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感染交叉点上的免疫代谢:宿主与病原体的机制及系统层面视角

Immunometabolism at the Crossroads of Infection: Mechanistic and Systems-Level Perspectives from Host and Pathogen.

作者信息

Malla Sunayana, Shahreen Nabia, Saha Rajib

机构信息

Chemical and Biomolecular Engineering, University of Nebraska-Lincoln, Lincoln, NE, United States of America.

出版信息

ArXiv. 2025 Jun 2:arXiv:2506.02236v1.

Abstract

The emerging field of immunometabolism has underscored the central role of metabolic pathways in orchestrating immune cell function. Far from being passive background processes, metabolic activities actively regulate key immune responses. Fundamental pathways such as glycolysis, the tricarboxylic acid (TCA) cycle, and oxidative phosphorylation critically shape the behavior of immune cells, influencing macrophage polarization, T cell activation, and dendritic cell function. In this review, we synthesize recent advances in immunometabolism, with a focus on the metabolic mechanisms that govern the responses of both innate and adaptive immune cells to bacterial, viral, and fungal pathogens. Drawing on experimental, computational, and integrative methodologies, we highlight how metabolic reprogramming contributes to host defense in response to infection. These findings reveal new opportunities for therapeutic intervention, suggesting that modulation of metabolic pathways could enhance immune function and improve pathogen clearance.

摘要

免疫代谢这一新兴领域突出了代谢途径在协调免疫细胞功能中的核心作用。代谢活动绝非被动的背景过程,而是积极调控关键的免疫反应。诸如糖酵解、三羧酸(TCA)循环和氧化磷酸化等基本途径对免疫细胞的行为起着关键塑造作用,影响巨噬细胞极化、T细胞活化和树突状细胞功能。在本综述中,我们综合了免疫代谢的最新进展,重点关注调控先天免疫细胞和适应性免疫细胞对细菌、病毒和真菌病原体反应的代谢机制。借助实验、计算和综合方法,我们强调了代谢重编程如何有助于宿主应对感染时的防御。这些发现揭示了治疗干预的新机会,表明调节代谢途径可增强免疫功能并改善病原体清除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c673/12155051/514e935c1ac5/nihpp-2506.02236v1-f0002.jpg

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