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Anti-diabetic functions of soy isoflavone genistein: mechanisms underlying its effects on pancreatic beta-cell function

机译:大豆异黄酮金雀异黄素的抗糖尿病功能:其对胰腺β细胞功能的潜在作用机制

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摘要

Type 2 diabetes is a result of chronic insulin resistance and loss of functional pancreatic beta-cell mass. Strategies to preserve beta-cell mass and a greater understanding of the mechanisms underlying beta-cell turnover are needed to prevent and treat this devastating disease. Genistein, a naturally occurring soy isoflavone, is reported to have numerous health benefits attributed to multiple biological functions. Over the past 10 years, numerous studies have demonstrated that genistein has anti-diabetic effects, in particular, direct effects on beta-cell proliferation, glucose-stimulated insulin secretion and protection against apoptosis, independent of its functions as an estrogen receptor agonist, antioxidant, or tyrosine kinase inhibitor. Effects are structure-specific and not common to all flavonoids. While there are limited data on the effects of genistein consumption in humans with diabetes, there are a plethora of animal and cell-culture studies that demonstrate a direct effect of genistein on beta-cells at physiologically relevant concentrations (<10 mu M). The effects appear to involve cAMP/PKA signaling and there are some studies that suggest an effect on epigenetic regulation of gene expression. This review focuses on the antidiabetic effects of genistein in both in vitro and in vivo models and potential mechanisms underlying its direct effects on beta-cells.
机译:2型糖尿病是慢性胰岛素抵抗和功能性胰腺β细胞量减少的结果。需要预防和治疗这种破坏性疾病的策略,以保持β细胞的质量,并更好地理解潜在的β细胞更新机制。金雀异黄素是一种天然存在的大豆异黄酮,据报道具有多种生物学功能,可带来许多健康益处。在过去的十年中,大量研究表明,金雀异黄素具有抗糖尿病作用,特别是对β细胞增殖,葡萄糖刺激的胰岛素分泌和对凋亡的保护具有直接作用,而与它作为雌激素受体激动剂,抗氧化剂的功能无关或酪氨酸激酶抑制剂。效果是特定于结构的,并非对所有类黄酮都相同。尽管关于染料木黄酮摄入对糖尿病人的影响的数据有限,但有大量的动物和细胞培养研究表明,在生理相关浓度(<10μM)下,染料木黄酮对β细胞具有直接作用。这种作用似乎涉及cAMP / PKA信号传导,并且有一些研究表明对基因表达的表观遗传调控有影响。这篇综述着重于在体外和体内模型中染料木黄酮的抗糖尿病作用以及对β细胞产生直接作用的潜在机制。

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