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绿原酸在控制氧化应激和炎症应激条件中的作用。

Role of Chlorogenic Acids in Controlling Oxidative and Inflammatory Stress Conditions.

作者信息

Liang Ningjian, Kitts David D

机构信息

Departments of Food, Nutrition and Health, the University of British Columbia, Vancouver, BC V6T-1Z4, Canada.

出版信息

Nutrients. 2015 Dec 25;8(1):16. doi: 10.3390/nu8010016.

Abstract

Chlorogenic acids (CGAs) are esters formed between caffeic and quinic acids, and represent an abundant group of plant polyphenols present in the human diet. CGAs have different subgroups that include caffeoylquinic, p-coumaroylquinic, and feruloyquinic acids. Results of epidemiological studies suggest that the consumption of beverages such as coffee, tea, wine, different herbal infusions, and also some fruit juices is linked to reduced risks of developing different chronic diseases. These beverages contain CGAs present in different concentrations and isomeric mixtures. The underlying mechanism(s) for specific health benefits attributed to CGAs involves mitigating oxidative stress, and hence the related adverse effects associated with an unbalanced intracellular redox state. There is also evidence to show that CGAs exhibit anti-inflammatory activities by modulating a number of important metabolic pathways. This review will focus on three specific aspects of the relevance of CGAs in coffee beverages; namely: (1) the relative composition of different CGA isomers present in coffee beverages; (2) analysis of in vitro and in vivo evidence that CGAs and individual isomers can mitigate oxidative and inflammatory stresses; and (3) description of the molecular mechanisms that have a key role in the cell signaling activity that underlines important functions.

摘要

绿原酸(CGAs)是咖啡酸和奎尼酸形成的酯类,是人类饮食中丰富的一类植物多酚。绿原酸有不同的亚组,包括咖啡酰奎尼酸、对香豆酰奎尼酸和阿魏酰奎尼酸。流行病学研究结果表明,饮用咖啡、茶、葡萄酒、不同的草药浸剂以及一些果汁等饮品与降低患不同慢性病的风险有关。这些饮品含有不同浓度和异构体混合物的绿原酸。绿原酸对健康有特定益处的潜在机制包括减轻氧化应激,从而减轻与细胞内氧化还原状态失衡相关的不良反应。也有证据表明,绿原酸通过调节一些重要的代谢途径发挥抗炎活性。本综述将聚焦于绿原酸在咖啡饮品中的相关性的三个具体方面,即:(1)咖啡饮品中不同绿原酸异构体的相对组成;(2)分析体外和体内证据,证明绿原酸及其单个异构体可减轻氧化和炎症应激;(3)描述在强调重要功能的细胞信号活动中起关键作用的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee7b/4728630/87e7200f1c36/nutrients-08-00016-g001.jpg

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