associated with pro-apoptotic signaling and reactive nitrogen species/reactive oxygen species (RNS/ROS)-dependent spontaneous SR Ca2+ release events (Ca2+ sparks). Statin treatment had no effect on Ca2+ spark frequency in cardiac myocytes. Despite potentially deleterious effects of statins on skeletal muscle, there was no impact on force production or SR Ca2+ release in electrically stimulated muscle fibers. Statin-treated rats with access to a running wheel ran further than control rats; this exercise normalized FKBP12 binding to ryanodine receptor 1, preventing the increase in Ca2+ sparks and pro-apoptotic signaling. Statin-mediated RNS/ROS-dependent destabilization of SR Ca2+ handling has the potential to initiate skeletal (but not cardiac) myopathy in susceptible individuals. Importantly, although exercise increases RNS/ROS, it did not trigger deleterious statin effects on skeletal muscle. Indeed, our results indicate that moderate exercise might benefit individuals who take statins.

    DOI: 10.1016/j.jacbts.2019.03.012

    Open Access

    PubMed

  15. Eccentric training enhances the αB-crystallin binding to the myofibrils and prevents skeletal muscle weakness in adjuvant-induced arthritis rat. Reviewed International journal Open Access

    Koichi Himori, Daisuke Tatebayashi, Yuki Ashida, Takashi Yamada

    Journal of applied physiology (Bethesda, Md. : 1985)   Vol. 127 ( 1 ) page: 71 - 80   2019.7

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    Patients with rheumatoid arthritis (RA) frequently suffer from muscle weakness. We examined whether eccentric training prevents skeletal muscle weakness in adjuvant-induced arthritis (AIA) rat, a widely used animal model for RA. AIA was induced in the knees of Wistar rats by injection of complete Freund's adjuvant. To induce eccentric contractions (ECCs), neuromuscular electrical stimulation (45 V) was applied to the plantar flexor muscles simultaneously with forced dorsiflexion of the ankle joint (0-40°) and was given every 6 s. ECC exercise was applied every other day for a total of 11 sessions and consisted of 4 sets of 5 contractions. There was a significant reduction in in vitro maximum Ca2+-activated force in skinned fibers in gastrocnemius muscle from AIA rats. These changes were associated with reduced expression levels of contractile proteins (i.e., myosin and actin), increased levels of inflammation redox stress-related biomarkers (i.e., TNF-α, malondialdehyde-protein adducts, NADPH oxidase 2, and neuronal nitric oxide synthase), and autolyzed active calpain-1 in AIA muscles. ECC training markedly enhanced the steady-state levels of αB-crystallin, a small heat shock protein, and its binding to the myofibrils and prevented the AIA-induced myofibrillar dysfunction, reduction in contractile proteins, and inflammation-oxidative stress insults. Our findings demonstrate that ECC training preserves myofibrillar function without muscle damage in AIA rats, which is at least partially attributable to the protective effect of αB-crystallin on the myofibrils against oxidative stress-mediated protein degeneration. Thus ECC training can be a safe and effective intervention, counteracting the loss of muscle strength in RA patients. NEW & NOTEWORTHY Eccentric contractions (ECCs) are regarded as an effective way to increase muscle strength. No studies, however, assess safety and effectiveness of ECC training on muscle weakness associated with rheumatoid arthritis. Here, we used adjuvant-induced arthritis (AIA) rats to demonstrate that ECC training prevents intrinsic contractile dysfunction without muscle damage in AIA rats, which may be attributed to the protective effect of αB-crystallin on the myofibrils against inflammation-oxidative stress insults.

    DOI: 10.1152/japplphysiol.00102.2019

    PubMed

  16. Myofibrillar function differs markedly between denervated and dexamethasone-treated rat skeletal muscles: Role of mechanical load. Reviewed International journal Open Access

    Takashi Yamada, Yuki Ashida, Daisuke Tatebayashi, Koichi Himori

    PloS one   Vol. 14 ( 10 ) page: e0223551   2019

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    Although there is good evidence to indicate a major role of intrinsic impairment of the contractile apparatus in muscle weakness seen in several pathophysiological conditions, the factors responsible for control of myofibrillar function are not fully understood. To investigate the role of mechanical load in myofibrillar function, we compared the skinned fiber force between denervated (DEN) and dexamethasone-treated (DEX) rat skeletal muscles with or without neuromuscular electrical stimulation (ES) training. DEN and DEX were induced by cutting the sciatic nerve and daily injection of dexamethasone (5 mg/kg/day) for 7 days, respectively. For ES training, plantarflexor muscles were electrically stimulated to produce four sets of five isometric contractions each day. In situ maximum torque was markedly depressed in the DEN muscles compared to the DEX muscles (-74% vs. -10%), whereas there was not much difference in the degree of atrophy in gastrocnemius muscles between DEN and DEX groups (-24% vs. -17%). Similar results were obtained in the skinned fiber preparation, with a greater reduction in maximum Ca2+-activated force in the DEN than in the DEX group (-53% vs. -16%). Moreover, there was a parallel decline in myosin heavy chain (MyHC) and actin content per muscle volume in DEN muscles, but not in DEX muscles, which was associated with upregulation of NADPH oxidase (NOX) 2, neuronal nitric oxide synthase (nNOS), and endothelial NOS expression, translocation of nNOS from the membrane to the cytosol, and augmentation of mRNA levels of muscle RING finger protein 1 (MuRF-1) and atrogin-1. Importantly, mechanical load evoked by ES protects against DEN- and DEX-induced myofibrillar dysfunction and these molecular alterations. Our findings provide novel insights regarding the difference in intrinsic contractile properties between DEN and DEX and suggest an important role of mechanical load in preserving myofibrillar function in skeletal muscle.

