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Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function

Multiple clinical studies have shown that bardoxolone methyl, a potent activator of nuclear factor erythroid 2–related factor 2 (Nrf2), is effective in increasing glomerular filtration rate in patients with chronic kidney disease. However, whether an Nrf2 activator can protect tubules from proteinur...

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Autores principales: Nagasu, Hajime, Sogawa, Yuji, Kidokoro, Kengo, Itano, Seiji, Yamamoto, Toshiya, Satoh, Minoru, Sasaki, Tamaki, Suzuki, Takafumi, Yamamoto, Masayuki, Wigley, W. Christian, Proksch, Joel W., Meyer, Colin J., Kashihara, Naoki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Federation of American Societies for Experimental Biology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6902727/
https://www.ncbi.nlm.nih.gov/pubmed/31431054
http://dx.doi.org/10.1096/fj.201900217R
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author Nagasu, Hajime
Sogawa, Yuji
Kidokoro, Kengo
Itano, Seiji
Yamamoto, Toshiya
Satoh, Minoru
Sasaki, Tamaki
Suzuki, Takafumi
Yamamoto, Masayuki
Wigley, W. Christian
Proksch, Joel W.
Meyer, Colin J.
Kashihara, Naoki
author_facet Nagasu, Hajime
Sogawa, Yuji
Kidokoro, Kengo
Itano, Seiji
Yamamoto, Toshiya
Satoh, Minoru
Sasaki, Tamaki
Suzuki, Takafumi
Yamamoto, Masayuki
Wigley, W. Christian
Proksch, Joel W.
Meyer, Colin J.
Kashihara, Naoki
author_sort Nagasu, Hajime
collection PubMed
description Multiple clinical studies have shown that bardoxolone methyl, a potent activator of nuclear factor erythroid 2–related factor 2 (Nrf2), is effective in increasing glomerular filtration rate in patients with chronic kidney disease. However, whether an Nrf2 activator can protect tubules from proteinuria-induced tubular damage via anti-inflammatory and antioxidative stress mechanisms is unknown. Using an Institute of Cancer Research–derived glomerulonephritis (ICGN) mouse model of nephrosis, we examined the effects of dihydro-CDDO-trifluoroethyl amide (dh404), a rodent-tolerable bardoxolone methyl analog, in protecting the tubulointerstitium; dh404 markedly suppressed tubular epithelial cell damage in the renal interstitium of ICGN mice. The tubular epithelial cells of ICGN mice showed a decrease in the size and number of mitochondria, as well as the breakdown of the crista structure, whereas the number and ultrastructure of mitochondria were maintained by the dh404 treatment. To further determine the effect of dh404 on mitochondrial function, we used human proximal tubular cells in vitro. Stimulation with albumin and free fatty acid increased mitochondrial reactive oxygen species (ROS). However, dh404 administration diminished mitochondrial ROS. Our data show that dh404 significantly reduced proteinuria-induced tubular cell mitochondrial damage, suggesting that improved redox balance and mitochondrial function and suppression of inflammation underlie the cytoprotective mechanism of Nrf2 activators, including bardoxolone methyl, in diabetic kidney disease.—Nagasu, H., Sogawa, Y., Kidokoro, K., Itano, S., Yamamoto, T., Satoh, M., Sasaki, T., Suzuki, T., Yamamoto, M., Wigley, W. C., Proksch, J. W., Meyer, C. J., Kashihara, N. Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function.
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spelling pubmed-69027272019-12-16 Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function Nagasu, Hajime Sogawa, Yuji Kidokoro, Kengo Itano, Seiji Yamamoto, Toshiya Satoh, Minoru Sasaki, Tamaki Suzuki, Takafumi Yamamoto, Masayuki Wigley, W. Christian Proksch, Joel W. Meyer, Colin J. Kashihara, Naoki FASEB J Research Multiple clinical studies have shown that bardoxolone methyl, a potent activator of nuclear factor erythroid 2–related factor 2 (Nrf2), is effective in increasing glomerular filtration rate in patients with chronic kidney disease. However, whether an Nrf2 activator can protect tubules from proteinuria-induced tubular damage via anti-inflammatory and antioxidative stress mechanisms is unknown. Using an Institute of Cancer Research–derived glomerulonephritis (ICGN) mouse model of nephrosis, we examined the effects of dihydro-CDDO-trifluoroethyl amide (dh404), a rodent-tolerable bardoxolone methyl analog, in protecting the tubulointerstitium; dh404 markedly suppressed tubular epithelial cell damage in the renal interstitium of ICGN mice. The tubular epithelial cells of ICGN mice showed a decrease in the size and number of mitochondria, as well as the breakdown of the crista structure, whereas the number and ultrastructure of mitochondria were maintained by the dh404 treatment. To further determine the effect of dh404 on mitochondrial function, we used human proximal tubular cells in vitro. Stimulation with albumin and free fatty acid increased mitochondrial reactive oxygen species (ROS). However, dh404 administration diminished mitochondrial ROS. Our data show that dh404 significantly reduced proteinuria-induced tubular cell mitochondrial damage, suggesting that improved redox balance and mitochondrial function and suppression of inflammation underlie the cytoprotective mechanism of Nrf2 activators, including bardoxolone methyl, in diabetic kidney disease.—Nagasu, H., Sogawa, Y., Kidokoro, K., Itano, S., Yamamoto, T., Satoh, M., Sasaki, T., Suzuki, T., Yamamoto, M., Wigley, W. C., Proksch, J. W., Meyer, C. J., Kashihara, N. Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function. Federation of American Societies for Experimental Biology 2019-11 2019-08-30 /pmc/articles/PMC6902727/ /pubmed/31431054 http://dx.doi.org/10.1096/fj.201900217R Text en © The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 4.0 International (CC BY 4.0) (http://creativecommons.org/licenses/by/4.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Nagasu, Hajime
Sogawa, Yuji
Kidokoro, Kengo
Itano, Seiji
Yamamoto, Toshiya
Satoh, Minoru
Sasaki, Tamaki
Suzuki, Takafumi
Yamamoto, Masayuki
Wigley, W. Christian
Proksch, Joel W.
Meyer, Colin J.
Kashihara, Naoki
Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title_full Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title_fullStr Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title_full_unstemmed Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title_short Bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
title_sort bardoxolone methyl analog attenuates proteinuria-induced tubular damage by modulating mitochondrial function
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6902727/
https://www.ncbi.nlm.nih.gov/pubmed/31431054
http://dx.doi.org/10.1096/fj.201900217R
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