基础医学与临床 ›› 2026, Vol. 46 ›› Issue (8): 1144-1148.doi: 10.16352/j.issn.1001-6325.2026.08.1144

• 短篇综述 • 上一篇    下一篇

蛋白质乳酰化修饰在脓毒症中调控机制的研究进展

袁静怡, 张旖垚, 刘长征*   

  1. 中国医学科学院北京协和医学院 基础医学研究所 生物化学与分子生物学系 疑难重症及罕见病全国重点实验室,北京 100005
  • 收稿日期:2026-03-31 修回日期:2026-04-28 发布日期:2026-07-22
  • 通讯作者: *cz-liu@ibms.pumc.edu.cn
  • 基金资助:
    疑难重症及罕见病全国重点实验室自主研究课题(2025-I-PY-003)

Advances in the regulatory mechanisms of protein lactylation in sepsis

YUAN Jingyi, ZHANG Yiyao, LIU Changzheng*   

  1. State Key Laboratory of Complex, Severe, and Rare Diseases, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100005, China
  • Received:2026-03-31 Revised:2026-04-28 Published:2026-07-22
  • Contact: *cz-liu@ibms.pumc.edu.cn

摘要: 脓毒症是一种伴随免疫功能紊乱、血管稳态失调和代谢重编程的炎症综合征,乳酸异常积累是其关键特征之一。乳酸介导的蛋白质乳酰化修饰可通过调控免疫细胞活化、炎症因子表达、代谢途径和细胞程序性死亡等参与脓毒症的疾病进程。乳酰化通过影响炎症反应与免疫功能,介导代谢状态重塑,并进一步调控血管内皮功能,在脓毒症进程中发挥重要作用。尽管既往研究提示乳酰化在脓毒症相关炎症反应、代谢紊乱及器官功能损伤中具有重要调控作用,但整体调控框架尚未完全建立,且作为潜在干预靶点的理论基础仍需进一步夯实。本文围绕乳酰化在炎症与免疫、代谢重编程、血管稳态及细胞死亡中的作用机制进行综述,以期为相关机制研究及靶向干预提供理论依据。

关键词: 脓毒症, 乳酰化, 代谢重编程, 表观遗传调控, 免疫调节

Abstract: Sepsis, a life-threatening inflammatory syndrome, involves immune dysfunction, vascular homeostasis imbalance, and metabolic reprogramming. Abnormal lactate accumulation is a hallmark metabolic feature. Emerging evidence demonstrates that lactate-mediated protein lactylation contributes to sepsis progression by regulating immune cell activation, inflammatory factor expression, metabolic pathways, and cell death. Specifically, lactylation modulates the release of inflammatory factors and immune cell activity, mediates metabolic state remodeling, and influences vascular endothelial function and programmed cell death, thereby playing a critical regulatory role in sepsis pathophysiology. Although current studies link lactylation to sepsis-related inflammation, metabolic disturbances, and organ dysfunction, its integrated regulatory framework during sepsis progression remains incompletely defined. Furthermore, the theoretical basis for targeting lactylation therapeutically requires further clarification. This review systematically summarizes the regulatory functions and molecular mechanisms of lactylation in sepsis, focusing on inflammation and immune responses, metabolic reprogramming, vascular homeostasis, and programmed cell death. Our aim is to indicate subsequent mechanistic investigations and the development of targeted therapeutic interventions.

Key words: sepsis, lactylation, metabolic reprogramming, epigenetic regulation, immune modulation

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