    DOI: 10.1371/journal.pone.0223551

    Open Access

    PubMed

  17. Preconditioning contractions prevent the delayed onset of myofibrillar dysfunction after damaging eccentric contractions. Reviewed International journal Open Access

    Ryotaro Yamada, Koichi Himori, Daisuke Tatebayashi, Yuki Ashida, Kazumi Ikezaki, Hirohumi Miyata, Keita Kanzaki, Masanobu Wada, Håkan Westerblad, Takashi Yamada

    The Journal of physiology   Vol. 596 ( 18 ) page: 4427 - 4442   2018.9

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    KEY POINTS: We examined the mechanisms underlying the positive effect of preconditioning contractions (PCs) on the recovery of muscle force after damaging eccentric contractions (ECCs). The mechanisms underlying the immediate force decrease after damaging ECCs differ from those causing depressed force with a few days' delay, where reactive oxygen species (ROS) produced by invading immune cells play an important causative role. PCs counteracted the delayed onset force depression and this could be explained by prevention of immune cell invasion, which resulted in decreased myeloperoxidase-mediated ROS production, hence avoiding cell membrane disruption, calpain activation and degenerative changes in myosin and actin molecules. ABSTRACT: Preconditioning contractions (PCs) have been shown to result in markedly improved contractile function during the recovery periods after muscle damage from eccentric contractions (ECCs). Here, we examined the mechanisms underlying the beneficial effect of PCs with a special focus on the myofibrillar function. Rat medial gastrocnemius muscles were exposed to 100 repeated damaging ECCs in situ and excised immediately (recovery 0, REC0) or after 4 days (REC4). PCs with 10 repeated non-damaging ECCs were applied 2 days before the damaging ECCs. PCs improved in situ maximal isometric torque at REC4. Skinned muscle fibres were used to directly assess changes in myofibrillar function. PCs prevented the damaging ECC-induced depression in maximum Ca2+ -activated force at REC4. PCs also prevented the following damaging ECC-induced effects at REC4: (i) the reduction in myosin heavy chain and actin content; (ii) calpain activation; (iii) changes in redox homeostasis manifested as increased expression levels of malondialdehyde-protein adducts, NADPH oxidase 2, superoxide dismutase 2 and catalase, and activation of myeloperoxidase (MPO); (iv) infiltration of immune cells and loss of cell membrane integrity. Additionally, at REC0, PCs enhanced the expression levels of heat shock protein (HSP) 70, HSP25, and αB-crystallin in the myofibrils and prevented the increased mRNA levels of granulocyte-macrophage colony-stimulating factor and interleukin-6. In conclusion, PCs prevent the delayed force depression after damaging ECCs by an HSP-dependent inhibition of degenerative changes in myosin and actin molecules caused by myeloperoxidase-induced membrane lysis and subsequent calpain activation, which were triggered by an inflammatory reaction with immune cells invading damaged muscles.

    DOI: 10.1113/JP276026

    PubMed

  18. Effects of contraction mode and stimulation frequency on electrical stimulation-induced skeletal muscle hypertrophy. Reviewed International journal

    Yuki Ashida, Koichi Himori, Daisuke Tatebayashi, Ryotaro Yamada, Riki Ogasawara, Takashi Yamada

    Journal of applied physiology (Bethesda, Md. : 1985)   Vol. 124 ( 2 ) page: 341 - 348   2018.2

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    We compared the skeletal muscle hypertrophy resulting from isometric (Iso) or eccentric (Ecc) electrical stimulation (ES) training with different stimulation frequencies. Male Wistar rats were assigned to the Iso and Ecc groups. These were divided into three further subgroups that were stimulated at 10 Hz (Iso-10 and Ecc-10), 30 Hz (Iso-30 and Ecc-30), or 100 Hz (Iso-100 and Ecc-100). In experiment 1, the left plantarflexor muscles were stimulated every other day for 3 wk. In experiment 2, mammalian target of rapamycin complex 1 (mTORC1) signaling was investigated 6 h after one bout of ES. The contralateral right muscle served as a control (non-ES). Ecc contractions comprised forced dorsiflexion combined with ES. The peak torque and torque-time integral during ES were higher in the Ecc group than that in the Iso group in all stimulation frequencies examined. The gastrocnemius muscle weight normalized to body weight in ES side was increased compared with the non-ES side by 6, 7, and 17% in the Ecc-30, Iso-100, and Ecc-100 groups, respectively, with a greater gain in Ecc-100 than the Ecc-30 and Iso-100 groups. The p70S6K (Thr389) phosphorylation level was higher in the Ecc-30 and -100 than in the Iso-30 and -100 groups, respectively. The peak torque and torque-time integral were highly correlated with the magnitude of increase in muscle mass and the phosphorylation of p70S6K. These data suggest that ES-induced muscle hypertrophy and mTORC1 activity are determined by loading intensity and volume during muscle contraction independent of the contraction mode. NEW & NOTEWORTHY Eccentric contraction and high-frequency stimulation (HFS) are regarded as an effective way to increase muscle mass by electrical stimulation (ES) training. However, little is known about whether muscle hypertrophy is affected by contraction mode and stimulation frequency in ES training. Here, we provide the evidence that muscle hypertrophy and mammalian target of rapamycin complex 1 activity are determined by mechanical loading during contraction but not on the contraction mode itself, with a greater gain at HFS.

