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Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy

Acute kidney injury leading to chronic kidney disease through tubulointerstitial fibrosis is a major challenge in nephropathy. Several signaling pathways promote interstitial fibrosis; however, effective suppression of fibrosis may require blockade of more than one pathway. This study investigated w...

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Autores principales: Jiang, Mengjie, Fan, Jinjin, Qu, Xinli, Li, Songhui, Nilsson, Susan K., Sun, Yu Bo Yang, Chen, Yaping, Yu, Di, Liu, Dan, Liu, Bi-Cheng, Tang, Mingliang, Chen, Wei, Ren, Yi, Nikolic-Paterson, David J., Jiang, Xiaoyun, Li, Jinhua, Yu, Xueqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695473/
https://www.ncbi.nlm.nih.gov/pubmed/31447676
http://dx.doi.org/10.3389/fphar.2019.00880
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author Jiang, Mengjie
Fan, Jinjin
Qu, Xinli
Li, Songhui
Nilsson, Susan K.
Sun, Yu Bo Yang
Chen, Yaping
Yu, Di
Liu, Dan
Liu, Bi-Cheng
Tang, Mingliang
Chen, Wei
Ren, Yi
Nikolic-Paterson, David J.
Jiang, Xiaoyun
Li, Jinhua
Yu, Xueqing
author_facet Jiang, Mengjie
Fan, Jinjin
Qu, Xinli
Li, Songhui
Nilsson, Susan K.
Sun, Yu Bo Yang
Chen, Yaping
Yu, Di
Liu, Dan
Liu, Bi-Cheng
Tang, Mingliang
Chen, Wei
Ren, Yi
Nikolic-Paterson, David J.
Jiang, Xiaoyun
Li, Jinhua
Yu, Xueqing
author_sort Jiang, Mengjie
collection PubMed
description Acute kidney injury leading to chronic kidney disease through tubulointerstitial fibrosis is a major challenge in nephropathy. Several signaling pathways promote interstitial fibrosis; however, effective suppression of fibrosis may require blockade of more than one pathway. This study investigated whether blockade of Smad3 and c-Jun N-terminal kinase (JNK) signaling gives added suppression of interstitial fibrosis in folic acid nephropathy. A single high dose of folic acid (FA) causes acute tubular damage in C57BL/6J mice followed by interstitial fibrosis and chronic renal impairment. Co-activations of Smad3 and JNK signaling occur in both tubular epithelial cells and myofibroblasts in areas of tubulointerstitial damage and fibrosis in both murine FA-induced nephropathy and human IgA nephropathy. Groups of mice were treated with a Smad3 inhibitor (SIS3), a JNK inhibitor (SP600125), or a combination from day 6 after FA administration until being killed on day 28. Each drug efficiently inhibited its specific target (Smad3 phosphorylation or c–Jun phosphorylation) without affecting the other pathway. Given alone, each drug partially reduced renal fibrosis, whereas the combination therapy gave an additive and profound protection from renal fibrosis and improved renal function. Inhibition of Smad3 and/or JNK signaling activities prevented down-regulation of PGC-1α in tubular epithelial cells and up-regulation of PGC-1α in myofibroblasts during FA-induced renal fibrosis and inflammation. The expression of PGC-1α was upregulated in Smad3 (−/−) NRK52E cells while downregulated in Smad3 (−/−)NRK49F cells, suggesting that Smad3 signaling may regulate expression of PGC-1α in renal tubular epithelial cells and fibroblasts in distinct fashion. In vivo and cell culture studies also indicate that Smad3 and JNK signaling cooperate to cause mitochondrial dysfunction and cell damage in tubular epithelial cells via direct actions on the transcription of PGC-1α. These pathways also act cooperatively to promote renal fibroblast proliferation in tempo-spatial fashion. In conclusion, we have identified a potential combination therapy for progressive renal fibrosis which operates, in part, through modifying mitochondrial function.
