Division of Hematology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH.
Laboratory of Developmental Erythropoiesis, Les Nelkin Memorial Laboratory of Pediatric Oncology, Institute of Molecular Medicine, The Feinstein Institutes for Medical Research, Manhasset, NY.
Blood. 2022 Oct 6;140(14):1621-1634. doi: 10.1182/blood.2022015724.
The erythroblastic island (EBI), composed of a central macrophage surrounded by maturing erythroblasts, is the erythroid precursor niche. Despite numerous studies, its precise composition is still unclear. Using multispectral imaging flow cytometry, in vitro island reconstitution, and single-cell RNA sequencing of adult mouse bone marrow (BM) EBI-component cells enriched by gradient sedimentation, we present evidence that the CD11b+ cells present in the EBIs are neutrophil precursors specifically associated with BM EBI macrophages, indicating that erythro-(myelo)-blastic islands are a site for terminal granulopoiesis and erythropoiesis. We further demonstrate that the balance between these dominant and terminal differentiation programs is dynamically regulated within this BM niche by pathophysiological states that favor granulopoiesis during anemia of inflammation and favor erythropoiesis after erythropoietin stimulation. Finally, by molecular profiling, we reveal the heterogeneity of EBI macrophages by cellular indexing of transcriptome and epitope sequencing of mouse BM EBIs at baseline and after erythropoietin stimulation in vivo and provide a searchable online viewer of these data characterizing the macrophage subsets serving as hematopoietic niches. Taken together, our findings demonstrate that EBIs serve a dual role as niches for terminal erythropoiesis and granulopoiesis and the central macrophages adapt to optimize production of red blood cells or neutrophils.
成红细胞岛(EBI)由中央巨噬细胞环绕正在成熟的红细胞组成,是红系前体细胞龛。尽管进行了大量研究,但它的确切组成仍不清楚。通过多光谱成像流式细胞术、体外岛重建和梯度沉降富集的成年小鼠骨髓(BM)EBI 成分细胞的单细胞 RNA 测序,我们提供了证据表明,存在于 EBI 中的 CD11b+细胞是与 BM EBI 巨噬细胞特异性相关的中性粒细胞前体,表明红系(髓系)-成红细胞岛是终末粒细胞生成和红细胞生成的部位。我们进一步证明,在这种 BM 龛位中,这些优势和终末分化程序之间的平衡通过有利于炎症性贫血期间粒细胞生成和促红细胞生成素刺激后红细胞生成的病理生理状态进行动态调节。最后,通过分子分析,我们通过细胞转录组索引和对小鼠 BM EBI 进行表位测序,揭示了 EBI 巨噬细胞的异质性,基线和促红细胞生成素刺激后在体内,并提供了一个可搜索的在线查看器,用于描述作为造血龛位的巨噬细胞亚群。总之,我们的发现表明,EBI 作为终末红细胞生成和粒细胞生成的龛位具有双重作用,中央巨噬细胞适应于优化红细胞或中性粒细胞的产生。