    DOI: 10.1152/japplphysiol.00708.2017

    PubMed

  19. High-intensity eccentric training ameliorates muscle wasting in colon 26 tumor-bearing mice. Reviewed International journal Open Access

    Daisuke Tatebayashi, Koichi Himori, Ryotaro Yamada, Yuki Ashida, Mitsunori Miyazaki, Takashi Yamada

    PloS one   Vol. 13 ( 6 ) page: e0199050   2018

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    Eccentric (ECC) contractions are used to maintain skeletal muscle mass and strength in healthy subjects and patients. Here we investigated the effects of ECC training induced by electrical stimulation (ES) on muscle wasting in colon 26 (C-26) tumor-bearing mice. Mice were divided into four groups: control (CNT), CNT + ECC, C-26, and C-26 + ECC. Cancer cachexia was induced by a subcutaneous injection of C-26 cells and developed for four weeks. In experiment 1, muscle protein synthesis rate and mammalian target of rapamycin complex (mTORC) 1 signaling were investigated six hours after one bout of ECC-ES (2 s contraction given every 6 s, 20°/s, 4 sets of 5 contractions). In experiment 2, ECC-ES training, a total of 14 sessions, was performed every other day starting one day after C-26 injection. Compared to the CNT mice, the gastrocnemius muscle weight was significantly decreased in the tumor-bearing mice. This change was accompanied by a reduction in protein synthesis rate and a marked increase in the expression levels of genes including regulated in development and DNA damage responses (REDD) 1, forkhead box protein O1 (FoxO1), muscle-specific E3 ubiquitin ligases atrogin-1, and muscle ring finger 1 (MuRF-1) mRNA. ECC-ES increased the protein synthesis rate and the phosphorylation levels of p70S6K (Thr389) and rpS6 (Ser240/244), markers for mTORC1 signaling, and reversed an upregulation of MuRF-1 mRNA in muscles from C-26 mice. Our findings suggest that ECC-ES training reduces skeletal muscle atrophy in C-26 tumor-bearing mice through activation of mTORC1 signaling and the inhibition of ubiquitin-proteasome pathway. Thus, ECC-ES training might be used to effectively ameliorate muscle wasting in patients with cancer cachexia.

    DOI: 10.1371/journal.pone.0199050

    Open Access

    PubMed

  20. Electrical Stimulation Prevents Preferential Skeletal Muscle Myosin Loss in Steroid-Denervation Rats. Reviewed International journal Open Access

    Takashi Yamada, Koichi Himori, Daisuke Tatebayashi, Ryotaro Yamada, Yuki Ashida, Tomihiro Imai, Masayuki Akatsuka, Yoshiki Masuda, Keita Kanzaki, Daiki Watanabe, Masanobu Wada, Håkan Westerblad, Johanna T Lanner

    Frontiers in physiology   Vol. 9   page: 1111 - 1111   2018

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    Severe muscle weakness concomitant with preferential depletion of myosin has been observed in several pathological conditions. Here, we used the steroid-denervation (S-D) rat model, which shows dramatic decrease in myosin content and force production, to test whether electrical stimulation (ES) treatment can prevent these deleterious changes. S-D was induced by cutting the sciatic nerve and subsequent daily injection of dexamethasone for 7 days. For ES treatment, plantarflexor muscles were electrically stimulated to produce four sets of five isometric contractions each day. Plantarflexor in situ isometric torque, muscle weight, skinned muscle fiber force, and protein and mRNA expression were measured after the intervention period. ES treatment partly prevented the S-D-induced decreases in plantarflexor in situ isometric torque and muscle weight. ES treatment fully prevented S-D-induced decreases in skinned fiber force and ratio of myosin heavy chain (MyHC) to actin, as well as increases in the reactive oxygen/nitrogen species-generating enzymes NADPH oxidase (NOX) 2 and 4, phosphorylation of p38 MAPK, mRNA expression of the muscle-specific ubiquitin ligases muscle ring finger-1 (MuRF-1) and atrogin-1, and autolyzed active calpain-1. Thus, ES treatment is an effective way to prevent muscle impairments associated with loss of myosin.

