Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/39468
Title: Mineralocorticoid receptor signaling as a therapeutic target for renal and cardiac fibrosis.
Authors: Tesch G.H.;Young M.J.
Monash Health Department(s): Nephrology
Institution: (Tesch) Department of Nephrology, Monash Health, Clayton, VIC, Australia (Tesch) Monash University Department of Medicine, Monash Health, Clayton, VIC, Australia (Tesch) Centre for Inflammatory Diseases, Monash Health, Clayton, VIC, Australia (Young) Hudson Institute of Medical Research, Clayton, VIC, Australia
Issue Date: 10-Jul-2017
Copyright year: 2017
Publisher: Frontiers Media S.A. (E-mail: info@frontiersin.org)
Place of publication: Switzerland
Publication information: Frontiers in Pharmacology. 8 (MAY) (no pagination), 2017. Article Number: 313. Date of Publication: 29 May 2017.
Journal: Frontiers in Pharmacology
Abstract: Activation of the mineralocorticoid receptor (MR) plays important roles in both physiological and pathological events. Blockade of MR signaling with MR antagonists (MRAs) has been used clinically to treat kidney and cardiac disease associated with hypertension and other chronic diseases, resulting in suppression of fibrosis in these organs. However, the current use of steroidal MRAs has been limited by off target effects on other hormone receptors or adverse effects on kidney tubular function. In this review, we summarize recent insights into the profibrotic roles of MR signaling in kidney and cardiovascular disease. We review experimental in vitro data identifying the pathological mechanisms associated with MR signaling in cell types found in the kidney (mesangial cells, podocytes, tubular cells, macrophages, interstitial fibroblasts) and heart (cardiomyocytes, endothelial cells, vascular smooth muscle cells, macrophages). In addition, we demonstrate the in vivo importance of MR signaling in specific kidney and cardiac cell types by reporting the outcomes of cell type selective MR gene deletion in animal models of kidney and cardiac disease and comparing these findings to those obtained with MRAs treatment. This review also includes a discussion of the potential benefits of novel non-steroidal MRAs for targeting kidney and cardiac fibrosis compared to existing steroidal MRAs, as well as the possibility of novel combination therapies and cell selective delivery of MRAs.Copyright © 2017 Tesch and Young.
DOI: http://monash.idm.oclc.org/login?url=http://dx.doi.org/10.3389/fphar.2017.00313
Link to associated publication: Click here for full text options
ISSN: 1663-9812 (electronic)
URI: https://repository.monashhealth.org/monashhealthjspui/handle/1/39468
Type: Short Survey
Subjects: podocyte
cardiac muscle cell
chronic kidney failure/dt [Drug Therapy]
chronic kidney failure/et [Etiology]
chronic kidney failure/th [Therapy]
disease course
drug targeting
endothelium cell
fibroblast
fibrogenesis
gene deletion
heart failure/dt [Drug Therapy]
heart failure/et [Etiology]
*heart muscle fibrosis/et [Etiology]
heart protection
hormone action
human
hyperkalemia/co [Complication]
in vitro study
inflammation
intracellular signaling
*kidney fibrosis/dt [Drug Therapy]
*kidney fibrosis/et [Etiology]
kidney fibrosis/dt [Drug Therapy]
kidney injury
kidney tubule cell
macrophage
mesangium cell
nonhuman
oxidative stress
pathogenesis
renal protection
renin angiotensin aldosterone system
short survey
vascular smooth muscle cell
aldosterone/ec [Endogenous Compound]
dipeptidyl carboxypeptidase inhibitor
mineralocorticoid antagonist/dt [Drug Therapy]
*mineralocorticoid receptor/ec [Endogenous Compound]
kidney injury
renin angiotensin aldosterone system
hyperkalemia / complication
human
mesangium cell
nonhuman
oxidative stress
macrophage
kidney tubule cell
in vitro study
Short Survey
vascular smooth muscle cell
intracellular signaling
inflammation
kidney fibrosis / drug therapy
*kidney fibrosis / *drug therapy / *etiology
hormone action
heart protection
*heart muscle fibrosis / *etiology
heart failure / drug therapy / etiology
gene deletion
fibrogenesis
cardiac muscle cell
chronic kidney failure / drug therapy / etiology / therapy
disease course
drug targeting
endothelium cell
fibroblast
pathogenesis
podocyte
renal protection
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