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Updated: Dec 24, 2025

Preparation and Culture of Myogenic Precursor Cells/Primary Myoblasts from Skeletal Muscle of Adult and Aged Humans
Published on: February 16, 2017
Maintaining Muscle Function Across the Lifespan: The State of Science
W David Arnold1, Carlos J Padilla Colón
1From the Division of Neuromuscular Diseases, Department of Neurology, The Ohio State Wexner Medical Center, Columbus, Ohio (WDA, CJPC); Department of PM&R, The Ohio State Wexner Medical Center, Columbus, Ohio (WDA); Department of Neuroscience, The Ohio State Wexner Medical Center, Columbus, Ohio (WDA); Department of Physiology and Cell Biology, The Ohio State Wexner Medical Center, Columbus, Ohio (WDA); and Department of Research and Development Service, VA Caribbean Healthcare System, San Juan, Puerto Rico (CJPC).
Abstract:
Sarcopenia is a geriatric syndrome currently defined as pathological loss of muscle mass and function. Sarcopenia is not only a major contributor to loss of physical function in older adults but is also associated with increased risk of morbidity, mortality, and increased healthcare costs. As a complex and multifactorial syndrome, sarcopenia has been associated with numerous degenerative changes during the aging process, but there is building evidence for significant contributions to the development of sarcopenia from neurodegenerative changes in the peripheral nervous system. A variety of interventions have been investigated for the treatment of sarcopenia, but current management is primarily focused on nutrition and therapeutic exercise interventions. Great strides have been made to improve screening procedures and diagnostic criteria for sarcopenia, but continued optimization of diagnostic and screening strategies is needed to better identify individuals with sarcopenia or at risk of developing sarcopenia. Understanding and addressing the major drivers of sarcopenia pathogenesis will help develop therapeutics that can reduce the impact of sarcopenia on affected individuals and society.
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