    DOI: 10.3389/fphys.2018.01111

    Open Access

    PubMed

  21. 神経筋電気刺激誘引性の筋肥大における負荷強度と力積の役割

    檜森 弘一, 舘林 大介, 大山 友加, 青木 達彦, 山田 崇史

    日本基礎理学療法学雑誌   Vol. 20 ( 2 ) page: 37 - 43   2017.11

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    ラットを用い、負荷強度が同一で力積(負荷強度と負荷時間の積)が異なる3群、および力積が同一で負荷強度が異なる3群を作製し、神経筋電気刺激(ES)トレーニングによる筋肥大率を群間比較した。その結果、ESトレーニングにおいて筋肥大率の限界値を規定する因子は力積ではなく負荷強度であると考えられた。

  22. Superoxide dismutase/catalase mimetic EUK-134 prevents diaphragm muscle weakness in monocrotalin-induced pulmonary hypertension. Reviewed International journal Open Access

    Koichi Himori, Masami Abe, Daisuke Tatebayashi, Jaesik Lee, Håkan Westerblad, Johanna T Lanner, Takashi Yamada

    PloS one   Vol. 12 ( 2 ) page: e0169146   2017

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    Patients with pulmonary hypertension (PH) suffer from inspiratory insufficiency, which has been associated with intrinsic contractile dysfunction in diaphragm muscle. Here, we examined the role of redox stress in PH-induced diaphragm weakness by using the novel antioxidant, EUK-134. Male Wistar rats were randomly divided into control (CNT), CNT + EUK-134 (CNT + EUK), monocrotaline-induced PH (PH), and PH + EUK groups. PH was induced by a single intraperitoneal injection of monocrotaline (60 mg/kg body weight). EUK-134 (3 mg/kg body weight/day), a cell permeable mimetic of superoxide dismutase (SOD) and catalase, was daily intraperitoneally administered starting one day after induction of PH. After four weeks, diaphragm muscles were excised for mechanical and biochemical analyses. There was a decrease in specific tetanic force in diaphragm bundles from the PH group, which was accompanied by increases in: protein expression of NADPH oxidase 2/gp91phox, SOD2, and catalase; 3-nitrotyrosine content and aggregation of actin; glutathione oxidation. Treatment with EUK-134 prevented the force decrease and the actin modifications in PH diaphragm bundles. These data show that redox stress plays a pivotal role in PH-induced diaphragm weakness. Thus, antioxidant treatment can be a promising strategy for PH patients with inspiratory failure.

    DOI: 10.1371/journal.pone.0169146

    Open Access

    PubMed

  23. Neuromuscular electrical stimulation prevents skeletal muscle dysfunction in adjuvant-induced arthritis rat. Reviewed International journal Open Access

    Koichi Himori, Daisuke Tatebayashi, Keita Kanzaki, Masanobu Wada, Håkan Westerblad, Johanna T Lanner, Takashi Yamada

    PloS one   Vol. 12 ( 6 ) page: e0179925   2017

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    Skeletal muscle weakness is a prominent feature in patients with rheumatoid arthritis (RA). In this study, we investigated whether neuromuscular electrical stimulation (NMES) training protects against skeletal muscle dysfunction in rats with adjuvant-induced arthritis (AIA). AIA was produced by intraarticular injection of complete Freund's adjuvant into the knees of Wistar rats. For NMES training, dorsiflexor muscles were stimulated via a surface electrode (0.5 ms pulse, 50 Hz, 2 s on/4 s off). NMES training was performed every other day for three weeks and consisted of three sets produced at three min intervals. In each set, the electrical current was set to achieve 60% of the initial maximum isometric torque and the current was progressively increased to maintain this torque; stimulation was stopped when the 60% torque could no longer be maintained. After the intervention period, extensor digitorum longus (EDL) muscles were excised and used for physiological and biochemical analyses. There was a reduction in specific force production (i.e. force per cross-sectional area) in AIA EDL muscles, which was accompanied by aggregation of the myofibrillar proteins actin and desmin. Moreover, the protein expressions of the pro-oxidative enzymes NADPH oxidase, neuronal nitric oxide synthase, p62, and the ratio of the autophagosome marker LC3bII/LC3bI were increased in AIA EDL muscles. NMES training prevented all these AIA-induced alterations. The present data suggest that NMES training prevents AIA-induced skeletal muscle weakness presumably by counteracting the formation of actin and desmin aggregates. Thus, NMES training can be an effective treatment for muscle dysfunction in patients with RA.

    DOI: 10.1371/journal.pone.0179925

    Open Access

    PubMed

  24. 神経-筋電気刺激療法が癌性カヘキシアに伴う筋量低下に及ぼす影響

    舘林 大介, 檜森 弘一, 阿部 真佐美, 李 宰植, 山田 崇史

    物理療法科学   Vol. 23   page: 35 - 43   2016.10

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  25. 熱刺激負荷がアジュバント関節炎ラットの長趾伸筋における収縮機能に及ぼす影響