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spelling pubmed-66954732019-08-23 Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy Jiang, Mengjie Fan, Jinjin Qu, Xinli Li, Songhui Nilsson, Susan K. Sun, Yu Bo Yang Chen, Yaping Yu, Di Liu, Dan Liu, Bi-Cheng Tang, Mingliang Chen, Wei Ren, Yi Nikolic-Paterson, David J. Jiang, Xiaoyun Li, Jinhua Yu, Xueqing Front Pharmacol Pharmacology Acute kidney injury leading to chronic kidney disease through tubulointerstitial fibrosis is a major challenge in nephropathy. Several signaling pathways promote interstitial fibrosis; however, effective suppression of fibrosis may require blockade of more than one pathway. This study investigated whether blockade of Smad3 and c-Jun N-terminal kinase (JNK) signaling gives added suppression of interstitial fibrosis in folic acid nephropathy. A single high dose of folic acid (FA) causes acute tubular damage in C57BL/6J mice followed by interstitial fibrosis and chronic renal impairment. Co-activations of Smad3 and JNK signaling occur in both tubular epithelial cells and myofibroblasts in areas of tubulointerstitial damage and fibrosis in both murine FA-induced nephropathy and human IgA nephropathy. Groups of mice were treated with a Smad3 inhibitor (SIS3), a JNK inhibitor (SP600125), or a combination from day 6 after FA administration until being killed on day 28. Each drug efficiently inhibited its specific target (Smad3 phosphorylation or c–Jun phosphorylation) without affecting the other pathway. Given alone, each drug partially reduced renal fibrosis, whereas the combination therapy gave an additive and profound protection from renal fibrosis and improved renal function. Inhibition of Smad3 and/or JNK signaling activities prevented down-regulation of PGC-1α in tubular epithelial cells and up-regulation of PGC-1α in myofibroblasts during FA-induced renal fibrosis and inflammation. The expression of PGC-1α was upregulated in Smad3 (−/−) NRK52E cells while downregulated in Smad3 (−/−)NRK49F cells, suggesting that Smad3 signaling may regulate expression of PGC-1α in renal tubular epithelial cells and fibroblasts in distinct fashion. In vivo and cell culture studies also indicate that Smad3 and JNK signaling cooperate to cause mitochondrial dysfunction and cell damage in tubular epithelial cells via direct actions on the transcription of PGC-1α. These pathways also act cooperatively to promote renal fibroblast proliferation in tempo-spatial fashion. In conclusion, we have identified a potential combination therapy for progressive renal fibrosis which operates, in part, through modifying mitochondrial function. Frontiers Media S.A. 2019-08-09 /pmc/articles/PMC6695473/ /pubmed/31447676 http://dx.doi.org/10.3389/fphar.2019.00880 Text en Copyright © 2019 Jiang, Fan, Qu, Li, Nilsson, Sun, Chen, Yu, Liu, Liu, Tang, Chen, Ren, Nikolic-Paterson, Jiang, Li and Yu http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Jiang, Mengjie
Fan, Jinjin
Qu, Xinli
Li, Songhui
Nilsson, Susan K.
Sun, Yu Bo Yang
Chen, Yaping
Yu, Di
Liu, Dan
Liu, Bi-Cheng
Tang, Mingliang
Chen, Wei
Ren, Yi
Nikolic-Paterson, David J.
Jiang, Xiaoyun
Li, Jinhua
Yu, Xueqing
Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title_full Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title_fullStr Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title_full_unstemmed Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title_short Combined Blockade of Smad3 and JNK Pathways Ameliorates Progressive Fibrosis in Folic Acid Nephropathy
title_sort combined blockade of smad3 and jnk pathways ameliorates progressive fibrosis in folic acid nephropathy
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695473/
https://www.ncbi.nlm.nih.gov/pubmed/31447676
http://dx.doi.org/10.3389/fphar.2019.00880
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