肠道应激损伤与色氨酸代谢对其调控作用的研究进展
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1.军事医学研究院实验动物中心;2.北京医药健康科技发展中心

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全军实验动物专项课题(SYDW[2021]06);军事医学研究院青年人才基金(AMMS-QNPY-2022-019)


Regulation of tryptophanmetabolism instress-relatedgastrointestinaldisorders
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1.Laboratory Animal Center of the Academy of Military Medical Sciences;2.Beijing pharmaceutical health technology development center

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Funded by Special Topics on Laboratory Animals in the Army (SYDW[2021]06);Young Talent Fund of the Academy of Military Medical Sciences(AMMS-QNPY-2022-019)

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    摘要:

    肠道是动物体内最大的免疫器官,也是机体主要的消化、吸收、代谢场所,维持肠道稳态健康是维护动物机体健康的重要保障。研究表明应激易使肠屏障受损、通透性增加、肠道功能紊乱,引发肠道应激损伤。色氨酸是哺乳动物的一种必需氨基酸,具有改变肠道菌群组成与代谢,提高肠道黏膜屏障的功能,在维持肠道稳态方面发挥着重要作用。应激状态下大脑和肠道组织色氨酸及其代谢产物含量的异常,提示色氨酸可能在应激反应中具有重要作用。因此,深入探究应激因素的致病机制,揭示色氨酸及其代谢产物对应激动物肠道功能紊乱的调节作用,可为肠道应激损伤提供安全便捷有效的营养防治措施。本文主要就目前应激机制研究进展、肠道应激损伤与色氨酸代谢对肠应激损伤调控作用的研究现状及最新研究进展进行综述。

    Abstract:

    Exposure to different types of stressors has been known to increase susceptibility to diseases and disrupting the body homoeostasis. It is necessary for healthy animals and humans to maintain the physiological functions under stressful conditions. Intestine, the largest immune and metabolicsite, is important for animal health. The integrity of mucosal barrier and function are fundamental to protect the health of the intestine. It is reported that stress has profound effects on the gastrointestinal tract including alterations in gut permeability,intestinal barrier and homeostasis. Tryptophan, a functional essential amino acid,that alters the gut microbiota, regulates intestine structural and functional changes,thus contributing to host physiology and metabolism. Tryptophan metabolism perturbations and its metabolites alterations in brain and intestinal tissues during stress suggest that tryptophan may play an important role in stress response. We therefore review the literature on the underlying mechanisms of stress with diseases, and the role of tryptophan metabolic pathway in the regulation of gut homeostasis, with particular focus on functional bowel disorders and their relationship to stress, and laid a theoretical foundation for the treatment of tryptophan in stress-related intestine diseases.

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  • 收稿日期:2023-05-15
  • 最后修改日期:2024-03-12
  • 录用日期:2024-03-18
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