Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors
Introduction: In this study, we investigated whether AngII receptors (AT1a and AT2) contributed to the development of the aldosterone-induced inflammatory response of rat mesangial cells (RMCs). Materials and methods: RMCs were isolated from the glomeruli of normal or diabetic rats which were produc...
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2015-12-01
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Series: | Journal of the Renin-Angiotensin-Aldosterone System |
Online Access: | https://doi.org/10.1177/1470320313519486 |
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doaj-b824927cb6fd418384ea1b513b887c262021-05-02T14:36:22ZengHindawi - SAGE PublishingJournal of the Renin-Angiotensin-Aldosterone System1470-32031752-89762015-12-011610.1177/1470320313519486Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptorsJianbing HaoLiansheng RenLei ZhangDeyang KongLirong HaoIntroduction: In this study, we investigated whether AngII receptors (AT1a and AT2) contributed to the development of the aldosterone-induced inflammatory response of rat mesangial cells (RMCs). Materials and methods: RMCs were isolated from the glomeruli of normal or diabetic rats which were produced by injection of streptozotocin, and cultured in high-glucose media. In order to evaluate the effects of aldosterone, the expression of AT1a, AT2, NF-κB and MCP-1 was detected. In addition, in order to evaluate the role of Ang II receptors, AT1a and AT2 genes were blocked and the expression of NF-κB and MCP-1 was detected. Moreover, for assessing the relationship between NF-κB and MCP-1, the NF-κB gene was blocked and MCP-1 expression was detected. Results: Aldosterone significantly increased AT1a, AT2, NF-κB and MCP-1 levels in RMCs in a dose-dependent manner, whereas eplerenone (EPI), a selective aldosterone antagonist, partly inhibited the effects of aldosterone. When AT1a and AT2 genes were blocked, the expression of NF-κB and MCP-1 was greatly inhibited. Moreover, when the NF-κB gene was silenced, the expression of MCP-1 was reduced. Conclusion: We demonstrated that aldosterone induced an inflammatory response in RMCs cultured in high-glucose media via the AT1a and AT2 pathways.https://doi.org/10.1177/1470320313519486 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jianbing Hao Liansheng Ren Lei Zhang Deyang Kong Lirong Hao |
spellingShingle |
Jianbing Hao Liansheng Ren Lei Zhang Deyang Kong Lirong Hao Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors Journal of the Renin-Angiotensin-Aldosterone System |
author_facet |
Jianbing Hao Liansheng Ren Lei Zhang Deyang Kong Lirong Hao |
author_sort |
Jianbing Hao |
title |
Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors |
title_short |
Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors |
title_full |
Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors |
title_fullStr |
Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors |
title_full_unstemmed |
Aldosterone-induced inflammatory response of mesangial cells via angiotension II receptors |
title_sort |
aldosterone-induced inflammatory response of mesangial cells via angiotension ii receptors |
publisher |
Hindawi - SAGE Publishing |
series |
Journal of the Renin-Angiotensin-Aldosterone System |
issn |
1470-3203 1752-8976 |
publishDate |
2015-12-01 |
description |
Introduction: In this study, we investigated whether AngII receptors (AT1a and AT2) contributed to the development of the aldosterone-induced inflammatory response of rat mesangial cells (RMCs). Materials and methods: RMCs were isolated from the glomeruli of normal or diabetic rats which were produced by injection of streptozotocin, and cultured in high-glucose media. In order to evaluate the effects of aldosterone, the expression of AT1a, AT2, NF-κB and MCP-1 was detected. In addition, in order to evaluate the role of Ang II receptors, AT1a and AT2 genes were blocked and the expression of NF-κB and MCP-1 was detected. Moreover, for assessing the relationship between NF-κB and MCP-1, the NF-κB gene was blocked and MCP-1 expression was detected. Results: Aldosterone significantly increased AT1a, AT2, NF-κB and MCP-1 levels in RMCs in a dose-dependent manner, whereas eplerenone (EPI), a selective aldosterone antagonist, partly inhibited the effects of aldosterone. When AT1a and AT2 genes were blocked, the expression of NF-κB and MCP-1 was greatly inhibited. Moreover, when the NF-κB gene was silenced, the expression of MCP-1 was reduced. Conclusion: We demonstrated that aldosterone induced an inflammatory response in RMCs cultured in high-glucose media via the AT1a and AT2 pathways. |
url |
https://doi.org/10.1177/1470320313519486 |
work_keys_str_mv |
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