ArticleJournal of cancer research and clinical oncology2024
Targeting BMAL1 reverses drug resistance of acute myeloid leukemia cells and promotes ferroptosis through HMGB1-GPX4 signaling pathway.
Article in Journal of cancer research and clinical oncology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed.
- Time matters: circadian genetics and the molecular logic of human health and disease.Nature reviews. Genetics · 2026Review
- Circadian rhythm-guided cellular therapy in hematologic malignancies: mechanisms, clinical evidence, and optimization strategies.Biomarker research · 2026Review
- Small-Molecule Modulation of the Circadian Clock in Cancer and Aging.Molecules (Basel, Switzerland) · 2026Review
- Melatonin-engineered MSCs-exosomes deliver USP4 to stabilise ARNTL and inhibit clock rhythmic ferroptosis for enhanced flap survival.Clinical and translational medicine · 2026Article
- Unveiling the metal-driven death: ferroptosis and cuproptosis in leukemia.European journal of medical research · 2025Review
- HMGB1: A Central Node in Cancer Therapy Resistance.International journal of molecular sciences · 2025Review
- Ferroptosis in AML: nanoparticles, biomarkers, and immune rewiring for therapeutic breakthroughs.Discover oncology · 2025Review
- Ferroptosis: a novel therapeutic warrior in the battle against leukemia.Apoptosis : an international journal on programmed cell death · 2025Review
- BMAL1-depletion remodels ceramide metabolism to regulate ferroptosis and sorafenib chemosensitivity in acute myeloid leukemia.iScience · 2025Article
- Unraveling lipid metabolism for acute myeloid leukemia therapy.Current opinion in hematology · 2025Review
- Involvement of HMGB1-mediated ferroptosis in systemic diseases.Frontiers in cell and developmental biology · 2025Review
- The Common Hallmarks and Interconnected Pathways of Aging, Circadian Rhythms, and Cancer: Implications for Therapeutic Strategies.Research (Washington, D.C.) · 2025Review
- Circadian system and aging: where both times interact.Frontiers in aging · 2025Review
- Overcoming the sorafenib resistance mechanism in FLT3-mutated acute myeloid leukemia: molecular basis and new targets.Frontiers in oncology · 2025Review
- Shikonin suppresses proliferation of osteosarcoma cells by inducing ferroptosis through promoting Nrf2 ubiquitination and inhibiting the xCT/GPX4 regulatory axis.Frontiers in pharmacology · 2024Article
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Authors and funding
11 authors.
Funding
Abstract
purposeAcute myeloid leukemia (AML) is a refractory hematologic malignancy that poses a serious threat to human health. Exploring alternative therapeutic strategies capable of inducing alternative modes of cell death, such as ferroptosis, holds great promise as a viable and effective intervention.
methodsWe analyzed online database data and collected clinical samples to verify the expression and function of BMAL1 in AML. We conducted experiments on AML cell proliferation, cell cycle, ferroptosis, and chemotherapy resistance by overexpressing/knocking down BMAL1 and using assays such as MDA detection and BODIPY 581/591 C11 staining. We validated the transcriptional regulation of HMGB1 by BMAL1 through ChIP assay, luciferase assay, RNA level detection, and western blotting. Finally, we confirmed the results of our cell experiments at the animal level.
resultsBMAL1 up-regulation is an observed phenomenon in AML patients. Furthermore, there existed a strong correlation between elevated levels of BMAL1 expression and inferior prognosis in individuals with AML. We found that knocking down BMAL1 inhibited AML cell growth by blocking the cell cycle. Conversely, overexpressing BMAL1 promoted AML cell proliferation. Moreover, our research results revealed that BMAL1 inhibited ferroptosis in AML cells through BMAL1-HMGB1-GPX4 pathway. Finally, knocking down BMAL1 can enhance the efficacy of certain first-line cancer therapeutic drugs, including venetoclax, dasatinib, and sorafenib.
conclusionOur research results suggest that BMAL1 plays a crucial regulatory role in AML cell proliferation, drug resistance, and ferroptosis. BMAL1 could be a potential important therapeutic target for AML.
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