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硒蛋氨酸缓解 DON 诱导的氧化应激 通过调节小肠上皮细胞中的 Keap1/Nrf2 信号通路

Selenomethionine Alleviates DON-Induced Oxidative Stress Modulating Keap1/Nrf2 Signaling in the Small Intestinal Epithelium.

机构信息

College of Animal Science, South China Agricultural University/Guangdong Laboratory for Lingnan Modern Agriculture/Guangdong Provincial Key Laboratory of Animal Nutrition Control/National Engineering Research Center for Breeding Swine Industry, Guangzhou 510642, China.

HenryFok School of Biology and Agriculture, Shaoguan University, Shaoguan 512005, China.

出版信息

J Agric Food Chem. 2023 Jan 11;71(1):895-904. doi: 10.1021/acs.jafc.2c07885. Epub 2022 Dec 19.

Abstract

The small intestinal epithelium is regulated in response to various beneficial or harmful environmental information. Deoxynivalenol (DON), a mycotoxin widely distributed in cereal-based feeds, induces oxidative stress damage in the intestine due to the mitochondrial stress. As a functional nutrient, selenomethionine (Se-Met) is involved in synthesizing several antioxidant enzymes, yet whether it can replenish the intestinal epithelium upon DON exposure remains unknown. Therefore, the model C57BL/6 mice and the model MODE-K cells were treated with l-Se-Met and DON alone or in combination to confirm the status of intestinal stem cell (ISC)-driven epithelial regeneration. The results showed that 0.1 mg/kg body weight (BW) Se-Met reinstated the growth performance and integrity of jejunal structure and barrier function in DON-challenged mice. Moreover, Lgr5 ISCs and PCNA mitotic cells in crypts were prominently increased by Se-Met in the presence of DON, concomitant with a significant increase in absorptive cells, goblet cells, and Paneth cells. Simultaneously, crypt-derived jejunal organoids from the Se-Met + DON group exhibited more significant growth advantages . Furthermore, Se-Met-stimulated Keap1/Nrf2-dependent antioxidant system (T-AOC and GSH-Px) to inhibit the accumulation of ROS and MDA in the jejunum and serum. Moreover, Se-Met failed to rescue the DON-triggered impairment of cell antioxidant function after Nrf2 perturbation using its specific inhibitor ML385 in MODE-K cells. In conclusion, Se-Met protects ISC-driven intestinal epithelial integrity against DON-induced oxidative stress damage by modulating Keap1/Nrf2 signaling.

摘要

小肠上皮细胞会对各种有益或有害的环境信息做出调节。脱氧雪腐镰刀菌烯醇(DON)是一种广泛存在于谷物类饲料中的真菌毒素,由于其对线粒体的应激作用,会诱导肠道发生氧化应激损伤。作为一种功能性营养素,硒代蛋氨酸(Se-Met)参与合成多种抗氧化酶,然而,其是否能在 DON 暴露时补充肠道上皮细胞尚不清楚。因此,本研究使用 C57BL/6 模型小鼠和 MODE-K 细胞模型,单独或联合使用 l-Se-Met 和 DON 处理,以确认肠道干细胞(ISC)驱动的上皮细胞再生状态。结果表明,0.1mg/kg 体重(BW)的 Se-Met 可恢复 DON 处理的小鼠的生长性能以及空肠结构和屏障功能的完整性。此外,在 DON 存在的情况下,Se-Met 可显著增加隐窝中的 Lgr5 ISC 和 PCNA 有丝分裂细胞,同时吸收细胞、杯状细胞和潘氏细胞也显著增加。同时,来自 Se-Met + DON 组的隐窝衍生的空肠类器官表现出更显著的生长优势。此外,Se-Met 刺激 Keap1/Nrf2 依赖性抗氧化系统(T-AOC 和 GSH-Px)抑制了空肠和血清中 ROS 和 MDA 的积累。此外,在 MODE-K 细胞中使用其特异性抑制剂 ML385 干扰 Nrf2 后,Se-Met 未能挽救 DON 触发的细胞抗氧化功能损伤。总之,Se-Met 通过调节 Keap1/Nrf2 信号通路来保护 ISC 驱动的肠道上皮完整性,防止 DON 诱导的氧化应激损伤。

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