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山竹果皮提取物通过激活NRF2/HO-1、恢复肠道屏障完整性和调节肠道微生物群减轻百草枯诱导的肝脏氧化应激。

Mangosteen Pericarp Extract Mitigates Diquat-Induced Hepatic Oxidative Stress by NRF2/HO-1 Activation, Intestinal Barrier Integrity Restoration, and Gut Microbiota Modulation.

作者信息

Huang Weichen, Lv Yujie, Zou Chenhao, Ge Chaoyue, Zhan Shenao, Shen Xinyu, Wu Lianchi, Wang Xiaoxu, Yuan Hongmeng, Lin Gang, Yu Dongyou, Liu Bing

机构信息

Zhejiang Key Laboratory of Nutrition and Breeding for High-Quality Animal Products, College of Animal Sciences, Zhejiang University, Hangzhou 310058, China.

ZJU-Xinchang Joint Innovation Centre (TianMu Laboratory), Gaochuang Hi-Tech Park, Shaoxing 312500, China.

出版信息

Antioxidants (Basel). 2025 Aug 25;14(9):1045. doi: 10.3390/antiox14091045.

Abstract

Poultry production exposes birds to diverse environmental and physiological stressors that disrupt redox balance, impair gut-liver axis function, and undermine health and productivity. This study investigated the hepatoprotective and antioxidative effects of mangosteen pericarp extract (MPE) in an experimental model of diquat-induced oxidative stress in laying hens. A total of 270 Hy-Line White laying hens were randomly assigned to three groups: control group (CON), diquat-challenged group (DQ), and MEP intervention with diquat-challenged group (MQ), with six replicates of 15 birds each. The results showed that MPE supplementation effectively mitigated the hepatic oxidative damage caused by diquat, as evidenced by the increased ALT and AST activity, improved lipid metabolism, and reduced hepatic fibrosis. Mechanistically, MPE activated the NRF2/HO-1 antioxidant pathway, thus enhancing the liver's ability to counteract ROS-induced damage and reducing lipid droplet accumulation in liver tissue. MPE supplementation restored intestinal barrier integrity by upregulating tight junction protein expression (Occludin-1 and ZO-1), enhancing MUC-2 expression, and thereby decreasing gut microbiota-derived LPS transferring from the intestine. Additionally, MPE also modulated gut microbiota composition by enriching beneficial bacterial genera such as and while suppressing the growth of potentially harmful taxa (e.g., and ). Fecal microbiota transplantation (FMT) from MPE-treated donors into diquat-exposed recipients reproduced these beneficial effects, further highlighting the role of gut microbiota modulation in mediating MPE's systemic protective actions. Together, these findings demonstrated that MPE alleviated DQ-induced liver injury and oxidative stress through a combination of antioxidant activity, protection of intestinal barrier function, and modulation of gut microbiota, positioning MPE as a promising natural strategy for mitigating oxidative stress-related liver damage by regulating the gut microbiota and gut-liver axis in poultry.

摘要

家禽生产使禽类面临各种环境和生理应激源,这些应激源会破坏氧化还原平衡、损害肠-肝轴功能,并损害健康和生产力。本研究在双喹啉诱导的蛋鸡氧化应激实验模型中,研究了山竹果皮提取物(MPE)的肝脏保护和抗氧化作用。总共270只海兰白蛋鸡被随机分为三组:对照组(CON)、双喹啉挑战组(DQ)和双喹啉挑战加MPE干预组(MQ),每组6个重复,每个重复15只鸡。结果表明,补充MPE可有效减轻双喹啉引起的肝脏氧化损伤,这表现为谷丙转氨酶(ALT)和谷草转氨酶(AST)活性增加、脂质代谢改善以及肝纤维化减轻。从机制上讲,MPE激活了核因子E2相关因子2(NRF2)/血红素加氧酶-1(HO-1)抗氧化途径,从而增强了肝脏抵抗活性氧(ROS)诱导损伤的能力,并减少了肝组织中的脂滴积累。补充MPE通过上调紧密连接蛋白表达(闭合蛋白-1和紧密连接蛋白-1)、增强黏蛋白-2(MUC-2)表达,从而减少肠道微生物群衍生的脂多糖从肠道转移,恢复了肠道屏障完整性。此外,MPE还通过富集有益细菌属(如 和 )同时抑制潜在有害类群(如 和 )的生长来调节肠道微生物群组成。将MPE处理的供体的粪便微生物群移植(FMT)到双喹啉暴露的受体中重现了这些有益效果,进一步突出了肠道微生物群调节在介导MPE的全身保护作用中的作用。总之,这些发现表明,MPE通过抗氧化活性、保护肠道屏障功能和调节肠道微生物群的组合减轻了双喹啉诱导的肝损伤和氧化应激,将MPE定位为通过调节家禽肠道微生物群和肠-肝轴来减轻氧化应激相关肝损伤的一种有前景的天然策略。

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