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020 _a9811032920
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020 _z9789811032912
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_qalk. paper)
020 _z9811032912
_q(hardcover ;
_qalk. paper)
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050 4 _aQP321
_b2017 EB
245 0 4 _aThe plasticity of skeletal muscle :
_bfrom molecular mechanism to clinical applications
_cKunihiro Sakuma, editor.
264 1 _aSingapore
_bSpringer
_c[2017]
264 4 _c2017
300 _a1 recurso en línea (ix, 292 páginas)
_bilustraciones (algunas a color)
336 _astill image
_bsti
_2rdacontent
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
500 _aSpringerLink
504 _aIncluye referencias bibliográficas
505 0 _aPluripotent stem cells and skeletal muscle differentiation: challenges and immediate applications -- Role of the ubiquitin-proteasome pathway in skeletal muscle -- Stem cell therapy in muscle degeneration -- The autophagy-dependent signaling in skeletal muscle -- Cytokines in skeletal muscle growth and decay -- The role of ribosome biogenesis in skeletal muscle hypertrophy -- Comprehensive approach to sarcopenia and cachexia treatment -- The role and regulation of PGC-1[alpha] and PGC-1[beta] in skeletal muscle adaptation -- Characteristics of skeletal muscle as a secretory organ -- Biological role of TRPC1 in myogenesis, regeneration, and disease -- ROS and nNOS in the regulation of disuse-induced skeletal muscle atrophy -- Participation of AMPK in the control of skeletal muscle mass -- Therapeutic potential of skeletal muscle plasticity and slow muscle programming for muscular dystrophy and related muscle conditions.
520 3 _aThis book discusses recent advances and various topics in plasticity of skeletal muscle from the perspectives of morphology, biological function, and clinical applications. Skeletal muscle is a highly plastic organ to adapt to environmental various demands, appears to endocrine various myokines, which flow into blood to protect the recognizing function of brain and inhibit the appearance of several cancer tumorigenesis. The book deals with current stem-cell based, pharmacological, and nutritional therapies for muscle wasting (sarcopenia, cachexia, and muscular dystrophy). It also explains the roles of biological mediators such as PGC-1, transient receptor potential cation channels (TRPC), and AMPK in modulating muscle function. The functional roles of ubiquitin-proteasome system, autophagy-dependent signaling in muscle homeostasis, ribosome biogenesis, and redox regulation of mechanotransduction to modulate skeletal muscle mass are also covered. It is an essential resource for physicians, researchers, post-docs as well as graduate students in the field of sports science including rehabilitation therapy, exercise physiology, exercise biochemistry, and molecular biology dealing with skeletal muscle.
588 0 _aOnline resource; title from electronic title page (ProQuest Ebook Central, viewed April 6, 2017).
650 7 _2embne
_aMúsculos
_9138568
700 1 _aSakuma, Kunihiro,
_eeditor literario
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-981-10-3292-9
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
998 _b02/2018
_dz
_e-
_zSI