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首页> 外文期刊>Growth hormone and IGF research: Official journal of the Growth Hormone Research Society and the International IGF Research Society >Developmental changes and the impact of isoflavones on mRNA expression of IGF-I receptor, EGF receptor and related growth factors in porcine skeletal muscle cell cultures.
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Developmental changes and the impact of isoflavones on mRNA expression of IGF-I receptor, EGF receptor and related growth factors in porcine skeletal muscle cell cultures.

机译:猪骨骼肌细胞培养物中异黄酮的发育变化及对IGF-1受体,EGF受体及相关生长因子mRNA表达的影响。

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摘要

OBJECTIVE: Soy that is widely used in human nutrition and in livestock production is a rich source of isoflavones. In addition to the estrogenic or antiestrogenic effects, isoflavones are suggested to affect cell growth via inhibition of protein tyrosine kinases (e.g. growth factor receptors). Therefore, the present in vitro-study was undertaken to determine, whether genistein and daidzein affect the mRNA expression of growth factor receptors (IGF-I receptor and EGF receptor) and their related growth factors in porcine skeletal muscle cell cultures. DESIGN: First, we investigated the basal mRNA expression of IGF-I, IGF-II, EGF, IGF-I receptor, and EGF receptor in proliferating and differentiating porcine skeletal muscle cell cultures using real-time PCR. Secondly, we measured the changes in the mRNA expression in these cell cultures treated with 0 (control), 1, 10, 100 microM genistein or daidzein over 26 h in serum-free medium (n=3). RESULTS: The mRNA expression of IGF-I was slightly decreased, whereas transcript concentrations of IGF-II and EGF were increased during differentiation compared with the proliferating stage of porcine muscle cell cultures. IGF-I receptor transcripts tended to be increased, whereas EGF receptor mRNA expression remained unchanged from proliferation to differentiation. Genistein and daidzein at 1 microM and 10 microM showed no effects on the mRNA expression of these genes, neither in proliferating nor in differentiating cells. However, high-concentrated isoflavones (100 microM) decreased the mRNA expression of IGF-I receptor and of the growth factors examined. CONCLUSIONS: The present study confirms the role of the IGF and EGF system in proliferation and differentiation of skeletal muscle cell culture especially under serum-free culture conditions. Furthermore, the results of this in vitro-study suggest that there is no effect of isoflavones at concentrations resulting from dietary consumption (1 and 10 microM) on IGF- and EGF-associated gene expression in porcine skeletalmuscle tissue. Genistein and daidzein at high concentration (100 microM) reduced the mRNA expression of the IGF-I receptor and the growth factors examined, and therefore, may modify their autocrine and paracrine actions in skeletal muscle tissue.
机译:目的:广泛用于人类营养和牲畜生产的大豆是异黄酮的丰富来源。除了雌激素或抗雌激素作用外,异黄酮还建议通过抑制蛋白酪氨酸激酶(例如生长因子受体)来影响细胞生长。因此,进行本体外研究以确定染料木黄酮和大豆苷元是否影响猪骨骼肌细胞培养物中生长因子受体(IGF-1受体和EGF受体)及其相关生长因子的mRNA表达。设计:首先,我们使用实时荧光定量PCR检测了IGF-I,IGF-II,EGF,IGF-I受体和EGF受体在增殖和分化猪骨骼肌细胞培养物中的基础mRNA表达。其次,我们在无血清培养基(n = 3)中,在26小时内测量了0(对照),1、10、100 microM染料木黄酮或大豆苷元处理的这些细胞培养物中mRNA表达的变化。结果:与猪肌肉细胞培养的增殖期相比,分化过程中IGF-I的mRNA表达略有降低,而IGF-II和EGF的转录本浓度却升高。 IGF-1受体转录物倾向于增加,而EGF受体mRNA表达从增殖到分化保持不变。 Genistein和黄豆苷元分别为1 microM和10 microM对这些基因的mRNA表达没有影响,无论是在增殖细胞还是在分化细胞中。但是,高浓度异黄酮(100 microM)降低了IGF-I受体和所检测的生长因子的mRNA表达。结论:本研究证实了IGF和EGF系统在骨骼肌细胞培养物的增殖和分化中的作用,特别是在无血清培养条件下。此外,这项体外研究的结果表明,异黄酮对猪骨骼肌组织中IGF和EGF相关基因表达的饮食消耗(1和10 microM)所产生的浓度没有影响。染料木黄酮和黄豆苷元在高浓度(100 microM)下会降低IGF-I受体的mRNA表达和所检测的生长因子,因此可能会改变它们在骨骼肌组织中的自分泌和旁分泌作用。

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