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造血系统的胚胎起源:层次结构与异质性

Embryonic Origins of the Hematopoietic System: Hierarchies and Heterogeneity.

作者信息

Vink Chris S, Mariani Samanta A, Dzierzak Elaine

机构信息

The University of Edinburgh, Centre for Inflammation Research, Edinburgh, Midlothian, United Kingdom.

出版信息

Hemasphere. 2022 May 24;6(6):e737. doi: 10.1097/HS9.0000000000000737. eCollection 2022 Jun.

Abstract

The hierarchical framework of the adult blood system as we know it from current medical and hematology textbooks, displays a linear branching network of dividing and differentiated cells essential for the growth and maintenance of the healthy organism. This view of the hierarchy has evolved over the last 75 years. An amazing increase in cellular complexity has been realized; however, innovative single-cell technologies continue to uncover essential cell types and functions in animal models and the human blood system. The most potent cell of the hematopoietic hierarchy is the hematopoietic stem cell. Stem cells for adult tissues are the long-lived self-renewing cellular component, which ensure that differentiated tissue-specific cells are maintained and replaced through the entire adult lifespan. Although much blood research is focused on hematopoietic tissue homeostasis, replacement and regeneration during adult life, embryological studies have widened and enriched our understanding of additional developmental hierarchies and interacting cells of this life-sustaining tissue. Here, we review the current state of knowledge of the hierarchical organization and the vast heterogeneity of the hematopoietic system from embryonic to adult stages.

摘要

正如我们从当前医学和血液学教科书中所了解的那样,成人血液系统的层级框架呈现出一个由分裂和分化细胞构成的线性分支网络,这些细胞对于健康生物体的生长和维持至关重要。这种层级结构的观点在过去75年中不断演变。细胞复杂性有了惊人的增长;然而,创新的单细胞技术仍在不断揭示动物模型和人类血液系统中的重要细胞类型和功能。造血层级结构中最具潜能的细胞是造血干细胞。成体组织的干细胞是长寿的自我更新细胞成分,它们确保分化的组织特异性细胞在整个成年期都能得到维持和替换。尽管许多血液研究聚焦于成年期造血组织的稳态、替换和再生,但胚胎学研究拓宽并丰富了我们对这个维持生命的组织的其他发育层级和相互作用细胞的理解。在这里,我们回顾了从胚胎期到成年期造血系统层级组织的当前知识状态以及其巨大的异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65a8/9132533/104ea981ca38/hs9-6-e737-g001.jpg

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