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豊橋創造大学大学院健康科学研究科生体機能学のつぶやき

Master Degree Training in Skeletal Muscle Physiology/Plasticity of Skeletal Muscle

2015-06-17 08:30:08 | 研究
Position Announcement: Master Degree Training in Skeletal Muscle Physiology/Plasticity of Skeletal Muscle

Department of Physiology
Graduate School of Health Sciences
Toyohashi SOZO University


An opportunity exists to study for the Master Degree in Skeletal Muscle Physiology with an emphasis in Plasticity of Skeletal Muscle at Department of Physiology, Graduate School of Health Sciences, Toyohashi SOZO University. This position will be available at the start of the spring semester of 2016 (April 1, 2016).

The research is focused on the adaptation of skeletal muscle cells to physiological extracellular stimuli, such as loading and unloading. The role of loading on the regenerative potential of injured skeletal muscle and the molecular mechanism(s) of sarcopnenia are also a part of our projects. Additional projects will involve studies of the basic mechanisms regulating the adaption of physiological systems to environments. Recent publications are attached below.

You can get the information of our lab on following website.
http://www.sozo.ac.jp/professor/goto_katsumasa/en_index.html

Toyohashi SOZO University is located in Aichi Prefecture in the heart of the Honshu island of Japan. For more information about our department contact me.


Dr. Katsumasa Goto, Ph.D.
Department of Physiology
Graduate School of Health Sciences
Toyohashi SOZO University
20-1 Matsushita, Ushikawa Toyohashi, Aichi 440-8511, Japan
E-mail: kouhou@sozo.ac.jp (Administration Office)