    李 宰植, 阿部 真佐美, 舘林 大介, 檜森 弘一, 山田 崇史

    日本基礎理学療法学雑誌   Vol. 19 ( 2 ) page: 39 - 47   2016.8

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    9週齢のLewis系雄性ラットを用い、対照(C)群及び関節炎(A)群に分けた。さらに、これらの群に熱刺激(H)を負荷するC+H群及びA+H群を設けた。アジュバント誘発性関節炎(AIA)群には、フロイント完全アジュバントを膝関節腔に投与し、関節炎を惹起させた。A群及びA+H群の膝関節幅はC群と比較して、それぞれ25%、23%増加した。A群及びA+H群の間で、膝関節幅に差異が認められなかったことから、温熱刺激は関節炎を増悪しない可能性が示唆された。C群及びC+H群に比べ、A群及びA+H群の固有張力は高頻度刺激域において低値を示した。TNF-α発現量は、C群に対してA群、A+H群で、それぞれ3.1倍、3.3倍に増加した。A群及びA+H群では130kDa付近に強いシグナルを認め、これらの発現量はC群に対して、それぞれ1.6倍、1.9倍高値を示した。HSP72発現量はC群に対してC+H群、A+H群で、それぞれおよそ4.6、4.7倍に増加した。

  26. 熱刺激がモノクロタリン誘発性肺高血圧症ラットの横隔膜における収縮機能に及ぼす影響

    阿部 真佐美, 李 宰植, 舘林 大介, 檜森 弘一, 山田 崇史

    日本基礎理学療法学雑誌   Vol. 19 ( 2 ) page: 55 - 64   2016.8

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    Language:Japanese   Publishing type:Research paper (scientific journal)   Publisher:日本基礎理学療法学雑誌編集委員会  

    熱刺激がモノクロタリン(MCT)誘発性肺高血圧症(PB)ラットの横隔膜における収縮機能に及ぼす影響について検討した。5週齢のWistar系雄性ラットを用い、対照(C)群、対照+熱刺激(C+H)群、MCT誘因性PH(M)群、MCT誘因性PH+熱刺激(M+H)群に分けた。C群と比較してM群では、70Hz以上の刺激頻度において、固有張力の低下を認めた。全筋原線維タンパク質におけるミオシン重鎖(MyHC)の割合を定量化し、各群間においてMyHCアイソフォームの割合に、差異は認めなかった。全筋タンパク質におけるHSP72の発現量は、C群に比べC+H群及びM+H群で、それぞれ2.9倍、2.5倍に増加し、HSP72の発現量は、C群と比較してC+H群、M群、M+H群で、それぞれ2.0倍、1.6、2.1倍に増加した。全筋タンパク質におけるSOD2の発現量は、C群に比べM+H群で2.2倍、カタラーゼの発現量はC群に比べM+H群で2.7倍に増加した。PGC-1αの発現量は、C群に比べC+H群及びM+H群で、それぞれ2.7倍、2.9倍に増加した。

  27. Response of heat shock protein 72 to repeated bouts of hyperthermia in rat skeletal muscle. Reviewed International journal

    J Lee, K Himori, D Tatebayashi, M Abe, T Yamada

    Physiological research   Vol. 64 ( 6 ) page: 935 - 8   2015

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    We investigated the effects of repeated hyperthermic bouts on the heat shock response of heat shock protein (HSP) 72 in skeletal muscle. Rats were assigned to control and hyperthermia groups which were exposed to heated water at 42 °C. The hyperthermia group was further divided into sub-groups: a single bout (H30) or four bouts of hyperthermia for 30 min (H30x4). There was an increase in HSP72 protein content of the H30 groups in both extensor digitorum longus (EDL) and soleus muscles. Moreover, HSP72 protein expression in H30x4 group was significantly higher than in H30 group in both EDL and soleus muscles. The HSP72 mRNA was markedly increased from control levels in the H30 and H30x4 group in both types of muscles. However, HSP72 mRNA of the H30x4 group was lower than that of the H30 group in soleus muscles. Heat shock response of HSP72 is activated even after repeated bouts of hyperthermia, with a differential regulation between muscle types.

    PubMed

  28. Muscle dysfunction associated with adjuvant-induced arthritis is prevented by antioxidant treatment. Reviewed International journal Open Access

    Takashi Yamada, Masami Abe, Jaesik Lee, Daisuke Tatebayashi, Koichi Himori, Keita Kanzaki, Masanobu Wada, Joseph D Bruton, Håkan Westerblad, Johanna T Lanner

