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.果实的抗氧化活性及体外抗糖化作用

Antioxidant Activity and In Vitro Antiglycation of the Fruit of .

作者信息

Muñiz Alethia, Garcia Efren, Gonzalez Daphne, Zuñiga Lizette

机构信息

CONACYT-IPICYT/CIIDZA, Camino a la Presa de San José 2055, Col. Lomas 4 Sección, CP 78216, San Luis Potosí, SLP, Mexico.

Laboratorio de Química Supramolecular y Nanociencias, Instituto Politécnico Nacional, Acueducto s/n, Barrio la Laguna Ticomán, CP 07340, Ciudad de México, Mexico.

出版信息

Evid Based Complement Alternat Med. 2018 Aug 29;2018:5613704. doi: 10.1155/2018/5613704. eCollection 2018.

Abstract

Hyperglycemia in diabetes mellitus causes irreversible life-threatening micro- and macrovascular complications. There is evidence that the glycation reaction leads to a chemical modification of the proteins contributing to the complications of diabetes. It is known that advanced glycation end products (AGEs) are formed by glycation and oxidation reactions called glycoxidation. CML, a nonfluorescent AGE, has become a biomarker of glycoxidative damage; other AGEs appear to induce oxidative stress, which results in cytotoxicity. To determine antioxidant activity, the FRAP, DPPH, and TEAC tests were used, as well as the polyphenols content using Folin-Ciocalteu's method. To evaluate the antiglycation activity, the BSA/glucose system was used, and the fructosamine concentration, protein carbonyl content, thiol, and CML groups were determined. The results obtained show that the hexane extract of the fruit of (CFH) effectively inhibits the glycation reaction, in addition to increasing the thiol groups and decreasing levels of fructosamine, protein carbonyl, and CML. In addition, CFH presented significant antioxidant activity. CFH inhibits the glycation reaction; therefore, it can help prevent complications related to AGEs in diabetes mellitus; it also reduces oxidative stress and is effective in protecting proteins from oxidative damage.

摘要

糖尿病中的高血糖会引发不可逆转的危及生命的微血管和大血管并发症。有证据表明,糖基化反应会导致蛋白质发生化学修饰,进而引发糖尿病并发症。已知晚期糖基化终产物(AGEs)是由糖基化和氧化反应(即糖氧化反应)形成的。CML是一种非荧光性AGE,已成为糖氧化损伤的生物标志物;其他AGEs似乎会诱导氧化应激,从而导致细胞毒性。为了测定抗氧化活性,使用了FRAP、DPPH和TEAC测试,以及采用福林-西奥尔特法测定多酚含量。为了评估抗糖基化活性,使用了BSA/葡萄糖系统,并测定了果糖胺浓度、蛋白质羰基含量、巯基和CML基团。所得结果表明,[具体植物名称]果实的己烷提取物(CFH)除了能增加巯基并降低果糖胺、蛋白质羰基和CML的水平外,还能有效抑制糖基化反应。此外,CFH具有显著的抗氧化活性。CFH抑制糖基化反应;因此,它有助于预防糖尿病中与AGEs相关的并发症;它还能减轻氧化应激,并有效保护蛋白质免受氧化损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3139/6136511/06cdc3c7d056/ECAM2018-5613704.001.jpg

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