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了解体内噬血作用的多样性和动态性:来自蝇胚胎的启示。

Understanding the diversity and dynamics of in vivo efferocytosis: Insights from the fly embryo.

机构信息

Institute for Regeneration and Repair, University of Edinburgh, Edinburgh, UK.

School of Cancer Sciences, Wolfson Wohl Cancer Research Centre, University of Glasgow, Glasgow, UK.

出版信息

Immunol Rev. 2023 Oct;319(1):27-44. doi: 10.1111/imr.13266. Epub 2023 Aug 17.

Abstract

The clearance of dead and dying cells, termed efferocytosis, is a rapid and efficient process and one that is critical for organismal health. The extraordinary speed and efficiency with which dead cells are detected and engulfed by immune cells within tissues presents a challenge to researchers who wish to unravel this fascinating process, since these fleeting moments of uptake are almost impossible to catch in vivo. In recent years, the fruit fly (Drosophila melanogaster) embryo has emerged as a powerful model to circumvent this problem. With its abundance of dying cells, specialist phagocytes and relative ease of live imaging, the humble fly embryo provides a unique opportunity to catch and study the moment of cell engulfment in real-time within a living animal. In this review, we explore the recent advances that have come from studies in the fly, and how live imaging and genetics have revealed a previously unappreciated level of diversity in the efferocytic program. A variety of efferocytic strategies across the phagocytic cell population ensure efficient and rapid clearance of corpses wherever death is encountered within the varied and complex setting of a multicellular living organism.

摘要

细胞死亡和凋亡的清除过程,即噬亡作用(efferocytosis),是一个快速且高效的过程,对于生物体的健康至关重要。组织中免疫细胞对死亡细胞的检测和吞噬速度非常快,效率非常高,这给希望揭开这一迷人过程的研究人员带来了挑战,因为这些短暂的吞噬瞬间几乎不可能在体内捕捉到。近年来,果蝇(Drosophila melanogaster)胚胎已成为克服这一问题的强大模型。由于其大量的死亡细胞、专门的吞噬细胞以及相对容易进行活体成像,这种不起眼的果蝇胚胎为在活体动物中实时捕捉和研究细胞吞噬的瞬间提供了独特的机会。在这篇综述中,我们探讨了来自果蝇研究的最新进展,以及活体成像和遗传学如何揭示噬亡作用程序以前未被重视的多样性。在多细胞生物体多样化和复杂的环境中,无论在何处发生死亡,吞噬细胞群体中的各种噬亡作用策略都能确保有效地快速清除尸体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3563/10952863/bd4b8926ad7a/IMR-319-27-g002.jpg

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