Recent publications


1) Ohira, T., Wang, X.D., Ito, T., Kawano, F., Goto, K., Izawa, T., Ohno, H., Kizaki, T., and Ohira, Y.: Macrophage deficiency in osteopetrotic (op/op) mice inhibits activation of satellite cells and prevents muscle hypertrophy in single soleus fibers. Am. J. Physiol. Cell Physiol. 308 (10): C848-C855, 2015.
2) Fujiya, H., Ogura, Y., Ohno, Y., Goto, A., Nakamura, A., Ohashi, K., Uematsu, D., Aoki, H., Musha, H., and Goto, K.: Microcurrent electrical stimulation facilitates regeneration of injured skeletal muscle in mice. J. Sports Sci. Med. 14 (2): 297-303, 2015.
3) Ohno, Y., Sugiura, T., Ohira, Y., Yoshioka, T., and Goto, K. : Loading-associated expression of TRIM72 and caveorin-3 in antigravitational soleus muscle in mice. Physiol. Rep. 2 (12): e12259, 2014. doi: 10.14814/phy2.12259
4) Egawa, T., Tsuda, S., Hamada, T., Goto, K., and Hayashi, T.: Regulation mechanism of caffeine on glucose transport and upstream signaling pathways in skeletal muscle. In: Caffeine: Consumption, Side Effects and Impact on Performance and Mood, Tolley, AS. (ed.), p. 113-138, Nova Science Publishers, New York, 2014.
5) Goto, K., Oda, H., Ota, N., Watanabe, A., Kitazawa, H., Igaki, M., Suzuki, A., Shiotoyodome, A., Hase, T., Sugiura, T., Ohira, Y., Yoshioka, T.: Effects of catechin-ingestion and heat stress on the maximum isometric force in knee extension, the volume of quadriceps muscle, and serum thiobarbituric acid reactive substances level in healthy elderly women. Journal of Gerontology & Geriatric Research 3 (2): 148, 2014. doi: 10.4172/2167-7182.1000148
6) Egawa T, Tsuda S, Oshima R, Goto K, Hayashi T. Activation of 5'AMP-activated protein kinase in skeletal muscle by exercise and phytochemicals. J Phys Fitness Sports Med, 3 (1): 55-64, 2014. doi: 10.7600/jpfsm.3.55
7) Ohira, Tom., Ohira, Tak., Kawano, F., Shibaguchi, T., Okabe, H., Goto, K., Ogita, F., Sudoh, M., Roy, R.R., Edgerton, V.R., Cancedda, R., Ohira, Y.: Effects of gravitational loading levels on protein expression related to metabolic and/or morphologic properties of mouse neck muscles. Physiol. Rep. 2 (1), e00183, 2014. doi: 10.1002/phy2.183
8) Egawa, T., Ohno, Y., Goto, A., Ikuta, A., Suzuki, M., Ohira, T., Yokoyama, S., Sugiura, T., Ohira, Y., Yoshioka, T., Goto, K.: AICAR-induced activation of AMPK negatively regulates myotube hypertrophy through HSP72-mediated pathway in C2C12 skeletal muscle cells. Am. J. Physiol. Endocrinol. Metab., 306 (3): E344-E354, 2014. doi: 10.1152/ajpendo.00495.2013.
9) Kishiro, S., Fujiya, H., Goto, K., Ogura, Y., Kurosaka, M., Yatabe, K., Ito, T., Yoshida, A., Yoshioka, H., Terauchi, K., Beppu, M., Funabashi, T, Akema, T., and Musha, H.: Effects of STG tendon harvest and BTB harvest on knee joint muscles -An immunohistochemical evaluation-. J. St. Marianna Univ., 4 (2): 49-59, 2013.
10) Ito, T., Fujiya, H., Goto, K., Ogura, Y., Kurosaka, M., Yatabe, K., Kishiro, S., Yoshida, A., Yoshioka, Y., Terauchi, K., Beppu, M., Funabashi, T, Akema, T., and Musha, H.: Icing at early stage depresses skeletal muscle regeneration. J. St. Marianna Univ., 4 (2): 61-67, 2013.
11) Goto, A., Ohno, Y., Ikuta, A., Suzuki, M., Ohira, T., Egawa, T., Sugiura, T., Yoshioka, T, Ohira, Y., Goto, K.: Up-regulation of adiponectin expression in antigravitational soleus muscle in response to unloading followed by reloading, and functional overloading in mice. PLoS ONE 8 (12): e81929, 2013. doi:10.1371/journal.pone.0081929.
