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Differential CXCR4 expression on hematopoietic progenitor cells versus stem cells directs homing and engraftment
Sydney Felker, Archana Shrestha, Jeff Bailey, Devin M Pillis, Dylan Siniard, Punam Malik
Sydney Felker, Archana Shrestha, Jeff Bailey, Devin M Pillis, Dylan Siniard, Punam Malik
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Research Article Stem cells Transplantation

Differential CXCR4 expression on hematopoietic progenitor cells versus stem cells directs homing and engraftment

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Abstract

Gene therapy involves a substantial loss of hematopoietic stem and progenitor cells (HSPC) during processing and homing. Intra-BM (i.b.m.) transplantation can reduce homing losses, but prior studies have not yielded promising results. We studied the mechanisms involved in homing and engraftment of i.b.m. transplanted and i.v. transplanted genetically modified (GM) human HSPC. We found that i.b.m. HSPC transplantation improved engraftment of hematopoietic progenitor cells (HPC) but not of long-term repopulating hematopoietic stem cells (HSC). Mechanistically, HPC expressed higher functional levels of CXCR4 than HSC, conferring them a retention and homing advantage when transplanted i.b.m. Removing HPC and transplanting an HSC-enriched population i.b.m. significantly increased long-term engraftment over i.v. transplantation. Transient upregulation of CXCR4 on GM HSC-enriched cells, using a noncytotoxic portion of viral protein R (VPR) fused to CXCR4 delivered as a protein in lentiviral particles, resulted in higher homing and long-term engraftment of GM HSC transplanted either i.v. or i.b.m. compared with standard i.v. transplants. Overall, we show a mechanism for why i.b.m. transplants do not significantly improve long-term engraftment over i.v. transplants. I.b.m. transplantation becomes relevant when an HSC-enriched population is delivered. Alternatively, CXCR4 expression on HSC, when transiently increased using a protein delivery method, improves homing and engraftment specifically of GM HSC.

Authors

Sydney Felker, Archana Shrestha, Jeff Bailey, Devin M Pillis, Dylan Siniard, Punam Malik

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Figure 6

Transiently increased expression of CXCR4 on GM CD34+CD38– cells via protein delivery within the LV vector particle significantly increases their homing and long-term engraftment.

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Transiently increased expression of CXCR4 on GM CD34+CD38– cells via pro...
Experimental schema for assessment of homing and engraftment of CD34+CD38– cells transduced with GFP LV or GFP LVCXCR4 that were transplanted into NSG mice either via i.v. or i.b.m. delivery. (A) The number of animals used for the homing experiment and engraftment experiments is indicated under each experimental arm. (B) Homing of CD34+CD38– cells in the BM. Data were normalized to i.v. injected control CD34+CD38– cells, and the fold increase is indicated within the bar. Symbols represent individual mice; statistical analysis was performed using ANOVA. (C and D) Long-term engraftment of CD34+CD38– cells was assessed by determining the percentage of human CD45+GFP– cells (C) and human CD45+GFP+ (D) cells 24 weeks following transplant. Data were normalized to i.v. transplanted GFP LV transduced CD34+CD38– cells, and the fold increase is indicated within the bar. Gene transfer was 60% with GFP LV and 52% with GFP LVCXCR4. Symbols represent individual mice; statistical analysis was performed by 1-way ANOVA. *P < 0.05, **P < 0.01.

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