Authors
Oh Sung Kwon, Ruth E Tanner, Katherine M Barrows, Marah Runtsch, J David Symons, Thunder Jalili, Benjamin T Bikman, Donald A McClain, Ryan M O'Connell, Micah J Drummond
Publication date
2015/7/1
Journal
American Journal of Physiology-Endocrinology and Metabolism
Volume
309
Issue
1
Pages
E11-E21
Publisher
American Physiological Society
Description
Physical inactivity in older adults is a risk factor for developing glucose intolerance and impaired skeletal muscle function. Elevated inflammation and ceramide biosynthesis have been implicated in metabolic disruption and are linked to Toll-like receptor (TLR)/myeloid differentiation primary response 88 (MyD88) signaling. We hypothesize that a physical inactivity stimulus, capable of inducing glucose intolerance, would increase skeletal muscle inflammation and ceramide biosynthesis signaling and that this response would be regulated by the TLR/MyD88 pathway. Therefore, we subjected wild-type (WT) and MyD88−/− mice to hindlimb unloading (HU) for 14 days or an ambulatory control period. We observed impaired glucose uptake, muscle insulin signaling (p-Akt), and increased markers of NF-κB signaling (p-IκBα), inflammation (p-JNK, IL-6), TLR4, and the rate-limiting enzyme of ceramide biosynthesis, SPT2 …
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