    Skeletal muscle   Vol. 5   page: 20 - 20   2015

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    BACKGROUND: In addition to the primary symptoms arising from inflamed joints, muscle weakness is prominent and frequent in patients with rheumatoid arthritis (RA). Here, we investigated the mechanisms of arthritis-induced muscle dysfunction in rats with adjuvant-induced arthritis (AIA). METHODS: AIA was induced in the knees of rats by injection of complete Freund's adjuvant and was allowed to develop for 21 days. Muscle contractile function was assessed in isolated extensor digitorum longus (EDL) muscles. To assess mechanisms underlying contractile dysfunction, we measured redox modifications, redox enzymes and inflammatory mediators, and activity of actomyosin ATPase and sarcoplasmic reticulum (SR) Ca(2+)-ATPase. RESULTS: EDL muscles from AIA rats showed decreased tetanic force per cross-sectional area and slowed twitch contraction and relaxation. These contractile dysfunctions in AIA muscles were accompanied by marked decreases in actomyosin ATPase and SR Ca(2+)-ATPase activities. Actin aggregates were observed in AIA muscles, and these contained high levels of 3-nitrotyrosine and malondialdehyde-protein adducts. AIA muscles showed increased protein expression of NADPH oxidase 2/gp91(phox), neuronal nitric oxide synthase, tumor necrosis factor α (TNF-α), and high-mobility group box 1 (HMGB1). Treatment of AIA rats with EUK-134 (3 mg/kg/day), a superoxide dismutase/catalase mimetic, prevented both the decrease in tetanic force and the formation of actin aggregates in EDL muscles without having any beneficial effect on the arthritis development. CONCLUSIONS: Antioxidant treatment prevented the development of oxidant-induced actin aggregates and contractile dysfunction in the skeletal muscle of AIA rats. This implies that antioxidant treatment can be used to effectively counteract muscle weakness in inflammatory conditions.

    DOI: 10.1186/s13395-015-0045-7

    Open Access

    PubMed

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MISC 2

  1. がん悪液質は脱神経に伴う筋萎縮を促進する

    芦田 雪, 舘林 大介, 阿部 真佐美, 檜森 弘一, 山田 崇史

    理学療法学   Vol. 48 ( Suppl.1 ) page: [1G21 - 01]   2021.12

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    Language:Japanese   Publishing type:Research paper, summary (national, other academic conference)   Publisher:(一社)日本理学療法学会連合  

  2. メカニカルストレスによる筋原線維機能の制御機構

    芦田 雪, 舘林 大介, 玉井 勝是, 阿部 真佐美, 檜森 弘一, 山田 崇史

    理学療法学   Vol. 47 ( Suppl.1 ) page: 160 - 160   2021.3

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Presentations 22

  1. Development of a comprehensive resource for cross-tissue and single-cell ageing analysis

    Bingyuan Zhang, Kazuki Hatta, Yusuke Matsui

    1st Aisa & Pacific Bioinformatics Joint Conference  2024.10 

  2. サルコペニアに関連する選択的スプライシング変化の包括的解析

    檜森弘一, 張秉元, 松井佑介

    第29回日本基礎理学療法学会学術大会  2024.9 

  3. サルコペニアにおけるスプライシング変化の役割

    檜森弘一, 張秉元, 松井佑介

    第78回日本体力医学会大会  2024.8 

  4. 臓器横断トランスクリプトーム解析による骨格筋老化機序の解明

    檜森弘一, 張秉元, 兒玉隼汰, 松井佑介

    第10回骨格筋生物学研究会  2024.3 

  5. 持続的なストレッチは脱神経筋におけるクロナキシー増大を抑制する

    芦田 雪, 渡邉 大輝, 宮田 浩文, 檜森 弘一, 玉井 勝是, 木村 伊織, 阿部 真佐美, 山田 崇史

    日本基礎理学療法学会学術大会プログラム・抄録集  2021.10  (一社)日本基礎理学療法学会

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    Event date: 2021.10

    Language:Japanese  

  6. 多発性筋炎による筋力低下に対するNrf2の役割

    檜森弘一, 山田麻未, 奥津光晴

    第76回日本体力医学会大会 

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    Event date: 2021.9

  7. 高強度伸張性収縮トレーニングは特発性炎症性筋疾患モデルマウスの筋機能を改善する

    檜森弘一, 芦田雪, 舘林大介, 山下敏彦, 山田崇史

    第58回日本リハビリテーション医学会学術集会 

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    Event date: 2021.6

  8. Nrf2 regulates skeletal muscle mass and function in a mouse model of experimental autoimmune myositis

    Himori K, Yamada M, Okutsu M

    Experimental Biology 2021 

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    Event date: 2021.4

  9. DMD-nullマウスにおける伸張性収縮誘引性筋損傷に対する感受性の亢進

    檜森弘一, 芦田雪, 阿部真佐美, 竹中菜々, 櫻井英俊, 山田崇史

    第75回日本体力医学会大会  2020.9.24 

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    Event date: 2020.9

    Language:Japanese   Presentation type:Poster presentation  

  10. 多発性筋炎に対する高強度伸張性収縮トレーニングの安全性と有効性の検討

    檜森弘一, 芦田雪, 舘林大介, 齋藤悠城, 千見寺貴子, 山田崇史

    第24回日本基礎理学療法学会 

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    Event date: 2019.11 - 2019.12

    Language:Japanese   Presentation type:Oral presentation (general)  

