Regulated Apoptosis of Genetically Modified Hematopoietic Stem and Progenitor Cells Via an Inducible Caspase-9 Suicide Gene in Rhesus Macaques

Author:

Barese Cecilia N.1,Felizardo Tania C.2,Sellers Stephanie E.1,Keyvanfar Keyvan1,Di Stasi Antonio3,Metzger Mark E.1,Krouse Allen E.1,Donahue Robert E.1,Spencer David M.4,Dunbar Cynthia E.1

Affiliation:

1. Hematology Branch, National Heart, Lung, and Blood Institute (NHLBI), Bethesda, Maryland, USA

2. Experimental Transplantation and Immunology Branch, National Cancer Institute, NIH, Bethesda, Maryland, USA

3. Center for Cell and Gene Therapy Baylor College of Medicine, Texas Children's Hospital, and Methodist Hospital, Houston, Texas

4. Bellicum Pharmaceuticals, Inc., Houston, Texas, USA

Abstract

Abstract The high risk of insertional oncogenesis reported in clinical trials using integrating retroviral vectors to genetically modify hematopoietic stem and progenitor cells (HSPCs) requires the development of safety strategies to minimize risks associated with novel cell and gene therapies. The ability to ablate genetically modified cells in vivo is desirable, should an abnormal clone emerge. Inclusion of “suicide genes” in vectors to facilitate targeted ablation of vector-containing abnormal clones in vivo is one potential safety approach. We tested whether the inclusion of the “inducible Caspase-9” (iCasp9) suicide gene in a gamma-retroviral vector facilitated efficient elimination of vector-containing HSPCs and their hematopoietic progeny in vivo long-term, in an autologous non-human primate transplantation model. Following stable engraftment of iCasp9 expressing hematopoietic cells in rhesus macaques, administration of AP1903, a chemical inducer of dimerization able to activate iCasp9, specifically eliminated vector-containing cells in all hematopoietic lineages long-term, suggesting activity at the HSPC level. Between 75% and 94% of vector-containing cells were eliminated by well-tolerated AP1903 dosing, but lack of complete ablation was linked to lower iCasp9 expression in residual cells. Further investigation of resistance mechanisms demonstrated upregulation of Bcl-2 in hematopoietic cell lines transduced with the vector and resistant to AP1903 ablation. These results demonstrate both the potential and the limitations of safety approaches using iCasp9 to HSPC-targeted gene therapy settings, in a model with great relevance to clinical development. Stem Cells  2015;33:91–100

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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