研究报告

二肽AQ、SQ和IQ增强GES-1细胞对酒精损伤的抵抗能力

  • 李明亮 ,
  • 许锦珍 ,
  • 冯志远 ,
  • 李诒光 ,
  • 张卓然 ,
  • 刘丹 ,
  • 方磊 ,
  • 廖群 ,
  • 刘文颖 ,
  • 刘文君
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  • 1(中国食品发酵工业研究院有限公司, 北京市蛋白功能肽工程技术研究中心,北京,100015)
    2(江中药业股份有限公司,江西 南昌,330096)
硕士(刘文颖高级工程师和刘文君高级工程师为共同通信作者,E-mail:wenyingliu888@126.com;liuwenjun@crjz.com)

收稿日期: 2022-05-27

  修回日期: 2022-06-22

  网络出版日期: 2023-04-14

基金资助

宁夏回族自治区重点研发计划项目(2021BEG02027)

Enhancement of dipeptides AQ, SQ, and IQ on the resistance of GES-1 cells to alcohol damage

  • LI Mingliang ,
  • XU Jinzhen ,
  • FENG Zhiyuan ,
  • LI Yiguang ,
  • ZHANG Zhuoran ,
  • LIU Dan ,
  • FANG Lei ,
  • LIAO Qun ,
  • LIU Wenying ,
  • LIU Wenjun
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  • 1(China National Research Institute of Food and Fermentation Industries Co.Ltd., Beijing Engineering Research Center of Protein and Functional Peptides, Beijing 100015,China)
    2(Jiangzhong Pharmaceutical Co.Ltd., Nanchang 330096, China)

Received date: 2022-05-27

  Revised date: 2022-06-22

  Online published: 2023-04-14

摘要

部分食源性二肽具有良好的吸收特性以及生理活性,在功能食品的开发上具有强大的应用前景。该研究旨在阐明二肽AQ、SQ和IQ具有增强GES-1细胞对酒精损伤抵抗能力的作用。首先,该研究对GES-1细胞进行二肽预处理,之后,利用酒精建立细胞损伤模型;通过检测细胞存活率和细胞的乳酸脱氢酶释放量判断模型是否成立,通过检测细胞内ROS含量、抗氧化酶活力和氧化损伤标志物含量,评价二肽对细胞氧化应激的改善作用;通过检测细胞内紧密连接蛋白以及相关损伤标志物的蛋白表达水平,评价二肽对细胞屏障功能的增强作用。结果表明,上述3种二肽可以减轻细胞氧化应激,减少损伤标志物的表达水平并增加紧密连接蛋白的表达水平。该研究证明了上述3种二肽可以增强GES-1细胞抵抗酒精损伤的能力,在修复酒精性胃黏膜损伤,保护胃黏膜屏障功能方面具有一定的应用价值和潜力。

本文引用格式

李明亮 , 许锦珍 , 冯志远 , 李诒光 , 张卓然 , 刘丹 , 方磊 , 廖群 , 刘文颖 , 刘文君 . 二肽AQ、SQ和IQ增强GES-1细胞对酒精损伤的抵抗能力[J]. 食品与发酵工业, 2023 , 49(6) : 143 -148 . DOI: 10.13995/j.cnki.11-1802/ts.032471

Abstract

Some food-derived dipeptides have good absorption properties as well as physiological activities, which have powerful application prospects in the development of functional foods. To elucidate the role of dipeptides AQ, SQ, and IQ in enhancing the resistance of GES-1 cells to alcohol damage. Firstly, GES-1 cells were pretreated with dipeptide for 24 h, after which a cell injury model was established using alcohol; whether the model was established by detecting cell survival rate and lactate dehydrogenase release from cells, and the ameliorative effect of dipeptide on cellular oxidative stress was evaluated by detecting intracellular ROS content, antioxidant enzyme activity and oxidative damage marker content. The repair effect of dipeptides on cellular tight junctions was evaluated by detecting the protein expression levels of intracellular tight junction proteins as well as related damage markers. The results showed that the dipeptide could reduce the oxidative stress condition of cells and the expression of damage markers, thus increase the expression level of tight junction proteins. This study demonstrated that the above-mentioned dipeptides can enhance the ability of GES-1 cells to resist alcohol damage, and have certain application value and potential in repairing alcoholic gastric mucosal damage and protecting gastric mucosal barrier function.

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