Alkylator-induced and patient-derived xenograft mouse models of therapy-related myeloid neoplasms model clinical disease and suggest the presence of multiple cell subpopulations with leukemia stem cell activity

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Abstract

Acute myeloid leukemia (AML) is a heterogeneous group of aggressive bone marrow cancers arising from transformed hematopoietic stem and progenitor cells (HSPC). Therapy-related AML and MDS (t-AML/MDS) comprise a subset of AML cases occurring after exposure to alkylating chemotherapy and/or radiation and are associated with a very poor prognosis. Less is known about the pathogenesis and disease-initiating/leukemia stem cell (LSC) subpopulations of t-AML/MDS compared to their de novo counterparts. Here, we report the development of mouse models of t-AML/MDS. First, we modeled alkylator-induced t-AML/MDS by exposing wild type adult mice to N-ethyl-N-nitrosurea (ENU), resulting in several models of AML and MDS that have clinical and pathologic characteristics consistent with human t-AML/MDS including cytopenia, myelodysplasia, and shortened overall survival. These models were limited by their inability to transplant clinically aggressive disease. Second, we established three patient-derived xenograft models of human t-AML. These models led to rapidly fatal disease in recipient immunodeficient xenografted mice. LSC activity was identified in multiple HSPC subpopulations suggesting there is no canonical LSC immunophenotype in human t-AML. Overall, we report several new t-AML/MDS mouse models that could potentially be used to further define disease pathogenesis and test novel therapeutics.

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Jonas, B. A., Johnson, C., Gratzinger, D., & Majeti, R. (2016). Alkylator-induced and patient-derived xenograft mouse models of therapy-related myeloid neoplasms model clinical disease and suggest the presence of multiple cell subpopulations with leukemia stem cell activity. PLoS ONE, 11(7). https://doi.org/10.1371/journal.pone.0159189

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