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Updated: Jan 8, 2026

Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
CSF1R modulates megakaryopoiesis by targeting RUNX1 in immune thrombocytopenia
Haohao Han1, Meng Zhou1, Jiaqian Qi1
1National clinical research center for hematologic diseases, Jiangsu Institute of Hematology, The First Affiliated Hospital of Soochow University, Suzhou, China; Institute of Blood and Marrow Transplantation, Collaborative Innovation Center of Hematology, Soochow University, Suzhou, China; Key Laboratory of Thrombosis and Hemostasis of Ministry of Health, Suzhou.
Immune thrombocytopenia (ITP) is an autoimmune bleeding disorder characterized by platelet destruction and defective megakaryopoiesis. However, the mechanisms underlying megakaryocyte (MK) dysfunction in ITP remain unclear. To address this, we performed single-cell RNA sequencing (scRNA-seq) on bone marrow cells from a newly diagnosed ITP patient. ScRNA-seq analysis revealed a marked upregulation of colony-stimulating factor 1 receptor (CSF1R) in MK compared with healthy control. This finding was independently validated by flow cytometry in additional clinical samples. In vitro, MK differentiation and maturation were significantly impaired in ITP, and these defects were rescued by inhibition of CSF1R. In an active murine model of ITP, CSF1R inhibition accelerated platelet recovery. Mechanistically, elevated CSF1R expression suppressed the transcription factor RUNX1, a key regulator of megakaryopoiesis. In conclusion, our findings identify CSF1R as a previously unrecognized regulator of megakaryopoiesis and suggest it represents a promising therapeutic target in ITP.
Immune thrombocytopenia (ITP) is an autoimmune bleeding disorder characterized by platelet destruction and defective megakaryopoiesis. However, the mechanisms underlying megakaryocyte (MK) dysfunction in ITP remain unclear. To address this, we performed single-cell RNA sequencing (scRNA-seq) on bone marrow cells from a newly diagnosed ITP patient. ScRNA-seq analysis revealed a marked upregulation of colony-stimulating factor 1 receptor (CSF1R) in MK compared with healthy control. This finding was independently validated by flow cytometry in additional clinical samples. In vitro, MK differentiation and maturation were significantly impaired in ITP, and these defects were rescued by inhibition of CSF1R. In an active murine model of ITP, CSF1R inhibition accelerated platelet recovery. Mechanistically, elevated CSF1R expression suppressed the transcription factor RUNX1, a key regulator of megakaryopoiesis. In conclusion, our findings identify CSF1R as a previously unrecognized regulator of megakaryopoiesis and suggest it represents a promising therapeutic target in ITP.
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