ArticleKidney international2021
Kidney toxicity of the BRAF-kinase inhibitor vemurafenib is driven by off-target ferrochelatase inhibition.
Article in Kidney international, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 28 citations in OpenAlex.
- Review
- Ten tips for an onco-nephrology clinic.Clinical kidney journal · 2025Review
- Increased Mitochondrial Superoxide Level Is Partially Associated With Vemurafenib-Induced Renal Tubular Toxicity.Basic & clinical pharmacology & toxicology · 2025Article
- Resazurin dye is an in vivo sensor of kidney tubular function.Kidney international · 2025Article
- Microfluidics and molecular diagnostics in renal cell carcinoma: advances, challenges, and future directions.Frontiers in oncology · 2025Review
- Critical role of VHL/BICD2/STAT1 axis in crystal-associated kidney disease.Cell death & disease · 2023Article
- Vemurafenib Inhibits Acute and Chronic Enterovirus Infection by Affecting Cellular Kinase Phosphatidylinositol 4-Kinase Type IIIβ.Microbiology spectrum · 2023Article
- Zinc finger protein 24-dependent transcription factor SOX9 up-regulation protects tubular epithelial cells during acute kidney injury.Kidney international · 2023Article
- Onconephrology 2022: An Update.Kidney360 · 2023Review
- Pharmacological approaches to understanding protein kinase signaling networks.Frontiers in pharmacology · 2023Review
- Ferrochelatase: Mapping the Intersection of Iron and Porphyrin Metabolism in the Mitochondria.Frontiers in cell and developmental biology · 2022Review
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17 authors at 6 institutions in 2 countries.
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Abstract
A multitude of disease and therapy related factors drive the frequent development of kidney disorders in cancer patients. Along with chemotherapy, the newer targeted therapeutics can also cause kidney dysfunction through on and off-target mechanisms. Interestingly, among the small molecule inhibitors approved for the treatment of cancers that harbor BRAF-kinase activating mutations, vemurafenib can trigger tubular damage and acute kidney injury. BRAF is a proto-oncogene involved in cell growth. To investigate the underlying mechanisms, we developed cell culture and mouse models of vemurafenib kidney toxicity. At clinically relevant concentrations vemurafenib induces cell-death in transformed and primary mouse and human kidney tubular epithelial cells. In mice, two weeks of daily vemurafenib treatment causes moderate acute kidney injury with histopathological characteristics of kidney tubular epithelial cells injury. Importantly, kidney tubular epithelial cell-specific BRAF gene deletion did not influence kidney function under normal conditions or alter the severity of vemurafenib-associated kidney impairment. Instead, we found that inhibition of ferrochelatase, an enzyme involved in heme biosynthesis contributes to vemurafenib kidney toxicity. Ferrochelatase overexpression protected kidney tubular epithelial cells and conversely ferrochelatase knockdown increased the sensitivity to vemurafenib-induced kidney toxicity. Thus, our studies suggest that vemurafenib-associated kidney tubular epithelial cell dysfunction and kidney toxicity is BRAF-independent and caused, in part, by off-target ferrochelatase inhibition.
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