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Physiological Reports|February 28, 2024
NRF2 in kidney physiology and diseaseCorry D Bondi, Hannah L Hartman, Roderick J Tan
International Journal of Molecular Sciences|May 11, 2024
Podocyte-Specific Deletion of MCP-1 Fails to Protect against Angiotensin II- or Adriamycin-Induced Glomerular DiseaseCorry D Bondi, Hannah L Hartman, Brittney M Rush, et al.
International Journal of Molecular Sciences|March 14, 2026
Tubular Epithelia-Specific Deletion of MCP-1 Does Not Afford Protection Against Adriamycin-Induced Kidney InjuryCorry D Bondi, Hannah L Hartman, Josie L Gilbert, et al.
Antioxidants (Basel, Switzerland)|September 23, 2022
Suppression of NRF2 Activity by HIF-1α Promotes Fibrosis after Ischemic Acute Kidney InjuryCorry D Bondi, Brittney M Rush, Hannah L Hartman, et al.
American Journal of Physiology. Renal Physiology|November 8, 2021
Cubilin-, megalin-, and Dab2-dependent transcription revealed by CRISPR/Cas9 knockout in kidney proximal tubule cellsKimberly R Long, Youssef Rbaibi, Corry D Bondi, et al.
Kidney International|January 7, 2022
One small mouse step for manRoderick J Tan
Kidney International|August 21, 2020
Genetic or pharmacologic Nrf2 activation increases proteinuria in chronic kidney disease in miceBrittney M Rush, Corry D Bondi, Sean D Stocker, et al.
American Journal of Physiology. Renal Physiology|April 12, 2012
Matrix metalloproteinases in kidney homeostasis and diseasesRoderick J Tan, Youhua Liu
American Journal of Physiology. Renal Physiology|October 3, 2024
Matrix metalloproteinases in kidney homeostasis and diseases: an updateRoderick J Tan, Youhua Liu
Nitric Oxide : Biology and Chemistry|April 2, 2018
Nitrolipids in kidney physiology and diseaseSoma Jobbagy, Roderick J Tan
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