  11. 関節炎ラット骨格筋に対する伸張性収縮トレーニングの抗炎症-酸化作用

    檜森弘一, 舘林大介, 芦田雪, 山田崇史

    第74回体力医学学会大会  2019.9.19 

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    Event date: 2019.9

    Language:Japanese   Presentation type:Poster presentation  

  12. High-intensity eccentric training improves skeletal muscle dysfunction in a mouse model of polymyositis.

    Himori K, Ashida Y, Tatebayashi D, Saito Y, Chikenji T, Yamada T

    48th European Muscle Conference 

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    Event date: 2019.9

    Language:English   Presentation type:Poster presentation  

  13. DMD-nullマウスにおける伸張性収縮に対する感受性の特性

    檜森 弘一, 芦田 雪, 阿部 真佐美, 竹中 菜々, 櫻井 英俊, 山田 崇史

    第5回日本筋学会  2019.8 

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    Event date: 2019.8

    Language:Japanese   Presentation type:Poster presentation  

  14. 伸張性収縮トレーニングはαB-crystallinの筋原線維への結合を促進し関節炎に伴う筋機能低下を防止する

    檜森弘一, 舘林大介, 芦田雪, 山田崇史

    第23回日本基礎理学療法学会 

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    Event date: 2018.12

    Language:Japanese   Presentation type:Oral presentation (general)  

  15. Effects of eccentric exercise on myofibrillar function and amount of αB-crystallin binding to myofibrils in skeletal muscle from adjuvant-induced arthritis rats.

    Himori K, Tatebayashi D, Ashida Y, Yamada R, Yamada T

    Europhysiology  2018.9.14 

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    Event date: 2018.9

    Language:English   Presentation type:Poster presentation  

  16. Eccentric exercise prevents impaired contractility and autophagy flux in skeletal muscle from adjuvant-induced arthritis rat.

    Himori K, Tatebayashi D, Yamada R, Ashida Y, Yamada T

    46th European Muscle Conference 

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    Event date: 2017.9

    Language:English   Presentation type:Poster presentation  

  17. アジュバント関節炎ラットにおける筋機能低下は伸張性収縮トレーニングにより防止される

    檜森弘一, 舘林大介, 山田遼太郎, 芦田雪, 山田崇史

    第72回体力医学学会大会 

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    Event date: 2017.9

    Language:Japanese   Presentation type:Oral presentation (general)  

  18. 神経―筋電気刺激による筋の限界肥大率は負荷強度に規定される

    檜森弘一, 舘林大介, 大山友加, 青木達彦, 山田崇史

    第71回日本体力医学会大会 

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    Event date: 2016.9

    Language:Japanese   Presentation type:Poster presentation  

  19. Neuromuscular electrical stimulation prevents skeletal muscle dysfunction in adjuvant-induced arthritis rat

    Himori K, Tatebayashi D, Abe M, Lee J, Yamada T

    45th European Muscle Conference 

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    Event date: 2016.9

    Language:English   Presentation type:Poster presentation  

  20. Antioxidant treatment prevents pulmonary hypertension-induced diaphragm dysfunction

    Himori K, Abe M, Tatebayashi D, Lee J, Yamada T

    93rd Annual Meeting of the Physiological Society of Japan 

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    Event date: 2016.3

    Language:English   Presentation type:Poster presentation  

  21. アジュバンド関節炎ラットの長趾伸筋における収縮機能の低下は神経-筋電気刺激により防止されるか? 酸化還元動態に着目して

    檜森 弘一, 舘林 大介, 李 宰植, 阿部 真佐美, 山田 崇史

    日本物理療法学会学術大会  2015.9  (一社)日本物理療法学会

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    Event date: 2015.9

    Language:Japanese   Presentation type:Poster presentation  

  22. 神経-筋電気刺激がアジュバント関節炎ラットの長趾伸筋における収縮機能に及ぼす影響

    檜森 弘一, 舘林 大介, 李 宰植, 阿部 真佐美, 山田 崇史

    第70回日本体力医学会大会  2015.9  (一社)日本体力医学会

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    Event date: 2015.9

    Language:Japanese   Presentation type:Oral presentation (general)  

▼display all

KAKENHI (Grants-in-Aid for Scientific Research) 4

  1. 糖鎖の細胞連関調節に基づくサルコペニアの進行と運動による改善機序の解明

    Grant number:24K20465  2024.4 - 2026.3

    日本学術振興会  科学研究費助成事業  若手研究

    檜森 弘一

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4680000 ( Direct Cost: \3600000 、 Indirect Cost:\1080000 )

  2. 運動療法による多発性筋炎の軽減に対するオートファジー関連タンパクの役割

    Grant number:21K17515  2021.4 - 2023.3

    日本学術振興会  科学研究費助成事業 若手研究  若手研究

    檜森 弘一

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4680000 ( Direct Cost: \3600000 、 Indirect Cost:\1080000 )

    本研究全体の目的は、定期的な運動によるオートファジー基質の活性化は、骨格筋のNrf2の核内移行の促進と抗酸化物質の増加を誘導することで多発性筋炎による筋力低下を抑制すると仮説を立て、これを立証することである。令和3年度は、多発性筋炎による筋力低下に対するオートファジー基質の役割の立証を目的とした。筋特異的にオートファジー基質の発現量を増強したマウス(トランスジェニックマウス)、筋特異的にオートファジー基質の発現量を欠損したマウス(ノックアウトマウス)とこれらの野生型同腹子を多発性筋炎群と対照群に分けた。多発性筋炎は、抗原(ラット由来ミオシン)とフロイント完全アジュバントを等量混合したエマルジョンを1週間毎に3回投与することで惹起した。最終免疫から2週後に筋機能を測定し、筋機能測定のストレスが消失した測定3日後に遅筋であるヒラメ筋、速筋である白色広筋、速筋と遅筋が混在した足底筋、前脛骨筋と腓腹筋を採取して筋重量を測定し解析に使用した。その結果、野生型マウスでは、EAMにより筋量および筋力の低下が観察された。一方、ノックアウトマウスおよびトランスジェニックマウスでは、野生型マウスと同様にEAMによる筋量や筋力の低下が観察され、その変動に遺伝子型による差異は認められなかった。これらの結果から、EAMによる筋量や筋力の低下メカニズムにオートファジー基質は関与しないことが示唆された。

