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红细胞 DAMPs 与炎症。

Red cell DAMPs and inflammation.

机构信息

Hematology Center, School of Medicine, University of Campinas-UNICAMP, Barão Geraldo, Campinas, Sao Paulo, 13083-970, Brazil.

出版信息

Inflamm Res. 2016 Sep;65(9):665-78. doi: 10.1007/s00011-016-0955-9. Epub 2016 Jun 1.

Abstract

Intravascular hemolysis, or the destruction of red blood cells in the circulation, can occur in numerous diseases, including the acquired hemolytic anemias, sickle cell disease and β-thalassemia, as well as during some transfusion reactions, preeclampsia and infections, such as those caused by malaria or Clostridium perfringens. Hemolysis results in the release of large quantities of red cell damage-associated molecular patterns (DAMPs) into the circulation, which, if not neutralized by innate protective mechanisms, have the potential to activate multiple inflammatory pathways. One of the major red cell DAMPs, heme, is able to activate converging inflammatory pathways, such as toll-like receptor signaling, neutrophil extracellular trap formation and inflammasome formation, suggesting that this DAMP both activates and amplifies inflammation. Other potent DAMPs that may be released by the erythrocytes upon their rupture include heat shock proteins (Hsp), such as Hsp70, interleukin-33 and Adenosine 5' triphosphate. As such, hemolysis represents a major inflammatory mechanism that potentially contributes to the clinical manifestations that have been associated with the hemolytic diseases, such as pulmonary hypertension and leg ulcers, and likely plays a role in specific complications of sickle cell disease such as endothelial activation, vaso-occlusive processes and tissue injury.

摘要

血管内溶血,或循环中红细胞的破坏,可发生于多种疾病,包括获得性溶血性贫血、镰状细胞病和β-地中海贫血,以及某些输血反应、子痫前期和感染,如疟疾或产气荚膜梭菌引起的感染。溶血导致大量与红细胞损伤相关的分子模式(DAMPs)释放到循环中,如果不能被先天保护机制中和,就有可能激活多种炎症途径。一种主要的红细胞 DAMPs,血红素,能够激活趋同的炎症途径,如 Toll 样受体信号、中性粒细胞胞外诱捕网形成和炎性小体形成,这表明这种 DAMPs 既能激活炎症,又能放大炎症。其他可能在红细胞破裂时释放的有效 DAMPs 包括热休克蛋白(Hsp),如 Hsp70、白细胞介素-33 和三磷酸腺苷。因此,溶血代表一种主要的炎症机制,可能导致与溶血性疾病相关的临床表现,如肺动脉高压和腿部溃疡,并可能在镰状细胞病的特定并发症中发挥作用,如内皮细胞激活、血管阻塞过程和组织损伤。

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