Literature DB >> 15075918

Testosterone action on skeletal muscle.

Karen L Herbst1, Shalender Bhasin.   

Abstract

PURPOSE OF REVIEW: To highlight recent data demonstrating direct anabolic effects of androgens on the mammalian skeletal muscle and review the mechanisms by which testosterone regulates body composition. RECENT
FINDINGS: Testosterone increases lean body mass and decreases fat mass in young men; the magnitude of the changes induced by testosterone in lean and fat mass are correlated with testosterone dose and the prevalent testosterone concentrations. Older men are as responsive to the anabolic effects of testosterone on the muscle as young men, but have increased frequency of adverse events with higher testosterone doses. This reciprocal change in lean and fat mass induced by androgens is best explained by the hypothesis that androgens promote the commitment of mesenchymal pluripotent cells into myogenic lineage and inhibit adipogenesis through an androgen receptor mediated pathway. Resident muscle satellite cells increase in number with testosterone administration forming myoblasts leading to greater numbers of myonuclei in larger myofibers. Testosterone administration is associated with increased size of motor neurons. The roles of 5-alpha reduction and aromatization of testosterone into dihydrotestosterone and estradiol, respectively, in mediating testosterone effects on body composition are poorly understood.
SUMMARY: Testosterone induces skeletal muscle hypertrophy by multiple mechanisms, including its effects in modulating the commitment of pluripotent mesenchymal cells. These changes in skeletal muscle lead to improved muscle strength and leg power; however, further studies are needed to determine the effects of testosterone on physical function and health-related outcomes in sarcopenia associated with aging and chronic illness.

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Year:  2004        PMID: 15075918     DOI: 10.1097/00075197-200405000-00006

Source DB:  PubMed          Journal:  Curr Opin Clin Nutr Metab Care        ISSN: 1363-1950            Impact factor:   4.294


  96 in total

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2.  Designing Phase II B trials in sarcopenia: the best target population.

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Review 3.  How pleiotropic genetics of the musculoskeletal system can inform genomics and phenomics of aging.

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4.  The clinical use of macro and surface electromyography in diagnosis and follow-up of endocrine and drug-induced myopathies.

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5.  Preparing to migrate: expression of androgen signaling molecules and insulin-like growth factor-1 in skeletal muscles of Gambel's white-crowned sparrows.

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6.  Testosterone-mediated activation of androgenic signalling sustains in vitro the transformed and radioresistant phenotype of rhabdomyosarcoma cell lines.

Authors:  S Giannattasio; F Megiorni; V Di Nisio; A Del Fattore; R Fontanella; S Camero; C Antinozzi; C Festuccia; G L Gravina; S Cecconi; C Dominici; L Di Luigi; C Ciccarelli; P De Cesaris; A Riccioli; B M Zani; A Lenzi; R G Pestell; A Filippini; C Crescioli; V Tombolini; F Marampon
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7.  Resistance exercise biology: manipulation of resistance exercise programme variables determines the responses of cellular and molecular signalling pathways.

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Review 8.  Androgen regulation of axon growth and neurite extension in motoneurons.

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Journal:  Mol Endocrinol       Date:  2014-05-06

10.  Effect of exercise on serum sex hormones in men: a 12-month randomized clinical trial.

Authors:  Vivian N Hawkins; Karen Foster-Schubert; Jessica Chubak; Bess Sorensen; Cornelia M Ulrich; Frank Z Stancyzk; Stephen Plymate; Janet Stanford; Emily White; John D Potter; Anne McTiernan
Journal:  Med Sci Sports Exerc       Date:  2008-02       Impact factor: 5.411

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