  3. 多発性筋炎における運動の抗炎症及び抗酸化機序の解明

    Grant number:20J01754  2020.4 - 2023.3

    日本学術振興会  科学研究費助成事業 特別研究員奨励費  特別研究員奨励費

    檜森 弘一

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4420000 ( Direct Cost: \3400000 、 Indirect Cost:\1020000 )

    本研究全体の目的は、多発性筋炎による筋力低下のメカニズムを解明し、安全かつ有効な治療法を確立することである。令和3年度は、伸張性収縮トレーニングが多発性筋炎による筋力低下を抑制するメカニズムを生化学的手法を用いて検討するとともに(実験1)、多発性筋炎よる筋力や筋量の低下メカニズムについて、抗酸化物質の発現を調節する転写因子であるNrf2に着目して検討した(実験2)。実験1では、昨年度実施した多発性筋炎モデル(EAM)マウスに伸張性収縮を負荷したトレーニング実験の腓腹筋サンプルを用いて生化学的解析を行った。実験2では、まずC57BL/6JマウスにEAMを惹起した。次に、筋特異的Nrf2欠損(Nrf2mKO)マウスとその野生型同腹子を使用し、各マウスにEAMを惹起した。実験期間終了後、最大筋力を測定し、骨格筋を採取した。実験1の結果、伸張性収縮トレーニングは、EAMによる小胞体ストレスタンパク質(Grp78やGrp94)の増加を軽減するとともに、筋原線維に結合した低分子量熱ショックタンパク質(αB-crystallinやHSP25)の発現量を増加させた。実験2の結果、C57BL/6Jマウスでは、EAMにより最大筋力と筋量の低下が観察されたことから、C57BL/6Jマウスにおいても、Balb/cマウスと同様にEAMが引き起こされることが確認できた。さらに、Nrf2mKOマウスでは、野生型マウスと比較して、EAMによる最大筋力と筋量の低下が軽減した。上記の結果から、4週間の伸張性収縮トレーニングは、EAMマウスの骨格筋における小胞体ストレスの増大を抑制するとともに、低分子量熱ショックタンパク質による筋原線維の安定化を促進することで、筋力低下を改善することが示唆された。また、EAMによる筋力や筋量の低下メカニズムにはNrf2が重要な役割を果たすことが示された。

  4. 関節疾患に伴う筋力低下に対する伸張性収縮を利用した新規電気刺激療法の開発

    Grant number:18J13103  2018.4 - 2020.3

    日本学術振興会  科学研究費助成事業 特別研究員奨励費  特別研究員奨励費

    檜森 弘一

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\1500000 ( Direct Cost: \1500000 )

    本研究の目的は,関節疾患の筋力低下に対する安全かつ効果的な治療法を確立することであり,平成30年度は,伸張性収縮と電気刺激を併用した(ECC-ES)トレーニングの至適負荷条件を探索する(課題1)とともに,ECC-ESトレーニングがアジュバント関節炎(AIA)ラットの骨格筋に及ぼす影響を検討した(課題2).
    課題1では,正常ラットを3群(低,中等度,高負荷群)に分け,20°/s,20収縮のECC-ESをそれぞれ刺激頻度10 Hz,30 Hz,100 Hzで実施した.3週間のトレーニング後,30 Hz以上の強度で筋肥大が誘引されることが明らかとなった.一方,ECC-ESの安全性を検討するため,ラットを対照(CNT)群及び関節炎を惹起したAIA群に分け,損傷性のECC-ES(150°/s,50 Hz,100収縮)を負荷した.その結果,損傷性ECC-ESを負荷した48時間後における損傷筋線維数の割合は,CNT群とAIA群で差異は認められなかった.したがって,AIAラットの骨格筋では,ECCに対する易損傷性が増大しないことが示された.さらに,上記で正常ラットに筋肥大が誘引された条件(20°/s,30 Hz,20収縮)で,ECC-ESをAIAラットに一過性に負荷し,筋損傷が誘引されないことを確認した.
    課題2では,課題1で得られた至適負荷条件でのECC-ES(20°/s,30 Hz,20収縮)を2日に1回の頻度で,3週間AIAラットに負荷し,筋機能低下が防止されるかを検討した.トレーニング期間終了後,スキンドファイバーにおける筋原線維機能を測定した.その結果,ECC-ESトレーニングは,AIAラットの腓腹筋のスキンドファイバーにおけるCa2+誘因性最大張力の低下を防止した.したがって,ECC-ESトレーニングは,関節疾患に伴う筋力の低下を防止しうる有望な治療法であることが示唆された.