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Glucose Utilization, Lipid Metabolism and BMP-Smad Signaling Pathway of Porcine Intramuscular Preadipocytes Compared with Subcutaneous Preadipocytes

机译:猪肌内前脂肪细胞与皮下前脂肪细胞的葡萄糖利用,脂质代谢和BMP-Smad信号通路

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Background/Aims: We previously reported that porcine intramuscular (i.m.) preadipocytes were different from subcutaneous (s.c.) preadipocytes on cell differentiation and lipid accumulation, but the underlying mechanisms remained unknown. The paper aims to investigate the underlying mechanisms by comparing the differences between i.m. and s.c. preadipocytes in glucose utilization, lipid metabolism, and the role of BMP signaling pathway. Methods: Experiments were performed in porcine primary i.m. and s.c. preadipocytes in culture. The mRNA and protein expression patterns were determined respectively by Quantitative real-time PCR and Western blot. Cytosolic triglycerides were examined by triglyceride assay. Results: The i.m. preadipocytes consumed more glucose by expression of GLUT1 and s.c. preadipocytes mainly utilized exogenic fatty acids for lipid synthesis by expression of LPL and FAT. Meanwhile, the expression of genes related to lipogenesis and lipolysis in s.c. preadipocytes increased more quickly than those in i.m. preadipocytes. The expression patterns of the genes involved in BMP-Smad signaling pathway were consistent with those of the genes participated in adipocytes differentiation in both i.m. and s.c. preadipocytes. Exogenous BMP2 significantly increased, whereas Noggin and Compound C, remarkablely decreased the triglycerides content in i.m. preadipoytes, without affecting s.c. preadipocytes. BMP2 shRNA significantly reduced the mRNA levels of the downstream genes of BMP-Smad signaling pathway and PPARγ in both i.m. and s.c. preadipocytes. Conclusion: These findings suggested that the differentiation and lipid accumulation differences between i.m. and s.c. preadipocytes might be caused by the different manners of glucose utilization, lipid metabolism and the BMP-Smad signaling pathway. The special feature of i.m. adipocytes implied that these cells might be a potential target for treatment of diabetes.
机译:背景/目的:我们先前曾报道猪的肌内(i.m.)前脂肪细胞与皮下(s.c.)前脂肪细胞在细胞分化和脂质蓄积方面有所不同,但其潜在机制仍不清楚。本文旨在通过比较i.m与i.m之间的差异来研究潜在的机制。和s.c.前脂肪细胞在葡萄糖利用,脂质代谢和BMP信号通路中的作用。方法:实验是在猪原发性腹膜炎中进行的。和s.c.培养前脂肪细胞。通过定量实时PCR和蛋白质印迹分别测定mRNA和蛋白质表达模式。通过甘油三酸酯测定法检查了胞质甘油三酸酯。结果:前脂肪细胞通过GLUT1和s.c的表达消耗更多的葡萄糖。前脂肪细胞主要利用外源脂肪酸通过LPL和FAT的表达进行脂质合成。同时,与脂肪形成和脂解相关的基因在南太平洋的表达。前脂肪细胞的增加比i.m.前脂肪细胞。 BMP-Smad信号通路中涉及的基因的表达模式与两个i.m中参与脂肪细胞分化的基因的表达模式一致。和s.c.前脂肪细胞。外源BMP2显着增加,而Noggin和化合物C显着降低i.m中甘油三酸酯的含量。 preadipoytes,不影响s.c。前脂肪细胞。 BMP2 shRNA显着降低了两个i.m中BMP-Smad信号通路和PPARγ下游基因的mRNA水平。和s.c.前脂肪细胞。结论:这些发现表明,i.m。之间的分化和脂质积累差异。和s.c.前脂肪细胞可能是由于葡萄糖利用,脂质代谢和BMP-Smad信号通路的不同方式引起的。 i.m.的特色脂肪细胞暗示这些细胞可能是治疗糖尿病的潜在靶标。

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