Publication: Integration of High-Throughput Imaging and Multiparametric Metabolic Profiling Reveals a Mitochondrial Mechanism of Tenofovir Toxicity
Integration of High-Throughput Imaging and Multiparametric Metabolic Profiling Reveals a Mitochondrial Mechanism of Tenofovir Toxicity
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Pearson, A., Haenni, D., Bouitbir, J., Hunt, M., Payne, B. A. I., Sachdeva, A., Hung, R. K. Y., Post, F. A., Connolly, J., Nlandu-Khodo, S., Jankovic, N., Bugarski, M., & Hall, A. M. (2022). Integration of High-Throughput Imaging and Multiparametric Metabolic Profiling Reveals a Mitochondrial Mechanism of Tenofovir Toxicity. Function, 4(1), zqac065. https://doi.org/10.1093/function/zqac065
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Nephrotoxicity is a major cause of kidney disease and failure in drug development, but understanding of cellular mechanisms is limited, highlighting the need for better experimental models and methodological approaches. Most nephrotoxins damage the proximal tubule (PT), causing functional impairment of solute reabsorption and systemic metabolic complications. The antiviral drug tenofovir disoproxil fumarate (TDF) is an archetypal nephrotoxin, inducing mitochondrial abnormalities and urinary solute wasting, for reasons that were previo
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Pearson, A., Haenni, D., Bouitbir, J., Hunt, M., Payne, B. A. I., Sachdeva, A., Hung, R. K. Y., Post, F. A., Connolly, J., Nlandu-Khodo, S., Jankovic, N., Bugarski, M., & Hall, A. M. (2022). Integration of High-Throughput Imaging and Multiparametric Metabolic Profiling Reveals a Mitochondrial Mechanism of Tenofovir Toxicity. Function, 4(1), zqac065. https://doi.org/10.1093/function/zqac065