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Fate of adipocyte progenitors during adipogenesis in mice fed a high-fat diet

机译:在喂养高脂饮食的小鼠脂肪发生过程中脂肪细胞祖细胞的命运

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Objective Expansion of adipose tissue during obesity through the recruitment of newly generated adipocytes (hyperplasia) is metabolically healthy, whereas that through the enlargement of pre-existing adipocytes (hypertrophy) leads to metabolic complications. Accumulating evidence from genetic fate mapping studies suggests that in animal models receiving a high-fat diet (HFD), only adipocyte progenitors (APs) in gonadal white adipose tissue (gWAT) have proliferative potential. However, the proliferative potential and differentiating capacity of APs in the inguinal WAT (iWAT) of male mice remains controversial. The objective of this study was to investigate the proliferative and adipogenic potential of APs in the iWAT of HFD-fed male mice. Methods We generated PDGFRα-GFP-Cre-ER T2 /tdTomato (KI/td) mice and traced PDGFRα-positive APs in male mice fed HFD for 8 weeks. We performed a comprehensive phenotypic analysis, including the histology, immunohistochemistry, flow cytometry, and gene expression analysis, of KI/td mice fed HFD. Results Contrary to the findings of others, we found an increased number of newly generated tdTomato adipocytes in the iWAT of male mice, which was smaller than that observed in the gWAT. We found that in male mice, the iWAT has more proliferating tdTomato APs than the gWAT. We also found that tdTomato APs showed a higher expression of Dpp4 and Pi16 than tdTomato ? APs, and the expression of these genes was significantly higher in the iWAT than in the gWAT of mice fed HFD for 8 weeks. Collectively, our results reveal that HFD feeding induces the proliferation of tdTomato APs in the iWAT of male mice. Conclusion In male mice, compared with gWAT, iWAT undergoes hyperplasia in response to 8 weeks of HFD feeding through the recruitment of newly generated adipocytes due to an abundance of APs with a high potential for proliferation and differentiation.
机译:通过募集新生成的脂肪细胞(增生)在肥胖期间脂肪组织的客观扩增是代谢健康的,而通过预先存在的脂肪细胞(肥大)引起代谢并发症。来自遗传命运映射研究的累积证据表明,在接受高脂饮食(HFD)的动物模型中,只有脂肪细胞(GWAT)中的脂肪细胞祖细胞(APS)具有增殖性潜力。然而,雄性小鼠的Induinal Wat(IWAT)中APS的增殖潜力和分化能力仍存在争议。本研究的目的是探讨HFD喂养雄性小鼠IWAT中APS的增殖和脂肪潜力。方法生成PDGFRα-GFP-CRE-ER T2 / TDTOMATO(KI / TD)小鼠并在喂养HFD的雄性小鼠中跟踪PDGFRα阳性AP 8周。我们进行了全面的表型分析,包括组织学,免疫组化,流式细胞术和喂养HFD的小鼠的组织学,免疫组化,流式细胞术和基因表达分析。结果与他人的结果相反,我们发现雄性小鼠IWAT中的新生成的Tdtomato脂肪细胞的数量增加,其小于GWAT中观察到的。我们发现,在雄性小鼠中,IWAT具有比GWAT更多的增殖TDTOMATO AP。我们还发现TDTOMATO APS显示出比TDTOMATO更高的DPP4和PI16表达式? IWAT的APS和这些基因的表达显着高于喂养HFD的小鼠GWAT 8周的小鼠。我们的结果表明,HFD饲养诱导雄性小鼠IWAT中TDTOMATO AP的增殖。结论在雄性小鼠中,与Gwat相比,IWAT通过募集新生成的脂肪细胞的8周喂养8周的HFD喂养增生,这是由于具有高潜力的增殖和分化潜力的丰富。

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