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Updated: Feb 14, 2026

Transduction-Transplantation Mouse Model of Myeloproliferative Neoplasm
Published on: December 22, 2016
Metformin exerts multitarget antileukemia activity in JAK2V617F-positive myeloproliferative neoplasms
João Agostinho Machado-Neto1,2, Bruna Alves Fenerich1, Renata Scopim-Ribeiro1
1Department of Internal Medicine, University of São Paulo at Ribeirão Preto Medical School, Ribeirão Preto, São Paulo, Brazil.
Abstract:
The recurrent gain-of-function JAK2V617F mutation confers growth factor-independent proliferation for hematopoietic cells and is a major contributor to the pathogenesis of myeloproliferative neoplasms (MPN). The lack of complete response in most patients treated with the JAK1/2 inhibitor ruxolitinib indicates the need for identifying novel therapeutic strategies. Metformin is a biguanide that exerts selective antineoplastic activity in hematological malignancies. In the present study, we investigate and compare effects of metformin and ruxolitinib alone and in combination on cell signaling and cellular functions in JAK2V617F-positive cells. In JAK2V617F-expressing cell lines, metformin treatment significantly reduced cell viability, cell proliferation, clonogenicity, and cellular oxygen consumption and delayed cell cycle progression. Metformin reduced cyclin D1 expression and RB, STAT3, STAT5, ERK1/2 and p70S6K phosphorylation. Metformin plus ruxolitinib demonstrated more intense reduction of cell viability and induction of apoptosis compared to monotherapy. Notably, metformin reduced Ba/F3 JAK2V617F tumor burden and splenomegaly in Jak2V617F knock-in-induced MPN mice and spontaneous erythroid colony formation in primary cells from polycythemia vera patients. In conclusion, metformin exerts multitarget antileukemia activity in MPN: downregulation of JAK2/STAT signaling and mitochondrial activity. Our exploratory study establishes novel molecular mechanisms of metformin and ruxolitinib action and provides insights for development of alternative/complementary therapeutic strategies for MPN.
Insights
Metformin shows promise in treating myeloproliferative neoplasms (MPN) by reducing cancer cell growth and signaling pathways. Combined with ruxolitinib, it enhances anti-cancer effects, offering new therapeutic strategies for MPN patients.
Area of Science:
- Hematology
- Oncology
- Pharmacology
Background:
- The JAK2V617F mutation drives myeloproliferative neoplasms (MPN) through uncontrolled hematopoietic cell proliferation.
- Current treatments like ruxolitinib often yield incomplete responses, necessitating novel therapeutic approaches.
Purpose of the Study:
- To investigate the effects of metformin, alone and in combination with ruxolitinib, on JAK2V617F-positive cells.
- To compare their impacts on cell signaling and cellular functions.
Main Methods:
- Utilized JAK2V617F-expressing cell lines and JAK2V617F knock-in MPN mouse models.
- Assessed cell viability, proliferation, clonogenicity, oxygen consumption, cell cycle, protein expression, and apoptosis.
- Analyzed effects on tumor burden, splenomegaly, and primary patient cell colony formation.
Main Results:
- Metformin alone reduced cell viability, proliferation, oxygen consumption, and altered cell cycle progression by downregulating key signaling proteins.
- The combination of metformin and ruxolitinib showed enhanced reduction in cell viability and increased apoptosis compared to monotherapy.
- Metformin decreased tumor burden, splenomegaly in mice, and erythroid colony formation in polycythemia vera patient cells.
Conclusions:
- Metformin exhibits multitarget antileukemia activity in MPN by inhibiting JAK2/STAT signaling and mitochondrial function.
- This study reveals novel mechanisms for metformin and ruxolitinib, suggesting their potential as alternative or complementary therapies for MPN.
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