
doi: 10.1182/blood.2021013450 , 10.60692/nrxdf-1nc55 , 10.5167/uzh-213659 , 10.60692/2fzvr-hpr72 , 10.17863/cam.79902
pmid: 35073399
pmc: PMC7612845
handle: 20.500.11768/131957 , 10871/130621
doi: 10.1182/blood.2021013450 , 10.60692/nrxdf-1nc55 , 10.5167/uzh-213659 , 10.60692/2fzvr-hpr72 , 10.17863/cam.79902
pmid: 35073399
pmc: PMC7612845
handle: 20.500.11768/131957 , 10871/130621
Abstract Rare hematopoietic stem and progenitor cell (HSPC) pools outside the bone marrow (BM) contribute to blood production in stress and disease but remain ill-defined. Although nonmobilized peripheral blood (PB) is routinely sampled for clinical management, the diagnosis and monitoring potential of PB HSPCs remain untapped, as no healthy PB HSPC baseline has been reported. Here we comprehensively delineate human extramedullary HSPC compartments comparing spleen, PB, and mobilized PB to BM using single-cell RNA-sequencing and/or functional assays. We uncovered HSPC features shared by extramedullary tissues and others unique to PB. First, in contrast to actively dividing BM HSPCs, we found no evidence of substantial ongoing hematopoiesis in extramedullary tissues at steady state but report increased splenic HSPC proliferative output during stress erythropoiesis. Second, extramedullary hematopoietic stem cells/multipotent progenitors (HSCs/MPPs) from spleen, PB, and mobilized PB share a common transcriptional signature and increased abundance of lineage-primed subsets compared with BM. Third, healthy PB HSPCs display a unique bias toward erythroid-megakaryocytic differentiation. At the HSC/MPP level, this is functionally imparted by a subset of phenotypic CD71+ HSCs/MPPs, exclusively producing erythrocytes and megakaryocytes, highly abundant in PB but rare in other adult tissues. Finally, the unique erythroid-megakaryocytic–skewing of PB is perturbed with age in essential thrombocythemia and β-thalassemia. Collectively, we identify extramedullary lineage-primed HSPC reservoirs that are nonproliferative in situ and report involvement of splenic HSPCs during demand-adapted hematopoiesis. Our data also establish aberrant composition and function of circulating HSPCs as potential clinical indicators of BM dysfunction.
Adult, Acute Myeloid Leukemia, Myeloid, Cell biology, Hematopoietic Progenitor Cells, 10039 Institute of Medical Genetics, Immunology, 610, 610 Medicine & health, Bone Marrow Cells, Extramedullary hematopoiesis, Article, Bone Marrow, Biochemistry, Genetics and Molecular Biology, Health Sciences, Humans, Erythropoiesis, Bone marrow, Hematopoietic Cell Transplantation, Molecular Biology, Biology, Internal medicine, Stem cell, Cambridge Stem Cell Institute, Blood cell, Stem Cells, FOS: Clinical medicine, Life Sciences, Anemia, Hematology, Comprehensive Integration of Single-Cell Transcriptomic Data, Hematopoietic Stem Cells, Hematopoiesis, Haematopoiesis, 10032 Clinic for Oncology and Hematology, Progenitor cell, 570 Life sciences; biology, Medicine, Hematopoietic Stem Cell Biology, Megakaryocytes, Spleen
Adult, Acute Myeloid Leukemia, Myeloid, Cell biology, Hematopoietic Progenitor Cells, 10039 Institute of Medical Genetics, Immunology, 610, 610 Medicine & health, Bone Marrow Cells, Extramedullary hematopoiesis, Article, Bone Marrow, Biochemistry, Genetics and Molecular Biology, Health Sciences, Humans, Erythropoiesis, Bone marrow, Hematopoietic Cell Transplantation, Molecular Biology, Biology, Internal medicine, Stem cell, Cambridge Stem Cell Institute, Blood cell, Stem Cells, FOS: Clinical medicine, Life Sciences, Anemia, Hematology, Comprehensive Integration of Single-Cell Transcriptomic Data, Hematopoietic Stem Cells, Hematopoiesis, Haematopoiesis, 10032 Clinic for Oncology and Hematology, Progenitor cell, 570 Life sciences; biology, Medicine, Hematopoietic Stem Cell Biology, Megakaryocytes, Spleen
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