| Literature DB >> 26500141 |
W M Wong1, M Dolinska2, M Sigvardsson3, M Ekblom1,4, H Qian2.
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Year: 2015 PMID: 26500141 PMCID: PMC4895173 DOI: 10.1038/leu.2015.300
Source DB: PubMed Journal: Leukemia ISSN: 0887-6924 Impact factor: 11.528
Figure 1Erythroid and megakaryocyte colony-forming cells are enriched in human adult BM CD34+CD38− integrin α2− cell fraction. (a) Representative FACS profiles showing gating strategy for the isolation of CD34+CD38− integrin α2+ and integrin α2− cells. The numbers in the plots represent the percentage of cells in the gates. (b, c) The frequencies of granulocyte-macrophage (CFU-GM), erythroid (BFU-E) and megakaryocyte (CFU-MK) progenitors in CD34+CD38− integrin α2+ and integrin α2− cells assayed in the methylcellulose culture supplemented with cytokines (CFU-GM, BFU-E) or in collagen-based megakaryocyte colony-forming assay (CFU-MK). The horizontal bars show median values. *P<0.05; **P<0.01; ***P<0.001. The results were obtained from two independent experiments with the use of 3–4 human samples. (d) Single-cell assay showing the frequencies of multipotent (CFU-GEMM), CFU-GM and BFU-E progenitors in Lin−CD34+CD38− integrin α2+ and integrin α2− cell fractions. The results are from 460 single Lin−CD34+CD38− integrin α2+ and 255 single Lin−CD34+CD38− integrin α2− cells cultured in 96-well plates. The result was obtained from four independent experiments with six separate human samples in total. (e) Representative FACS profiles showing the expression of CD33 and CD135 in Lin−CD34+CD38+ progenitor cell-enriched cell fraction and Lin−CD34+CD38− integrin α2− cells gated for CD45RA expression. Shown are representative FACS plots of two separate experiments. Quadrant gates in the FACS plots were set on the basis of fluorescence minus one staining profiles by using isotype-matched monoclonal antibodies. The numbers in the plots represent the percentage of cells in the gates. Viable cells were gated by exclusion of 7AAD+ dead cells. 7AAD, 7-aminoactinomycin D.
Figure 2Single-cell clonogenic liquid culture assay reveals a high frequency of bipotent megakaryocyte–erythrocyte progenitors in human adult BM Lin−CD34+CD38−CD45RA− integrin α2− fraction. (a) Representative FACS profiles showing the expression of CD41, CD235 and CD15/CD33/CD66b in the individual clones derived from single Lin−CD34+CD38−CD45RA− integrin α2− cells after 12–14 days of serum-free culture with cytokines. Shown are clones derived from cells with bipotential megakaryocytic–erythroid (Mk/E) and unipotential erythroid (E) differentiation capacity. Quadrant gates in the FACS plots were set on the basis of fluorescence minus one control staining profiles using isotype control antibodies. The numbers in the plots show the percentage of cells in the gates. 7AAD−, viable cells gated by exclusion of 7AAD+ dead cells. (b) The frequency of cells showing megakaryocyte (CD41+CD235−) or erythrocyte (CD235+CD41−) differentiation determined by the FACS analysis of individual clones derived from single Lin−CD34+CD38−CD45RA− integrin α2− cells after 12–14 days of culture. Thirty-two individual clones were analyzed by FACS. (c) Lineage distribution of clones derived from single Lin−CD34+CD38−CD45RA− integrin α2− adult BM cells, evaluated by immunophenotype (FACS analysis) or by morphology on cytospin slides after May-Grünwald–Giemsa staining. (d) Morphology of the megakaryocyte (Mk), erythroid (E) and mixed megakaryocyte-erythroid (Mk/E) colonies derived from single Lin−CD34+CD38−CD45RA− integrin α2− cells. The cells were transferred onto cytospin slides and stained with May-Grünwald–Giemsa. (e) Morphology of the megakaryocyte (Mk), and mixed megakaryocyte–erythroid (Mk/E) colonies, derived from single Lin−CD34+CD38−CD45RA− integrin α2− cells, on Terasaki plates. The results were obtained from five independent experiments, each with one BM sample. 7AAD, 7-aminoactinomycin D.