漫长而曲折的道路:平衡与紊乱的造血微环境龛位:叙述性综述。

Biomaterials Translational Pub Date : 2022-03-28 eCollection Date: 2022-01-01 DOI:10.12336/biomatertransl.2022.01.005
Suzanne M Watt
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引用次数: 0

摘要

造血微环境龛位被描述为血液和免疫系统的 "守门人"。这些龛位在个体发育过程中会发生变化,在稳态条件下,骨髓在出生后成为造血的主要场所。要确定不同造血微环境龛位的结构和功能,就必须明确定义本体发育过程中特定的造血干细胞和祖细胞亚群,并了解它们的时间外观和解剖定位。造血干细胞和祖细胞龛位由多种造血细胞和非造血细胞组成。据报道,后者包括内皮细胞、间充质基质细胞(MSCs)、骨骼干细胞和/或 C-X-C motif趋化因子配体 12-大量网状细胞群,它们在平衡状态下构成了这些微环境的重要组成部分。这些细胞的失调或退化是导致全球重大临床失调和疾病的原因,并与老化过程有关。对这些问题的批判性评估,以及间充质干细胞/C-X-C motif趋化因子配体12-大量网状细胞和最近发现的骨骼干细胞亚群在平衡状态下和衰老过程中骨髓造血龛功能中的作用,将构成本研究综述的基础。在造血方面,临床转化将涉及从开发和使用间充质干细胞疗法治疗异体造血移植中的移植物抗宿主疾病中获得的大量经验,以及最近应用这些间充质干细胞疗法治疗新出现的严重冠状病毒病2019(COVID-19)感染中获得的教训、鉴于骨骼干细胞老化是造血老化的一个拟议驱动因素,这些干细胞对健康骨髓造血的潜在贡献,以及利用这些知识恢复受年龄影响的骨髓造血龛位和恢复造血的益处和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The long and winding road: homeostatic and disordered haematopoietic microenvironmental niches: a narrative review.

The long and winding road: homeostatic and disordered haematopoietic microenvironmental niches: a narrative review.

The long and winding road: homeostatic and disordered haematopoietic microenvironmental niches: a narrative review.

Haematopoietic microenvironmental niches have been described as the 'gatekeepers' for the blood and immune systems. These niches change during ontogeny, with the bone marrow becoming the predominant site of haematopoiesis in post-natal life under steady state conditions. To determine the structure and function of different haematopoietic microenvironmental niches, it is essential to clearly define specific haematopoietic stem and progenitor cell subsets during ontogeny and to understand their temporal appearance and anatomical positioning. A variety of haematopoietic and non-haematopoietic cells contribute to haematopoietic stem and progenitor cell niches. The latter is reported to include endothelial cells and mesenchymal stromal cells (MSCs), skeletal stem cells and/or C-X-C motif chemokine ligand 12-abundant-reticular cell populations, which form crucial components of these microenvironments under homeostatic conditions. Dysregulation or deterioration of such cells contributes to significant clinical disorders and diseases worldwide and is associated with the ageing process. A critical appraisal of these issues and of the roles of MSC/C-X-C motif chemokine ligand 12-abundant-reticular cells and the more recently identified skeletal stem cell subsets in bone marrow haematopoietic niche function under homeostatic conditions and during ageing will form the basis of this research review. In the context of haematopoiesis, clinical translation will deal with lessons learned from the vast experience garnered from the development and use of MSC therapies to treat graft versus host disease in the context of allogeneic haematopoietic transplants, the recent application of these MSC therapies to treating emerging and severe coronavirus disease 2019 (COVID-19) infections, and, given that skeletal stem cell ageing is one proposed driver for haematopoietic ageing, the potential contributions of these stem cells to haematopoiesis in healthy bone marrow and the benefits and challenges of using this knowledge for rejuvenating the age-compromised bone marrow haematopoietic niches and restoring haematopoiesis.

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