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首页> 外文期刊>Rasayan Journal of Chemistry >INHIBITORY OF α-GLUCOSIDASE AND MOLECULAR DOCKING OF WHITE TEA POLYPHENOL (Camellia sinensis): COMPARISON OF SEVERAL SOLVENT MODIFICATIONS AND CHEMOMETRICS APPROACH
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INHIBITORY OF α-GLUCOSIDASE AND MOLECULAR DOCKING OF WHITE TEA POLYPHENOL (Camellia sinensis): COMPARISON OF SEVERAL SOLVENT MODIFICATIONS AND CHEMOMETRICS APPROACH

机译:白茶多酚(Camellia Sinensis)α-葡萄糖苷酶和分子对接的抑制作用:几种溶剂改性和化学计量方法的比较

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Diabetes type 2 is a metabolic disease with an increasing prevalence. White tea is produced from Camellia sinensis L. Kuntze, has a high content of phenolic compounds, and has the potential to inhibit the enzyme α-glucosidase. The study was designed to study variations of solvent modification on total phenolic content (TPC) levels, total flavonoid content (TFC), and in vitro inhibitory effects. Modification of solvents as independent variables includes cold water, hot water, ethanol, cold citric acid, and hot citric acid. Ethanol solvent has the highest TPC and TFC content. Cold citric acid can increase TPC, TFC, and α-glucosidase inhibition compared to cold water. The smallest α-glucosidase IC50 value was found in ethanol solvent followed by cold citric acid. Principle component analysis (PCA) and cluster analysis (CA) indicated that ethanol and cold citric acid solvents had the highest similarity, and the TPC response was negatively correlated with IC50 α-glucosidase. In silico studies using molecular docking, the approach showed a strong bond between the catechins and the α-glucosidase active site. In conclusion, the type of solvent in the extraction process affects TPC, TFC, and IC50 α-glucosidase. Modifying acid solvents in the extraction of white tea can be considered a potential opportunity for further development.
机译:糖尿病2型是一种代谢疾病,普遍越来越普遍。白茶是由山茶花Sinensis L. Kuntze生产的,具有高含量的酚类化合物,并且具有抑制酶α-葡糖苷酶的可能性。该研究旨在研究总酚类含量(TPC)水平,总黄酮含量(TFC)和体外抑制作用的溶剂改性的变化。作为独立变量的溶剂改性包括冷水,热水,乙醇,冷柠檬酸和热柠檬酸。乙醇溶剂具有最高的TPC和TFC含量。与冷水相比,冷柠檬酸可以增加TPC,TFC和α-葡糖苷酶抑制。在乙醇溶剂中发现最小的α-葡糖苷酶IC50值,然后发现冷柠檬酸。原理成分分析(PCA)和聚类分析(CA)表明乙醇和冷柠檬酸溶剂具有最高的相似性,并且TPC响应与IC50α-葡糖苷酶负相关。在使用分子对接的硅研究中,该方法在儿茶素和α-葡糖苷酶活性位点之间显示出强粘合。总之,提取过程中溶剂的类型影响TPC,TFC和IC50α-葡糖苷酶。在萃取白茶中改性酸性溶剂可以被认为是进一步发展的潜在机会。

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