Literature DB >> 24081737

Endurance training modulates intramyocellular lipid compartmentalization and morphology in skeletal muscle of lean and obese women.

Michaela C Devries1, Imtiaz A Samjoo, Mazen J Hamadeh, Colin McCready, Sandeep Raha, Matthew J Watt, Gregory R Steinberg, Mark A Tarnopolsky.   

Abstract

CONTEXT: The accumulation of intramyocellular lipids (IMCLs) and mitochondrial dysfunction in skeletal muscle have been associated with insulin resistance in obesity. Endurance training (ET) increases mitochondrial content/activity and IMCL content in young, active men and women. We have previously shown that ET alters the size, number, and physical juxtaposition of IMCLs and mitochondria.
OBJECTIVE: The purpose of this study was to determine the effects of obesity and ET on mitochondrial function, IMCL content, and IMCL-mitochondria juxtaposition in sedentary lean and obese women. DESIGN, SETTING, SUBJECTS, INTERVENTION, AND MAIN OUTCOME MEASURES: Obese (n = 11) and lean (n = 12), sedentary women were recruited using local advertisements and underwent 12 weeks of ET in our training facility at McMaster University. Blood and muscle biopsy samples (vastus lateralis) were collected before and after ET to measure IMCL and mitochondrial ultrastructure, mitochondrial oxidative capacity, lipid oxidation capacity, and lipid metabolism by-products.
RESULTS: Obese women were insulin resistant (homeostasis model assessment of insulin resistance) compared with lean women. ET did not change body weight but increased mitochondrial oxidative and β-oxidation capacity in both groups. ET mediated reorganization of the muscle architecture, whereby IMCL content in the subsarcolemmal region was reduced with a concomitant increase in intermyofibrillar IMCLs. ET increased the percentage of IMCLs in direct contact with mitochondria and did not alter diacylglycerol and ceramide content in either group.
CONCLUSIONS: ET mediated positive changes in mitochondrial function and lipid oxidation and induced intracellular IMCL reorganization, which is reflective of greater IMCL turnover capacity in both lean and obese women.

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Year:  2013        PMID: 24081737     DOI: 10.1210/jc.2013-2044

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  26 in total

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7.  A pilot study examining the impact of exercise training on skeletal muscle genes related to the TLR signaling pathway in older adults following hip fracture recovery.

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Authors:  Leigh Perreault; Sean A Newsom; Allison Strauss; Anna Kerege; Darcy E Kahn; Kathleen A Harrison; Janet K Snell-Bergeon; Travis Nemkov; Angelo D'Alessandro; Matthew R Jackman; Paul S MacLean; Bryan C Bergman
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Review 9.  Physiological Changes and Pathological Pain Associated with Sedentary Lifestyle-Induced Body Systems Fat Accumulation and Their Modulation by Physical Exercise.

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10.  Subcellular localisation and composition of intramuscular triacylglycerol influence insulin sensitivity in humans.

Authors:  Darcy Kahn; Leigh Perreault; Emily Macias; Simona Zarini; Sean A Newsom; Allison Strauss; Anna Kerege; Kathleen Harrison; Janet Snell-Bergeon; Bryan C Bergman
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