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1.
Nat Cell Biol ; 20(6): 710-720, 2018 06.
Article in English | MEDLINE | ID: mdl-29802403

ABSTRACT

Elucidation of the identity and diversity of mechanisms that sustain long-term human blood cell production remains an important challenge. Previous studies indicate that, in adult mice, this property is vested in cells identified uniquely by their ability to clonally regenerate detectable, albeit highly variable levels and types, of mature blood cells in serially transplanted recipients. From a multi-parameter analysis of the molecular features of very primitive human cord blood cells that display long-term cell outputs in vitro and in immunodeficient mice, we identified a prospectively separable CD33+CD34+CD38-CD45RA-CD90+CD49f+ phenotype with serially transplantable, but diverse, cell output profiles. Single-cell measurements of the mitogenic response, and the transcriptional, DNA methylation and 40-protein content of this and closely related phenotypes revealed subtle but consistent differences both within and between each subset. These results suggest that multiple regulatory mechanisms combine to maintain different cell output activities of human blood cell precursors with high regenerative potential.


Subject(s)
Cell Proliferation , Cell Separation/methods , Fetal Blood/cytology , Mitosis , Sialic Acid Binding Ig-like Lectin 3/metabolism , Single-Cell Analysis/methods , Stem Cells/metabolism , Animals , Biomarkers/metabolism , Cord Blood Stem Cell Transplantation , DNA Methylation , Female , Flow Cytometry , Gene Expression Profiling , Gene Expression Regulation, Developmental , Genotype , Humans , Male , Mice, Transgenic , Phenotype , Time Factors , Transcriptome
2.
Stem Cell Reports ; 8(1): 152-162, 2017 01 10.
Article in English | MEDLINE | ID: mdl-28076756

ABSTRACT

The role of growth factors (GFs) in controlling the biology of human hematopoietic stem cells (HSCs) remains limited by a lack of information concerning the individual and combined effects of GFs directly on the survival, Mitogenesis, and regenerative activity of highly purified human HSCs. We show that the initial input HSC activity of such a purified starting population of human cord blood cells can be fully maintained over a 21-day period in serum-free medium containing five GFs alone. HSC survival was partially supported by any one of these GFs, but none were essential, and different combinations of GFs variably stimulated HSC proliferation. However, serial transplantability was not detectably compromised by many conditions that reduced human HSC proliferation and/or survival. These results demonstrate the dissociated control of these three human HSC bio-responses, and set the stage for future improvements in strategies to modify and expand human HSCs ex vivo.


Subject(s)
Cell Differentiation , Cell Proliferation , Cell Survival , Hematopoietic Stem Cells/cytology , Hematopoietic Stem Cells/metabolism , Animals , Biomarkers , Cell Differentiation/drug effects , Cell Proliferation/drug effects , Cell Survival/drug effects , Cells, Cultured , Hematopoietic Stem Cell Transplantation , Hematopoietic Stem Cells/drug effects , Humans , In Vitro Techniques , Integrin alpha6/metabolism , Intercellular Signaling Peptides and Proteins/pharmacology , Mice , Phenotype
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