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Myosteatosis in the Context of Skeletal Muscle Function Deficit: An Interdisciplinary Workshop at the National Institute on Aging

Frontiers in Physiology · 2020 · Vol. 11 · pp. 963–963
Rosaly Correa‐de‐AraujoOdessa AddisonIva MiljkovicBret H. GoodpasterBryan C. BergmanRichard V. ClarkJoanne W. ElenaKaryn A. EsserLuigi FerrucciMichael O. Harris‐LoveSteve KritchevskyAmanda L. LorbergsJohn ShepherdGerald I. ShulmanClifford J. Rosen

Abstract

Skeletal muscle fat infiltration (known as myosteatosis) is an ectopic fat depot that increases with aging and is recognized to negatively correlate with muscle mass, strength, and mobility and disrupt metabolism (insulin resistance, diabetes). An interdisciplinary workshop convened by the National Institute on Aging Division of Geriatrics and Clinical Gerontology on September 2018, discussed myosteatosis in the context of skeletal muscle function deficit (SMFD). Its purpose was to gain a better understanding of the roles of myosteatosis in aging muscles and metabolic disease, particularly its potential determinants and clinical consequences, and ways of properly assessing it. Special attention was given to functional status and standardization of measures of body composition (including the value of D<sub>3</sub>-creatine dilution method) and imaging approaches [including ways to better use dual-energy X-ray absorptiometry (DXA) through the shape and appearance modeling] to assess lean mass, sarcopenia, and myosteatosis. The workshop convened innovative new areas of scientific relevance to light such as the effect of circadian rhythms and clock disruption in skeletal muscle structure, function, metabolism, and potential contribution to increased myosteatosis. A muscle-bone interaction perspective compared mechanisms associated with myosteatosis and bone marrow adiposity. Potential preventive and therapeutic approaches highlighted ongoing work on physical activity, myostatin treatment, and calorie restriction. Myosteatosis' impact on cancer survivors raised new possibilities to identify its role and to engage in cross-disciplinary collaboration. A wide range of research opportunities and challenges in planning for the most appropriate study design, interpretation, and translation of findings into clinical practice were discussed and are presented here.

Spaceflight effects on biologyMuscle metabolism and nutritionMuscle Physiology and DisordersContext (archaeology)Skeletal muscleFunction (biology)NeuroscienceMedicineBiologyAnatomyCell biology

Funding

  • Yale University
  • University of Pittsburgh
  • Maine Medical Center Research Institute
  • Canadian Frailty Network
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