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The Effects of Major Mushroom Bioactive Compounds on Mechanisms That Control Blood Glucose Level

机译:主要蘑菇生物活性化合物对控制血糖水平的机制的影响

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摘要

Diabetes mellitus is a life-threatening multifactorial metabolic disorder characterized by high level of glucose in the blood. Diabetes and its chronic complications have a significant impact on human life, health systems, and countries’ economies. Currently, there are many commercial hypoglycemic drugs that are effective in controlling hyperglycemia but with several serious side-effects and without a sufficient capacity to significantly alter the course of diabetic complications. Over many centuries mushrooms and their bioactive compounds have been used in the treatment of diabetes mellitus, especially polysaccharides and terpenoids derived from various mushroom species. This review summarizes the effects of these main mushroom secondary metabolites on diabetes and underlying molecular mechanisms responsible for lowering blood glucose. In vivo and in vitro data revealed that treatment with mushroom polysaccharides displayed an anti-hyperglycemic effect by inhibiting glucose absorption efficacy, enhancing pancreatic β-cell mass, and increasing insulin-signaling pathways. Mushroom terpenoids act as inhibitors of α-glucosidase and as insulin sensitizers through activation of PPARγ in order to reduce hyperglycemia in animal models of diabetes. In conclusion, mushroom polysaccharides and terpenoids can effectively ameliorate hyperglycemia by various mechanisms and can be used as supportive candidates for prevention and control of diabetes in the future.
机译:糖尿病是一种威胁危及生命的多因素代谢紊乱,其特征在于血液中的高水平葡萄糖。糖尿病及其慢性并发症对人类生命,卫生系统和国家经济产生重大影响。目前,有许多商业低血糖药物可有效控制高血糖,但具有几种严重的副作用,并且没有足够的能力显着改变糖尿病并发症的过程。在许多几个世纪上的蘑菇和他们的生物活性化合物已经用于治疗糖尿病,特别是多糖和衍生自各种蘑菇物种的三萜类化合物。本综述总结了这些主要蘑菇次生代谢产物对糖尿病和负责降低血糖的潜在分子机制的影响。体内和体外数据显示,通过抑制葡萄糖吸收功效,增强胰腺β-细胞质量,增加胰岛素信号通路,患有蘑菇多糖的治疗效果呈现抗高血糖效果。蘑菇萜类化剂作为α-葡萄糖苷酶的抑制剂,通过激活PPARγ作为胰岛素敏化剂,以减少糖尿病动物模型中的高血糖症。总之,蘑菇多糖和三萜酸可以通过各种机制有效改善高血糖症,并可作为预防和控制未来糖尿病的支持性候选者。

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