首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Inhibition of advanced glycation end product formation by medicinal plant extracts correlates with phenolic metabolites and antioxidant activity.
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Inhibition of advanced glycation end product formation by medicinal plant extracts correlates with phenolic metabolites and antioxidant activity.

机译:药用植物提取物对晚期糖基化终产物形成的抑制作用与酚类代谢产物和抗氧化活性有关。

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摘要

Nonenzymatic formation of advanced glycation end products (AGEs) is accelerated under hyperglycemic conditions characteristic of type 2 diabetes mellitus and contributes to the development of vascular complications. As such, inhibition of AGE formation represents a potential therapeutic target for the prevention and treatment of diabetic complications. In the present study, ethanolic extracts of 17 medicinal plants were assessed for inhibitory effects on in vitro AGE formation through fluorometric and immunochemical detection of fluorescent AGEs and N(epsilon)-(carboxymethyl)lysine adducts of albumin (CML-BSA), respectively. Most extracts inhibited fluorescent AGE formation with IC (50) values ranging from 0.4 to 38.6 microg/mL and all extracts reduced CML-BSA formation but to differing degrees. Results obtained through both methods were highly correlated. Antiglycation activities were positively correlated with total phenolic content, free radical scavenging activity and reduction in malonyldiadehyde levels following oxidation of low-density lipoprotein, but negatively correlated with lag time to formation of conjugated dienes. Together, these results provide evidence that antioxidant phenolic metabolites mediate the antiglycation activity of our medicinal plant collection, a relationship that likely extends to other medicinal and food plants.
机译:在具有2型糖尿病特征的高血糖情况下,高级糖基化终末产物(AGEs)的非酶形成会加速,并有助于血管并发症的发展。这样,对AGE形成的抑制代表了预防和治疗糖尿病并发症的潜在治疗靶标。在本研究中,通过分别对荧光AGEs和白蛋白的N(ε)-(羧甲基)赖氨酸加合物(CML-BSA)进行荧光检测和免疫化学检测,评估了17种药用植物的乙醇提取物对体外AGE形成的抑制作用。大多数提取物抑制荧光AGE形成,IC(50)值在0.4至38.6 microg / mL之间,所有提取物均降低CML-BSA形成,但程度不同。通过两种方法获得的结果高度相关。抗糖化活性与低密度脂蛋白氧化后的总酚含量,自由基清除活性和丙二酰二醛水平的降低呈正相关,但与形成共轭二烯的滞后时间呈负相关。总之,这些结果提供了证据,表明抗氧化剂酚类代谢物介导了我们药用植物集合的抗糖化活性,这种关系很可能扩展到其他药用植物和食用植物。

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