School of Medicine and Surgery, University of Milano-Bicocca, 20900 Monza, Italy.
Cells. 2022 Mar 21;11(6):1061. doi: 10.3390/cells11061061.
Our knowledge of the complexity of the developing hematopoietic system has dramatically expanded over the course of the last few decades. We now know that, while hematopoietic stem cells (HSCs) firmly reside at the top of the adult hematopoietic hierarchy, multiple HSC-independent progenitor populations play variegated and fundamental roles during fetal life, which reflect on adult physiology and can lead to disease if subject to perturbations. The importance of obtaining a high-resolution picture of the mechanisms by which the developing embryo establishes a functional hematopoietic system is demonstrated by many recent indications showing that ontogeny is a primary determinant of function of multiple critical cell types. This review will specifically focus on exploring the diversity of hematopoietic stem and progenitor cells unique to embryonic and fetal life. We will initially examine the evidence demonstrating heterogeneity within the hemogenic endothelium, precursor to all definitive hematopoietic cells. Next, we will summarize the dynamics and characteristics of the so-called "hematopoietic waves" taking place during vertebrate development. For each of these waves, we will define the cellular identities of their components, the extent and relevance of their respective contributions as well as potential drivers of heterogeneity.
在过去的几十年里,我们对正在发育的造血系统的复杂性的认识有了显著的提高。我们现在知道,虽然造血干细胞(HSCs)在成人造血层次结构中占据着稳固的顶端位置,但在胎儿期,多种与 HSCs 无关的祖细胞群体发挥着多样化的基本作用,这些作用反映了成人的生理机能,如果受到干扰,可能会导致疾病。获得有关胚胎建立功能性造血系统的机制的高分辨率图片的重要性,这一点在许多最近的迹象中得到了证明,这些迹象表明个体发生是多种关键细胞类型功能的主要决定因素。这篇综述将特别关注探索胚胎和胎儿生命中独特的造血干细胞和祖细胞的多样性。我们将首先检查证明所有定型造血细胞前体——造血内皮细胞内异质性的证据。接下来,我们将总结发生在脊椎动物发育过程中的所谓“造血波”的动态和特征。对于每一波,我们将定义其组成部分的细胞身份、它们各自的贡献的程度和相关性,以及异质性的潜在驱动因素。