| Literature DB >> 24903478 |
A Dahlberg1, C Brashem-Stein2, C Delaney1, I D Bernstein1.
Abstract
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Year: 2014 PMID: 24903478 PMCID: PMC4192089 DOI: 10.1038/leu.2014.181
Source DB: PubMed Journal: Leukemia ISSN: 0887-6924 Impact factor: 11.528
Figure 1Delta1Ext-IgG delays differentiation of CB HSPC cultured with SR1 mediated at least in part through HES1 activation
(A) CD34+ CB HSPC were cultured for 14 days in the presence of Delta1Ext-IgG (2.5 μg/ml), SR1 (750 nM), or the combination (SR1 750nM, Delta1Ext-IgG 5 μg/ml). Total nucleated cell (TNC) number was significantly decreased with Delta1Ext-IgG with or without SR1 as compared to SR1 alone (p<0.05, p= 0.004). CD34+ cell number generated was significantly decreased in culture with Delta1Ext-IgG as compared to SR1 alone (p=0.004) and approached significance when the combination was compared to SR1 alone (p=0.17). Greater numbers of CD34+CD38−CD90+ cells[11] were generated when Delta1Ext-IgG was added to culture with SR1 as compared to culture with either Delta1Ext-IgG or SR1 alone (p=0.05, p=0.14). Results represent 5 independent experiments as mean +/− SEM. Statistical analysis was performed using 2-tailed, unpaired t-test.
(B) The proportion of CD34+CD38−CD90+ cells in culture with the combination as compared to Delta1Ext-IgG was equivalent (p=0.33) but both were significantly greater than seen in cultures containing SR1 (p=0.04 and p=0.02). Relatively greater percent of more mature common myeloid progenitors (CMP, CD34+CD38+CD123loCD45RA−)[12], and granulocyte-monocyte/megakaryocyte-erythroid progenitors (GMP/MEP; CD34+CD38+CD123+CD45RA−/CD34+CD38+CD123−CD45RA−)[11,12], populations were observed in culture with SR1 alone as compared to Delta1Ext-IgG or Delta1Ext-IgG and SR1 in combination (p=0.03, p=0.07). Results represent 5 independent experiments as mean +/− SEM. Statistical analysis was performed using 2-tailed, unpaired t-test.
(C) HES1 expression was assessed by quantitative PCR (qPCR) after cells were cultured for 6 hours on IgG, Delta1Ext-IgG, SR1, or Delta1Ext-IgG and SR1 in combination. HES1 expression was normalized to GUSB. HES1 expression was 3.5-fold higher in the Delta1Ext-IgG groups as compared to IgG control (p=0.0001) and 4.5-fold higher than SR1 alone (p<0.0001). HES1 expression when Delta1Ext-IgG was added to culture with SR1 was nearly 3.5-fold higher than in culture with SR1 alone (p=0.0002). Cells cultured with Delta1Ext-IgG alone had greater HES1 expression than cells cultured in the combination (p=0.0035). Results represent 3 independent experiments as mean +/− SEM. Statistical analysis was performed using 2-tailed, unpaired t-test.
(D) 1×104 CD34+ CB HSPC were cultured overnight in the presence of IgG (5 μg/ml) with or without SR1 (750nM) and transduced the following day with wt-HES1 or control with a multiplicity of infection of 25. On day 6 of culture, CB HSPC were sorted for GFP using BD FACSAria cell sorter. After 14 days in culture, GFP expressing cells were assessed for numbers of the least mature, CD34+CD38−CD90lo HSPC. There was a 2.5-fold increase in number of least mature HSPC generated when SR1 was added to culture with HES1 transduced HSPC (p=0.08). Culture of HES1 transduced cells in the presence of SR1 generated 25-fold more CD34+CD38−CD90lo HSPC than cells transduced with lenti-control (p=0.02). Results represent 2 independent experiments as mean +/− SEM. Statistical analysis was performed using 2-tailed, unpaired t-test.
Figure 2Delta1Ext-IgG and SR1 in combination enhance generation of early progenitor and myeloid repopulating cells
CD34+ selected CB HSPC were cultured for 16 days in the presence of Delta1Ext-IgG 2.5 μg/ml, IgG 2.5μg/ml with SR1 or the combination with Delta1Ext-IgG 5 μg/ml. The cultured progeny of 10,000 starting CD34+ cells were transplanted into NOD-SCID IL-2Rγ-null mice (NSG) and early and late repopulating capability assessed at 2 weeks by bone marrow aspirates and 12–14 weeks by bone marrow harvests. (A) Early myeloid (percent CD45+CD33+), (B) progenitor (percent CD45+CD34+), and (C) more immature progenitor (percent CD45+CD34+CD33−) were assessed. For limiting dilution transplant (A), mice were injected with the cultured progeny of 1000, 4000, or 20,000 CD34+ cells and bone marrow aspirates performed at 2 weeks. Two engraftment cut-offs were chosen based on percent engraftment observed in non-limiting transplantation studies. The frequency of SCID-repopulating cells (SRC) was determined by the method of maximum likelihood with L-CALC software (StemCell Technologies) from the proportions of engrafted recipients.
(D) All groups demonstrated multi-lineage engraftment with longer-term primary transplantation with enhanced total human and B-lymphoid (percent CD45+CD19+CD33−) engraftment in the combination group.
All p-values represent unpaired, two-tailed t-tests (GraphPad software) and are displayed on graphs with lines denoting comparisons. Results shown represent 4 independent experiments. Dots represent individual mice and line represents mean engraftment.