先天免疫对大分子平衡的感知

3区 医学 Q2 Medicine Advances in Immunology Pub Date : 2024-01-01 Epub Date: 2024-03-30 DOI:10.1016/bs.ai.2024.03.004
Kun Yang, Devon Jeltema, Nan Yan
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引用次数: 0

摘要

先天性免疫系统使用一套独特的种系编码的模式识别受体来识别分子模式,最初认为这是微生物入侵者独有的,被命名为病原体相关分子模式。后来,这一概念进一步发展,将组织损伤过程中宿主细胞产生的类似分子模式也包括在内,称为损伤相关分子模式。然而,最近在单基因炎症性疾病机理方面取得的进展突显了先天性免疫所监控的细胞功能的范围要广得多。在此,我们总结了在非感染或无菌环境下,当细胞中的大分子平衡被破坏时触发先天性免疫反应的几个例子。这些不断发展的传感机制扩大了先天性免疫识别的范围,使其不仅成为宿主防御的关键角色,也成为细胞平衡的看门人。受这些进展的启发,用于恢复细胞平衡和纠正免疫系统的治疗方法可能会产生深远的影响。
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Innate immune sensing of macromolecule homeostasis.

The innate immune system uses a distinct set of germline-encoded pattern recognition receptors to recognize molecular patterns initially thought to be unique to microbial invaders, named pathogen-associated molecular patterns. The concept was later further developed to include similar molecular patterns originating from host cells during tissue damage, known as damage-associated molecular patterns. However, recent advances in the mechanism of monogenic inflammatory diseases have highlighted a much more expansive repertoire of cellular functions that are monitored by innate immunity. Here, we summarize several examples in which an innate immune response is triggered when homeostasis of macromolecule in the cell is disrupted in non-infectious or sterile settings. These ever-growing sensing mechanisms expand the repertoire of innate immune recognition, positioning it not only as a key player in host defense but also as a gatekeeper of cellular homeostasis. Therapeutics inspired by these advances to restore cellular homeostasis and correct the immune system could have far-reaching implications.

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来源期刊
Advances in Immunology
Advances in Immunology 医学-免疫学
CiteScore
9.90
自引率
0.00%
发文量
13
期刊介绍: Advances in Immunology has provided students and researchers with the latest information in Immunology for over 50 years. You can continue to rely on Advances in Immunology to provide you with critical reviews that examine subjects of vital importance to the field through summary and evaluation of current knowledge and research. The articles stress fundamental concepts, but also evaluate the experimental approaches.
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