Modeling Blast Crisis Using Mutagenized Chronic Myeloid Leukemia-Derived Induced Pluripotent Stem Cells (iPSCs)

Author:

Imeri Jusuf1ORCID,Desterke Christophe1ORCID,Marcoux Paul1,Telliam Gladys1,Sanekli Safa12,Barreau Sylvain12,Erbilgin Yucel13ORCID,Latsis Theodoros1,Hugues Patricia1,Sorel Nathalie14,Cayssials Emilie5,Chomel Jean-Claude14,Bennaceur-Griscelli Annelise1267ORCID,Turhan Ali G.1267ORCID

Affiliation:

1. INSERM UMR-S-1310, Université Paris Saclay, 94800 Villejuif, France and ESTeam Paris Sud, Université Paris Saclay, 94800 Villejuif, France

2. APHP Paris Saclay, Department of Hematology, Hôpital Bicêtre & Paul Brousse, 94800 Villejuif, France

3. Aziz Sancar Institute of Experimental Medicine, Istanbul University, 34093 Istanbul, Turkey

4. Service de Cancérologie Biologique, CHU de Poitiers, 86000 Poitiers, France

5. Service d’Oncologie Hématologique et Thérapie Cellulaire, CHU de Poitiers, 86021 Poitiers, France

6. INGESTEM National iPSC Infrastructure, 94800 Villejuif, France

7. CITHERA, Centre for iPSC Therapies, INSERM UMS-45, Genopole Campus, 91100 Evry, France

Abstract

Purpose: To model CML progression in vitro and generate a blast crisis (BC-CML) model in vitro in order to identify new targets. Methods: Three different CML-derived iPSC lines were mutagenized with the alkylating agent ENU on a daily basis for 60 days. Cells were analyzed at D12 of hematopoietic differentiation for their phenotype, clonogenicity, and transcriptomic profile. Single-cell RNA-Seq analysis has been performed at three different time points during hematopoietic differentiation in ENU-treated and untreated cells. Results: One of the CML-iPSCs, compared to its non-mutagenized counterpart, generated myeloid blasts after hematopoietic differentiation, exhibiting monoblastic patterns and expression of cMPO, CD45, CD34, CD33, and CD13. Single-cell transcriptomics revealed a delay of differentiation in the mutated condition as compared to the control with increased levels of MSX1 (mesodermal marker) and a decrease in CD45 and CD41. Bulk transcriptomics analyzed along with the GSE4170 GEO dataset reveal a significant overlap between ENU-treated cells and primary BC cells. Among overexpressed genes, CD25 was identified, and its relevance was confirmed in a cohort of CML patients. Conclusions: iPSCs are a valuable tool to model CML progression and to identify new targets. Here, we show the relevance of CD25 identified in the iPSC model as a marker of CML progression.

Publisher

MDPI AG

Subject

General Medicine

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