Increased adipogenic conversion of muscle satellite cells in obese Zucker rats

脂肪生成 肌发生 内科学 内分泌学 脂肪组织 脂肪细胞 骨骼肌 生物 Wnt信号通路 医学 细胞生物学 信号转导
作者
Alessandro Scarda,Chiara Franzin,Gabriella Milan,Marta Sanna,Chiara Dal Prà,Claudio Pagano,Luisa Boldrin,Martina Piccoli,Elisabetta Trevellin,Marnie Granzotto,Piergiorgio Gamba,Giovanni Federspil,Paolo De Coppi,Roberto Vettor
出处
期刊:International Journal of Obesity [Springer Nature]
卷期号:34 (8): 1319-1327 被引量:59
标识
DOI:10.1038/ijo.2010.47
摘要

Visceral and intermuscular adipose tissue (IMAT) depots account for most obesity-related metabolic and cardiovascular complications. Muscle satellite cells (SCs) are mesenchymal stem cells giving rise to myotubes and also to adipocytes, suggesting their possible contribution to IMAT origin and expansion. We investigated the myogenic differentiation of SCs and the adipogenic potential of both preadipocytes and SCs from genetically obese Zucker rats (fa/fa), focusing on the role of Wnt signaling in these differentiation processes.SCs were isolated by single-fiber technique from flexor digitorum brevis muscle and preadipocytes were extracted from subcutaneous adipose tissue (AT). Morphological features and gene expression profile were evaluated during in vitro myogenesis and adipogenesis. Wingless-type MMTV integration site family member 10b (Wnt10b) expression was quantified by quantitative PCR in skeletal muscle and AT.We did not observe any difference in the proliferation rate and in the myogenic differentiation of SCs from obese and lean rats. However, a decreased insulin-induced glucose uptake was present in myotubes originating from fa/fa rats. Under adipogenic conditions, preadipocytes and SCs of obese animals displayed an enhanced adipogenesis. Wnt10b expression was reduced in obese rats in both muscle and AT.Our data suggest that the increase in different fat depots including IMAT and the reduced muscle insulin sensitivity, the major phenotypical alteration of obese Zucker rats, could be ascribed to an intrinsic defect, either genetically determined or acquired, still present in both muscle and fat precursors. The involvement of Wnt10b as a regulator of both adipogenesis and muscle-to-fat conversion is suggested.
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