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Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression

The final pathway for the development of diabetic nephropathy (DN) into chronic renal failure in DN is glomerulosclerosis and tubulointerstitial fibrosis. Renal tubular lesions can occur in the early stage of DN renal injury. Cumulative evidence shows that oxymatrine (OMT) has a variety of biologica...

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Autores principales: Xiao, Ying, Peng, Can, Xiao, Yawen, Liang, Dan, Yuan, Zhiping, Li, Zhiyang, Shi, Mingjun, Wang, Yuanyuan, Zhang, Fan, Guo, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7317027/
https://www.ncbi.nlm.nih.gov/pubmed/32636757
http://dx.doi.org/10.3389/fphys.2020.00599
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author Xiao, Ying
Peng, Can
Xiao, Yawen
Liang, Dan
Yuan, Zhiping
Li, Zhiyang
Shi, Mingjun
Wang, Yuanyuan
Zhang, Fan
Guo, Bing
author_facet Xiao, Ying
Peng, Can
Xiao, Yawen
Liang, Dan
Yuan, Zhiping
Li, Zhiyang
Shi, Mingjun
Wang, Yuanyuan
Zhang, Fan
Guo, Bing
author_sort Xiao, Ying
collection PubMed
description The final pathway for the development of diabetic nephropathy (DN) into chronic renal failure in DN is glomerulosclerosis and tubulointerstitial fibrosis. Renal tubular lesions can occur in the early stage of DN renal injury. Cumulative evidence shows that oxymatrine (OMT) has a variety of biological and pharmacological properties. In recent years, more attention has been paid on the preventive and therapeutic influence of OMT on organ fibrosis. In this experiment, db/db mice were intraperitoneally injected with OMT 120 mg/kg for 8 weeks, and NRK-52E cultured with 30 mmol/L glucose and 0.1 mg/mL OMT for 48-hour. We investigated the relationship between Id2 and Twist in NRK-52E cells and the effect of OMT on the expression of E-cadherin, α-SMA, Fibronectin, and Collagen-IV by Western blot, Real-time PCR, Immunofluorescence, cell transfection, Co-Immunoprecipitation, and Luciferase assays. OMT increased the expression of Id2 but decreased that of Twist under high glucose condition in vitro and in vivo. The promoted recovery of Id2 facilitated its binding to Twist and affected E-cadherin activity inhibiting EMT and the excessive proliferation and abnormal deposition of ECM. In brief, OMT promotes Id2 to reverse EMT and exert anti-fibrotic effect in diabetic renal tubular epithelial cells by binding Id2 to Twist and affecting its transcriptional activation of downstream target genes. Or findings provide a new experimental basis for delaying the progress and for treatment of diabetic renal fibrosis.
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spelling pubmed-73170272020-07-06 Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression Xiao, Ying Peng, Can Xiao, Yawen Liang, Dan Yuan, Zhiping Li, Zhiyang Shi, Mingjun Wang, Yuanyuan Zhang, Fan Guo, Bing Front Physiol Physiology The final pathway for the development of diabetic nephropathy (DN) into chronic renal failure in DN is glomerulosclerosis and tubulointerstitial fibrosis. Renal tubular lesions can occur in the early stage of DN renal injury. Cumulative evidence shows that oxymatrine (OMT) has a variety of biological and pharmacological properties. In recent years, more attention has been paid on the preventive and therapeutic influence of OMT on organ fibrosis. In this experiment, db/db mice were intraperitoneally injected with OMT 120 mg/kg for 8 weeks, and NRK-52E cultured with 30 mmol/L glucose and 0.1 mg/mL OMT for 48-hour. We investigated the relationship between Id2 and Twist in NRK-52E cells and the effect of OMT on the expression of E-cadherin, α-SMA, Fibronectin, and Collagen-IV by Western blot, Real-time PCR, Immunofluorescence, cell transfection, Co-Immunoprecipitation, and Luciferase assays. OMT increased the expression of Id2 but decreased that of Twist under high glucose condition in vitro and in vivo. The promoted recovery of Id2 facilitated its binding to Twist and affected E-cadherin activity inhibiting EMT and the excessive proliferation and abnormal deposition of ECM. In brief, OMT promotes Id2 to reverse EMT and exert anti-fibrotic effect in diabetic renal tubular epithelial cells by binding Id2 to Twist and affecting its transcriptional activation of downstream target genes. Or findings provide a new experimental basis for delaying the progress and for treatment of diabetic renal fibrosis. Frontiers Media S.A. 2020-06-19 /pmc/articles/PMC7317027/ /pubmed/32636757 http://dx.doi.org/10.3389/fphys.2020.00599 Text en Copyright © 2020 Xiao, Peng, Xiao, Liang, Yuan, Li, Shi, Wang, Zhang and Guo. 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 Physiology
Xiao, Ying
Peng, Can
Xiao, Yawen
Liang, Dan
Yuan, Zhiping
Li, Zhiyang
Shi, Mingjun
Wang, Yuanyuan
Zhang, Fan
Guo, Bing
Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title_full Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title_fullStr Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title_full_unstemmed Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title_short Oxymatrine Inhibits Twist-Mediated Renal Tubulointerstitial Fibrosis by Upregulating Id2 Expression
title_sort oxymatrine inhibits twist-mediated renal tubulointerstitial fibrosis by upregulating id2 expression
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7317027/
https://www.ncbi.nlm.nih.gov/pubmed/32636757
http://dx.doi.org/10.3389/fphys.2020.00599
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