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Novel humanized loss-of-function NF1 mouse model of juvenile myelomonocytic leukemia
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Novel humanized loss-of-function NF1 mouse model of juvenile myelomonocytic leukemia

Roshani Sinha, Rachana Vinay Patil, Rosa Romano, Devesh Sharma, Esmond Lee, Rhonda Perriman, Saori Takeda, Benjamin J Lesch, Zhenyu Yao, Y Lucy Liu, …
Blood advances, 卷.10(3), 頁碼.837-849
10/02/2026
PMID: 41201956
Web of Science ID: WOS:001686747900001

摘要

Animals CRISPR-Cas Systems Disease Models, Animal Granulocyte-Macrophage Colony-Stimulating Factor Hematopoietic Stem Cells - metabolism Humans Leukemia, Myelomonocytic, Juvenile - genetics Leukemia, Myelomonocytic, Juvenile - metabolism Leukemia, Myelomonocytic, Juvenile - pathology Leukemia, Myelomonocytic, Juvenile - therapy Loss of Function Mutation Mice Neurofibromin 1 - genetics Neurofibromin 1 - metabolism
Juvenile myelomonocytic leukemia (JMML) is a fatal pediatric cancer characterized by classical features such as splenomegaly, monocytosis, and granulocyte-macrophage colony-stimulating factor (GM-CSF) hypersensitivity, with RAS pathway mutations being the major drivers. Mutations causing loss-of-function of the Neurofibromin 1 gene (NF1LOF) occur in ∼20% of patients with JMML. NF1LOF drives upregulation of RAS/MAPK/PI3K pathways that leads to aggressive proliferation/differentiation of immature myeloid cells. Hematopoietic stem cell transplantation is the only curative option, but relapse occurs in ∼50% of patients, indicating an urgent need for novel and targeted therapeutic strategies. However, low patient sample availability and a lack of reliable disease models have made it difficult to study and treat JMML. Using CRISPR/Cas9, we have generated NF1LOF in human umbilical cord blood-derived hematopoietic stem and progenitor cells (HSPCs). We achieved a high gene knockout rate of ∼89% and concomitant loss of NF1 protein in the modified HSPCs. Importantly, NF1LOF cells displayed marked GM-CSF hypersensitivity in in vitro colony-forming unit assays, mirroring JMML. When transplanted into NSG-SGM3 mice, they caused rapid lethality (median survival of 32 days), myeloid expansion, tissue infiltration (spleen, liver, and lungs), and specific upregulation of RAS/MAPK pathway and STAT5 genes, consistent with patient profiles. This first humanized NF1LOF mouse model recapitulates key JMML features, enabling investigation of disease mechanisms and targeted therapies.

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https://doi.org/10.1182/bloodadvances.2024015191檢視
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