12) Koya, T., Nishizawa, S., Ohno, Y., Goto, A., Ikuita, A., Suzuki, M., Ohira, T., Egawa, T., Nakai, A., Sugiura, T., Ohira, Y., Yoshioka, T., Beppu, M., and Goto, K.: Heat shock transcription factor 1-deficiency attenuates overloading-associated hypertrophy of mouse soleus muscle. PLoS ONE 8(10): e77788, 2013. doi:10.1371/journal.pone.007778.
13) Nishizawa, S., Koya, T., Ohno, Y., Goto, A., Ikuita, A., Suzuki, M., Ohira, T., Egawa, T., Nakai, A., Sugiura, T., Ohira, Y., Yoshioka, T., Beppu, M., and Goto, K.: Regeneration of injured skeletal muscle in heat shock transcription factor 1-null mice. Physiol. Rep. 1 (3): e00071, 2013. doi: 10.1002/phys.71.
14) Ohno, Y., Fujiya, H., Goto, A., Nakamura, A., Nishiura, Y., Sugiura, T., Ohira, Y., Yoshioka, T., and Goto, K.: Microcurrent electrical nerve stimulation facilitates regrowth of mouse soleus muscle. Intl. J. Med. Sci. 10: 1286-1294, 2013. doi:10.7150/ijms.5985.
15) Egawa, T., Masuda, S., Goto, K., and Hayashi, T.: Increased dystrophin mRNA and protein levels in atrophic skeletal muscles in streptozotocin-induced diabetic rat. J. Phys. Fit. Sports Med., 1: 709-713, 2012.
16) Ohno, Y., Yamada, S., Goto, A., Ikuta, A., Sugiura, T., Ohira, Y., Yoshioka, T., Goto, K.: Effects of heat stress on muscle mass and the expression levels of heat shock proteins and lysosomal cathepsin L in soleus muscle of young and aged mice. Mol. Cell. Biochem. 369(1-2): 45-53, 2012.
17) Goto, K., Ohno, Y., Goto, A., Ikuta, A., Suzuki, M., Ohira, T., Tsuchiya, N., Nishizawa, S., Koya, T., Egawa, T., Sugiura, T., Ohira, Y., and Yoshioka, T.: Some aspects of heat stress on the plasticity of skeletal muscle cells. J.Phys. Fit. Sports Med. 1: 197-204, 2012.
18) Goto, K., Ohno, Y., Yasuhara, K., Koya, T., Nishizawa, S., Goto, A., and Ikuta, A.: Some aspects on skeletal muscle plasticity. J. Jpn. Soc. Res. Ueda Approach spastics, 22: 106-120, 2011.
19) Santucci, D., Kawano, F., Ohira, T., Terada, M., Nakai, N., Francia, N., Alleva, E., Aloe, L., Ochia, T., Cancedda, R., Goto, K., Ohira, Y.: Evaluation of Gene, Protein and Neurotrophin Expression in the Brain of Mice Exposed to Space Environment for 91 Days. PLoS ONE 7 (7): e40112, 2012.
20) Masini, M.A., Albi, E., Barmo, C., Bonfiglio, T,, Bruni, L., Canesi, L., Cataldi, S., Curcio, F., D'Amora, M., Ferri, I., Goto, K., Kawano, F., Lazzarini, R., Loreti, E., Nakai, N., Ohira, T., Ohira, Y., Palmero, S., Prato, P., Ricci, F., Scarabelli, L., Shibaguchi, T., Spelat, R., Strollo, F., Saverio Ambesi-Impiombato, F.: The Impact of Long-Term Exposure to Space Environment on Adult Mammalian Organisms: A Study on Mouse Thyroid and Testis. PLoS ONE 7(4): e35418, 2012.
21) Sandonà, D., Desaphy, J.-F., Camerino, G.M., Bianchini, E., Ciciliot, S., Danieli-Betto, D., Dobrowolny, G., Furlan, S., Germinario, E., Goto, K., Gutsmann, M., Kawano, F., Nakai, N., Ohira, T., Ohno, Y., Picard, A., Salanova, M., Schiffl, G., Blottner, D., Musarò, A., Ohira, Y., Betto, R., Conte, D., Schiaffino, S.: Adaptation of Mouse Skeletal Muscle to Long-Term Microgravity in the MDS Mission. PLoS ONE 7(3): e33232, 2012.
22) Yasuhara, K., Ohno, Y., Kojima, A., Uehara, K., Beppu, M., Sugiura, T., Fujimoto, M., Nakai, A., Ohira, Y., Yoshioka, T., and Goto, K.: Absence of heat shock transcription factor 1 retards the regrowth of atrophied soleus muscle in mice. J. Appl. Physiol., 111: 1142-1149, 2011.
23) Ohno, Y., Yamada, S., Sugiura, T., Ohira, Y., Yoshioka, T., and Goto, K.: Possible Role of NF-ĸB Signals in Heat Stress-Associated Increase in Protein Content of Cultured C2C12 Cells. Cells Tissues Organs, 194: 363-370, 2011.
