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Connective tissue cells expressing fibro/adipogenic progenitor markers increase under chronic damage: relevance in fibroblast-myofibroblast differentiation and skeletal muscle fibrosis
(2016)
Fibrosis occurs in skeletal muscle under various pathophysiological conditions such as Duchenne muscular dystrophy (DMD), a devastating disease characterized by fiber degeneration that results in progressive loss of muscle ...
ALS skeletal muscle shows enhanced TGF-beta signaling, fibrosis and induction of fibro/adipogenic progenitor markers
(2017)
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease in which upper and lower motoneurons degenerate leading to muscle wasting, paralysis and eventually death from respiratory failure. Several studies ...
Decorin modulates skeletal-muscle differentiation
(AMERICAN SOCIETY FOR CELL BIOLOGY, 1999)
Ecm is required for skeletal muscle differentiation independently of muscle regulatory factor expression
(AMERICAN PHYSIOLOGICAL SOCIETY, 2002)
Ecm is required for skeletal muscle differentiation independently of muscle regulatory factor expression
(AMERICAN PHYSIOLOGICAL SOCIETY, 2000)
Skeletal muscle excitation-metabolism coupling
(2019)
Mitochondria represent the main source of ATP in skeletal muscle and mitochondria activity increases after muscle fiber depolarization. The regulation of mitochondrial function during contraction in skeletal muscle, however, ...
Characterization Of A Multiprotein Complex Involved In Excitation-Transcription Coupling Of Skeletal Muscle
(2016)
Background: Electrical activity regulates the expression of skeletal muscle genes by a process known as "excitation-transcription" (E-T) coupling. We have demonstrated that release of adenosine 5'-triphosphate (ATP) during ...
Connexins and Pannexins in Bone and Skeletal Muscle
(2017)
Purpose of review To discuss current knowledge on the role of connexins and pannexins in the musculoskeletal system. Recent findings Connexins and pannexins are crucial for the development and maintenance of both bone and ...