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疾病代谢的免疫学。

The immunology of sickness metabolism.

机构信息

University of Rijeka Faculty of Medicine, Rijeka, Croatia.

出版信息

Cell Mol Immunol. 2024 Sep;21(9):1051-1065. doi: 10.1038/s41423-024-01192-4. Epub 2024 Aug 6.

Abstract

Everyone knows that an infection can make you feel sick. Although we perceive infection-induced changes in metabolism as a pathology, they are a part of a carefully regulated process that depends on tissue-specific interactions between the immune system and organs involved in the regulation of systemic homeostasis. Immune-mediated changes in homeostatic parameters lead to altered production and uptake of nutrients in circulation, which modifies the metabolic rate of key organs. This is what we experience as being sick. The purpose of sickness metabolism is to generate a metabolic environment in which the body is optimally able to fight infection while denying vital nutrients for the replication of pathogens. Sickness metabolism depends on tissue-specific immune cells, which mediate responses tailored to the nature and magnitude of the threat. As an infection increases in severity, so do the number and type of immune cells involved and the level to which organs are affected, which dictates the degree to which we feel sick. Interestingly, many alterations associated with metabolic disease appear to overlap with immune-mediated changes observed following infection. Targeting processes involving tissue-specific interactions between activated immune cells and metabolic organs therefore holds great potential for treating both people with severe infection and those with metabolic disease. In this review, we will discuss how the immune system communicates in situ with organs involved in the regulation of homeostasis and how this communication is impacted by infection.

摘要

大家都知道感染会让人感到不适。虽然我们认为感染引起的代谢变化是一种病理现象,但实际上这是一个受到精细调控的过程的一部分,这个过程依赖于免疫系统和参与调节全身稳态的器官之间的组织特异性相互作用。免疫介导的稳态参数变化导致循环中营养物质的产生和摄取发生改变,从而改变关键器官的代谢率。这就是我们所说的疾病状态。疾病代谢的目的是产生一种代谢环境,使身体能够在抵抗感染的同时,剥夺病原体复制所需的重要营养物质,从而优化身体的抗感染能力。疾病代谢依赖于组织特异性免疫细胞,这些细胞介导的反应针对威胁的性质和程度进行了专门的调整。随着感染的严重程度增加,参与的免疫细胞的数量和类型以及受影响的器官的数量和类型也会增加,这决定了我们感到不适的程度。有趣的是,许多与代谢疾病相关的改变似乎与感染后观察到的免疫介导的变化重叠。因此,针对激活的免疫细胞和代谢器官之间的组织特异性相互作用涉及的过程具有很大的治疗严重感染患者和代谢疾病患者的潜力。在这篇综述中,我们将讨论免疫系统如何与参与调节稳态的器官进行原位通讯,以及这种通讯如何受到感染的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877a/11364700/5a0b1bbbbb92/41423_2024_1192_Fig1_HTML.jpg

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