May Margot, Slaughter Anastasiya, Lucas Daniel
Department of Cell and Developmental Biology. University of Michigan School of Medicine. Ann Arbor. Michigan, USA.
Division of Experimental Hematology and Cancer Biology. Cincinnati Children's Medical Center. 240 Albert Sabin Way, Floor S7.351, Cincinnati, OH 45229.
Curr Stem Cell Rep. 2018 Sep;4(3):201-208. doi: 10.1007/s40778-018-0132-x. Epub 2018 Aug 2.
Hematopoietic stem cells (HSC) reside in a specialized microenvironment called the HSC niche. While key components of the niche have been known for several years, recent advances have identified several additional cell types that regulate HSC in the bone marrow (BM). Here we review our current understanding of the components and dynamics of the HSC niche.
While the niche has been considered a stable structure, recent advances clearly show that the niche is regulated in a dynamic manner to control HSC traffic and function. Moreover the niche can rapidly remodel in response to insults to the BM in a process controlled by positive and negative regulators.
Multiple niche cells have been shown to be dynamically regulated by systemic and local signals to influence how the niche controls HSC function. Elucidating how different components of the niche coordinate to orchestrate HSC behavior is essential to understand how the hematopoietic system adjusts blood cell production to the demands of the body.
造血干细胞(HSC)存在于一种称为造血干细胞龛的特殊微环境中。虽然龛的关键组成部分已为人所知数年,但最近的进展已鉴定出几种在骨髓(BM)中调节造血干细胞的其他细胞类型。在此,我们综述目前对造血干细胞龛的组成和动态变化的理解。
虽然龛一直被认为是一种稳定的结构,但最近的进展清楚地表明,龛以动态方式受到调节,以控制造血干细胞的运输和功能。此外,在正负调节因子控制的过程中,龛可响应骨髓损伤而迅速重塑。
多种龛细胞已被证明受全身和局部信号动态调节,从而影响龛对造血干细胞功能的控制方式。阐明龛的不同组成部分如何协同调节造血干细胞行为,对于理解造血系统如何根据身体需求调整血细胞生成至关重要。