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慢性炎症与疾病进展中的宿主源性细胞毒性因子

Host-Derived Cytotoxic Agents in Chronic Inflammation and Disease Progression.

机构信息

Medical Faculty, Institute of Medical Physics and Biophysics, Leipzig University, Härtelstr. 16-18, 04107 Leipzig, Germany.

出版信息

Int J Mol Sci. 2023 Feb 3;24(3):3016. doi: 10.3390/ijms24033016.

Abstract

At inflammatory sites, cytotoxic agents are released and generated from invading immune cells and damaged tissue cells. The further fate of the inflammation highly depends on the presence of antagonizing principles that are able to inactivate these host-derived cytotoxic agents. As long as the affected tissues are well equipped with ready-to-use protective mechanisms, no damage by cytotoxic agents occurs and resolution of inflammation is initiated. However, long-lasting and severe immune responses can be associated with the decline, exhaustion, or inactivation of selected antagonizing principles. Hence, cytotoxic agents are only partially inactivated and contribute to damage of yet-unperturbed cells. Consequently, a chronic inflammatory process results. In this vicious circle of permanent cell destruction, not only novel cytotoxic elements but also novel alarmins and antigens are liberated from affected cells. In severe cases, very low protection leads to organ failure, sepsis, and septic shock. In this review, the major classes of host-derived cytotoxic agents (reactive species, oxidized heme proteins and free heme, transition metal ions, serine proteases, matrix metalloproteases, and pro-inflammatory peptides), their corresponding protective principles, and resulting implications on the pathogenesis of diseases are highlighted.

摘要

在炎症部位,细胞毒性物质由入侵的免疫细胞和受损的组织细胞释放和产生。炎症的进一步发展在很大程度上取决于是否存在拮抗原则,这些原则能够使这些宿主来源的细胞毒性物质失活。只要受影响的组织配备了现成的保护机制,就不会发生细胞毒性物质的损伤,炎症就会开始消退。然而,持久和严重的免疫反应可能与特定拮抗原则的下降、衰竭或失活有关。因此,细胞毒性物质只是部分失活,并导致未受干扰的细胞受损。因此,会导致慢性炎症过程。在这个永久细胞破坏的恶性循环中,不仅有新的细胞毒性物质,还有新的警报素和抗原从受影响的细胞中释放出来。在严重的情况下,极低的保护会导致器官衰竭、败血症和感染性休克。在这篇综述中,强调了宿主来源的细胞毒性物质(活性物质、氧化血红素蛋白和游离血红素、过渡金属离子、丝氨酸蛋白酶、基质金属蛋白酶和促炎肽)的主要类别、它们相应的保护原则以及对疾病发病机制的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d6f/9918110/be7da359d475/ijms-24-03016-g001.jpg

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