Cellular Reprogramming Allows Generation of Autologous Hematopoietic Progenitors From AML Patients That Are Devoid of Patient-Specific Genomic Aberrations

Author:

Salci Kyle R.12,Lee Jong-Hee1,Laronde Sarah1,Dingwall Steve12,Kushwah Rahul1,Fiebig-Comyn Aline1,Leber Brian3,Foley Ronan3,Dal Cin Arianna45,Bhatia Mickie12

Affiliation:

1. McMaster Stem Cell and Cancer Research Institute Michael G. DeGroote School of Medicine, Faculty of Health Sciences, Hamilton, Ontario, Canada

2. Department of Biochemistry and Biomedical Sciences McMaster University, Hamilton, Ontario, Canada

3. Department of Pathology and Molecular Medicine McMaster University, Hamilton, Ontario, Canada

4. Department of Surgery Hamilton Health Sciences, Hamilton, Ontario, Canada

5. Department of Oncology Hamilton Health Sciences, Hamilton, Ontario, Canada

Abstract

Abstract Current treatments that use hematopoietic progenitor cell (HPC) transplantation in acute myeloid leukemia (AML) patients substantially reduce the risk of relapse, but are limited by the availability of immune compatible healthy HPCs. Although cellular reprogramming has the potential to provide a novel autologous source of HPCs for transplantation, the applicability of this technology toward the derivation of healthy autologous hematopoietic cells devoid of patient-specific leukemic aberrations from AML patients must first be evaluated. Here, we report the generation of human AML patient-specific hematopoietic progenitors that are capable of normal in vitro differentiation to myeloid lineages and are devoid of leukemia-associated aberration found in matched patient bone marrow. Skin fibroblasts were obtained from AML patients whose leukemic cells possessed a distinct, leukemia-associated aberration, and used to create AML patient-specific induced pluripotent stem cells (iPSCs). Through hematopoietic differentiation of AML patient iPSCs, coupled with cytogenetic interrogation, we reveal that AML patient-specific HPCs possess normal progenitor capacity and are devoid of leukemia-associated mutations. Importantly, in rare patient skin samples that give rise to mosaic fibroblast cultures that continue to carry leukemia-associated mutations; healthy hematopoietic progenitors can also be generated via reprogramming selection. Our findings provide the proof of principle that cellular reprogramming can be applied on a personalized basis to generate healthy HPCs from AML patients, and should further motivate advances toward creating transplantable hematopoietic stem cells for autologous AML therapy. Stem Cells  2013;33:1839–1849

Funder

NSERC

Canada Research Chair Program, CRC Tier 1 in Human Stem Cell Biology, and Michael G. DeGroote School of Medicine

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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