Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridge, UK.
Department of Paediatrics, Cambridge University Hospitals, Cambridge, UK.
Science. 2022 Jun 3;376(6597):eabo0510. doi: 10.1126/science.abo0510.
Single-cell genomics studies have decoded the immune cell composition of several human prenatal organs but were limited in describing the developing immune system as a distributed network across tissues. We profiled nine prenatal tissues combining single-cell RNA sequencing, antigen-receptor sequencing, and spatial transcriptomics to reconstruct the developing human immune system. This revealed the late acquisition of immune-effector functions by myeloid and lymphoid cell subsets and the maturation of monocytes and T cells before peripheral tissue seeding. Moreover, we uncovered system-wide blood and immune cell development beyond primary hematopoietic organs, characterized human prenatal B1 cells, and shed light on the origin of unconventional T cells. Our atlas provides both valuable data resources and biological insights that will facilitate cell engineering, regenerative medicine, and disease understanding.
单细胞基因组学研究已经解码了几个人类产前器官的免疫细胞组成,但在描述分布在组织中的发育中的免疫系统方面受到限制。我们结合单细胞 RNA 测序、抗原受体测序和空间转录组学对 9 种产前组织进行了分析,以重建人类发育中的免疫系统。这揭示了髓系和淋巴样细胞亚群获得免疫效应功能的时间较晚,以及单核细胞和 T 细胞在进入外周组织之前的成熟过程。此外,我们还揭示了超越主要造血器官的全身性血液和免疫细胞发育,描绘了人类产前 B1 细胞,并阐明了非常规 T 细胞的起源。我们的图谱不仅提供了有价值的数据资源,还提供了生物学见解,这将有助于细胞工程、再生医学和疾病的理解。