Department of Medicine, Division of Rheumatology, Immunology and Allergy, Brigham and Women's Hospital, Harvard Medical School , Boston, MA, USA.
Department of Medicine, Division of Immunology, Boston Children's Hospital, Harvard Medical School , Boston, MA, USA.
Platelets. 2020 Aug 17;31(6):700-706. doi: 10.1080/09537104.2019.1693035. Epub 2019 Nov 21.
Histology of bone marrow routinely identifies megakaryocytes that enclose neutrophils and other hematopoietic cells, a phenomenon termed emperipolesis. Preserved across mammalian species and enhanced with systemic inflammation and platelet demand, the nature and significance of emperipolesis remain largely unexplored. Recent advances demonstrate that emperipolesis is in fact a distinct form of cell-in-cell interaction. Following integrin-mediated attachment, megakaryocytes and neutrophils both actively drive entry via cytoskeletal rearrangement. Neutrophils enter a vacuole termed the emperisome which then releases them directly into the megakaryocyte cytoplasm. From this surprising location, neutrophils fuse with the demarcation membrane system to pass membrane to circulating platelets, enhancing the efficiency of thrombocytogenesis. Neutrophils then egress intact, carrying megakaryocyte membrane and potentially other cell components along with them. In this review, we summarize what is known about this intriguing cell-in-cell interaction and discuss potential roles for emperipolesis in megakaryocyte, platelet and neutrophil biology.
骨髓组织学通常可识别包绕中性粒细胞和其他造血细胞的巨核细胞,这种现象称为“异噬现象”。异噬现象在哺乳动物中普遍存在,并可被系统性炎症和血小板需求增强,但其本质和意义在很大程度上仍未得到探索。最近的研究进展表明,异噬现象实际上是一种独特的细胞-细胞相互作用形式。在整合素介导的附着之后,巨核细胞和中性粒细胞都通过细胞骨架重排积极驱动进入。中性粒细胞进入一个称为“异噬体”的空泡,然后直接将其释放到巨核细胞质中。从中性粒细胞这个令人惊讶的位置,它们与界膜系统融合,将膜传递给循环中的血小板,从而提高血小板生成的效率。然后,中性粒细胞完整地离开,携带巨核细胞膜和潜在的其他细胞成分。在这篇综述中,我们总结了关于这种有趣的细胞-细胞相互作用的已知知识,并讨论了异噬现象在巨核细胞、血小板和中性粒细胞生物学中的潜在作用。