Department of Molecular Hematology, Sanquin Research and Landsteiner Laboratory, University of Amsterdam, Amsterdam.
Translational Metabolic Laboratory, Department of Laboratory Medicine, RadboudUMC, Nijmegen, The Netherlands.
Curr Opin Hematol. 2021 Nov 1;28(6):438-444. doi: 10.1097/MOH.0000000000000679.
Red blood cell (RBC) clearance has been studied for decades in many different pathologies, which has revealed different routes of RBC degradation, depending on the situation. This review summarizes the latest mechanistic insights on RBC clearance in different contexts; during homeostatic removal, immune-mediated destruction, and systemic inflammation.
Besides the recognition of a variety of potential 'eat me' signals on RBCs, recent evidence suggests that normal RBC degradation is driven by the increase of the adhesive properties of RBCs, mediating the retention in the spleen and leading to RBC hemolysis. Furthermore, immune-mediated degradation of RBCs seems to be fine-tuned by the balance between the density of the antigens expressed on RBCs and the presence of 'don't eat me' signals. Moreover, besides RBC clearance by macrophages, neutrophils seem to play a much more prominent role in immune-mediated RBC removal than anticipated. Lastly, RBC clearance during systemic inflammation appears to be driven by a combination of extreme macrophage activity in response to proinflammatory cytokines as well as direct damage of RBC by the inflammation or inflammatory agent.
Recent studies on RBC clearance have expanded our knowledge on their destruction in different contexts.
几十年来,人们一直在许多不同的病理情况下研究红细胞(RBC)的清除,这揭示了不同的 RBC 降解途径,具体取决于情况。本篇综述总结了在不同情况下 RBC 清除的最新机制见解,包括在稳态清除、免疫介导的破坏和全身炎症期间。
除了对 RBC 上存在多种潜在“吃我”信号的识别外,最近的证据表明,正常的 RBC 降解是由 RBC 黏附特性的增加驱动的,介导了 RBC 在脾脏中的滞留,并导致 RBC 溶血。此外,免疫介导的 RBC 降解似乎通过 RBC 上表达的抗原密度与“不要吃我”信号的存在之间的平衡来精细调节。此外,除了巨噬细胞清除 RBC 外,中性粒细胞在免疫介导的 RBC 清除中似乎比预期的发挥更重要的作用。最后,全身性炎症期间的 RBC 清除似乎是由炎症细胞因子引起的巨噬细胞极度活跃以及炎症或炎症介质对 RBC 的直接损伤共同驱动的。
最近关于 RBC 清除的研究扩展了我们对不同情况下 RBC 破坏的认识。