24) Fujiya, H., Goto, K., Kohno, T., and Aoki, H.: Changes of SM muscles after STG harvest. Int J Sports Med. 32: 446-450, 2011.
25) Goto, K., Oda, H., Kondo, H., Igaki, M., Suzuki, A., Tsuchiya, S., Murase, T., Hase, T., Fujiya, H., Matsumoto, I., Naito, H., Sugiura, T., Ohira, Y., and Yoshioka, T.: Responses of muscle mass, strength and gene transcripts to long-term heat stress in healthy human subjects. Eur. J. Appl. Physiol., 111: 17-27, 2011.
26) Ohira, Y., Kawano, F., Wang, X.D., Nakai, N., Ohira, T., Okabe, H., Naito, H., and Goto, K.: Role(s) of mechanical load and satellite cells in the regulation of the size of soleus muscle fibers in rats. Biol. Sci. Space, 24: 135-144, 2010.
27) Ohno, Y., Yamada, S., Sugiura, T., Ohira, Y., Yoshioka, T., and Goto, K.: A possible role of NF-κB and HSP72 in skeletal muscle hypertrophy induced by heat stress in rats. Gen. Physiol. Biophys., 29: 234-242, 2010.
28) Kawano, F., Goto, K., Wang, X.D., Terada, M., Ohira, T., Nakai, N., Yoshioka, T., and Ohira, Y.: Role(s) of gravitational loading during developing period on the growth of rat soleus muscle fibers. J. Appl. Physiol., 108: 676-685, 2010.
29) Matsuba, Y., Goto, K., Morioka, S., Naito, T., Akema, T., Hashimoto, N., Sugiura, T., Ohira, Y., Beppu, M., and Yoshioka, T.: Gravitational unloading inhibits the regenerative potential of atrophied soleus muscle in mice. Acta Physiol., 196: 329-339, 2009.
30) Kurosaka, M., Naito, H., Ogura, Y., Kojima, A., Goto, K., and Katamoto, S.: Effects of voluntary wheel running on satellite cells in the rat plantaris muscle. J. Sports Sci. Med., 8: 51-57, 2009.
31) Naito, T., Goto, K., Morioka, S., Matsuba, Y., Akema, T., Sugiura, T., Ohira, Y., Beppu, M., and Yoshioka, T.: Administration of granulocyte colony-stimulating factor facilitates the regenerative process of injured mice skeletal muscle via the activation of Akt/GSK3ab signals. Eur. J. Appl. Physiol., 105: 643-651, 2009.
32) Morioka, S., Goto, K., Kojima, A., Naito, T., Matsuba, Y., Akema, T., Fujiya, H., Sugiura, T., Ohira, Y., Beppu, M., Aoki, H., and Yoshioka, T.: Functional overloading facilitates the regeneration of injured soleus muscles in mice. J. Physiol. Sci., 58: 397-404, 2008
33) Nagaoka, S., Oishi, Y., Yamasaki, M., Kawano, F., Nakai, N., Ohira, Y., Goto, K., Sudoh, M., and Ishihara, A.: A role of gravity in the growth and development of mammal postnatal development of cardiopulmonary reflex. Space Utiliz. Res., 24: 276-277, 2008.
34) Goto, K., Morioka, S., Naito, T., Akema, T., Matsuba, Y., Sugiura, T., Ohira, Y. and Yoshioka, T.: Effects of functional overloading on the regtenerative potential of injured skeletal muscles in mice. J. Gravit. Physiol., 14: P101-P102, 2007.
35) Goto, K., Kojima, A., Morioka, S., Naito, T., Akema, T., Matsuba, Y., Fujiya, H., Sugiura, T., Ohira, Y. and Yoshioka, T.: Geranylgeranylaceton induces heat shock protein 72 in skeletal muscles. Biochem. Biophys. Res. Commun., 358: 331-335, 2007.
36) Goto, K., Oda, H., Morioka, S., Naito, T., Akema, T., Kato, H., Fujiya, H., Nakajima, Y, Sugiura, T., Ohira, Y., and Yoshioka, T.: Skeletal muscle hypertrophy induced by low-intensity exercise with heat-stress in healthy human subjects. Jpn. J. Aerospace Environ. Med., 44: 13-18, 2007.
37) Kojima, A., Goto, K., Morioka, S., Naito, T., Akema, T., Fujiya, H., Sugiura, T., Ohira, Y., Beppu, M., Aoki, H., and Yoshioka, T.: Heat stress facilitates the regeneration of injured skeletal muscle in rats. J. Orthop. Sci., 12: 74-82, 2007.

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