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Temporal expression of growth factor genes of primary porcine satellite cells during myogenesis.

机译:原代猪卫星细胞生长过程中生长因子基因的时间表达。

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The present experiment was undertaken to study the transcription of members of the insulin-like growth factor (IGF) system and myostatin in porcine satellite cells through myogenesis and to study the effects of 1 micro mol/L insulin on stimulating fusion. Cultured cells were harvested at 50 and 80% confluence and at days 1, 2, 3 and 4 following induction of fusion and differentiation. Increased levels of myogenin transcription and creatine kinase from 50% confluence until day 2 indicated that fusion and differentiation were induced. The mRNA abundance of IGF-I (P<0.001), IGF-II (P<0.001), IGF binding protein (BP) 5 (P<0.01), type I IGF receptor (P<0.001) and myostatin (P<0.01) increased from proliferation to differentiation. Insulin stimulated differentiation as indicated by elevated creatine kinase activity (P<0.001) but did not affect myogenin mRNA abundance (P=0.98). Insulin downregulated transcription of IGF-I (P<0.01) and during the first 2 days after switching to differentiation medium insulin downregulated IGF receptor transcription (P<0.001), whereas insulin did not affect transcription of IGF-II (P=0.06), IGFBP5 (P=0.76) or myostatin (P=0.50). In conclusion, transcriptions of IGF-I, IGF-II, type I IGF receptor, IGFBP5 and myostatin were changed during myogenesis, suggesting autocrine/paracrine roles in regulating the transition from proliferation to differentiation of porcine satellite cells..
机译:本实验旨在通过成肌作用研究猪卫星细胞中胰岛素样生长因子(IGF)系统成员和肌生长抑制素的转录,并研究1 micro mol / L胰岛素对刺激融合的影响。诱导融合和分化后,以50%和80%汇合度以及第1、2、3和4天收获培养的细胞。从50%融合到第2天,肌原蛋白转录和肌酸激酶的水平增加,表明诱导了融合和分化。 IGF-I(P <0.001),IGF-II(P <0.001),IGF结合蛋白(BP)5(P <0.01),IGF IGF受体(P <0.001)和肌生长抑制素(P <0.01)的mRNA丰度)从增殖到分化的过程有所增加。肌酸激酶活性升高提示胰岛素刺激分化(P <0.001),但不影响肌生成素mRNA丰度(P = 0.98)。胰岛素下调了IGF-I的转录(P <0.01),并且在切换至分化培养基后的前2天,胰岛素下调了IGF受体的转录(P <0.001),而胰岛素不影响IGF-II的转录(P = 0.06), IGFBP5(P = 0.76)或肌生长抑制素(P = 0.50)。总之,IGF-I,IGF-II,IGF IGF受体,IGFBP5和肌生长抑制素的转录在成肌过程中发生了变化,这表明自分泌/旁分泌在调节猪卫星细胞从增殖到分化的过程中的作用。

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