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- W2042022260 abstract "Objective Mineralocorticoids and glucocorticoids have been implicated in the pathogenesis of cardiac diseases; however, both in vivo and in vitro studies indicate that changes in the cellular milieu of either the cardiomyocyte and/or cells of the vasculature is required for corticosteroid signalling to be pathological. The aim of the current study was to directly address whether signalling pathways that are activated during myocyte hypertrophy alter corticosteroid signalling and thus enable these steroids to significantly impact on the hypertrophic response. Methods Neonatal rat ventricular cardiomyocytes were treated with phenylephrine or phorbol ester for 48 h to induce myocyte hypertrophy. Following treatment, the expression of glucocorticoid receptor, mineralocorticoid receptor, and 11β-hydroxysteroid dehydrogenase were determined by ribonuclease protection assay. In addition, the activity of 11β-hydroxysteroid dehydrogenase and the ability of glucocorticoid and mineralocorticoid receptors to induce serum- and glucocorticoid-induced kinase 1 (SGK1) gene transcription were assessed. Corticosteroid effects on phenylephrine and phorbol ester-induced hypertrophy were determined by measuring atrial natriuretic peptide (ANP) mRNA expression, protein synthesis, or induction of rDNA transcription. Results Incubation of cardiomyocytes with phenylephrine and phorbol ester for 48 h led to a hypertrophic response with an associated 8- to 12-fold increase in ANP mRNA and 2-fold increase in rDNA transcription. Cardiomyocyte hypertrophy led to a significant 2-fold increase in glucocorticoid receptor and mineralocorticoid receptor expression that resulted in enhanced receptor signaling as judged via the ability of corticosterone and aldosterone to induce SGK1 gene transcription. 11β-Hydroxysteroid dehydrogenase2 was not detected in normal or hypertrophied cardiomyocytes, and 11β-hydroxysteroid dehydrogenase exclusively demonstrated reductase activity, converting the inactive 11-ketometabolite back to active glucocorticoid. 11β-Hydroxysteroid dehydrogenase1 expression and reductase activity were increased with phorbol ester-induced hypertrophy but not phenylephrine-induced hypertrophy. In basal cardiomyocytes, either aldosterone or corticosterone induced only a minor increase in ANP mRNA and protein synthesis; however, in cardiomyocytes primed with phenylephrine, both corticosteroids significantly potentiated phenylephrine-mediated effects via activation of the glucocorticoid receptor. Conclusion In the present study we demonstrate that significant cross talk exists in the cardiomyocyte between corticosteroid receptor-activated pathways and both protein kinase C and alpha-adrenergic signalling. Cellular changes associated with the hypertrophic response promote corticosteroid signalling and allow for corticosteroid-mediated potentiation of alpha-adrenergic receptor signalling. Such augmentation of cardiomyocyte hypertrophy may in part explain the role that corticosteroid hormones play in the pathophysiological progression of heart disease." @default.
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- W2042022260 date "2006-06-01" @default.
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- W2042022260 title "Cross talk between corticosteroids and alpha-adrenergic signalling augments cardiomyocyte hypertrophy: A possible role for SGK1" @default.
- W2042022260 cites W137431462 @default.
- W2042022260 cites W1593840455 @default.
- W2042022260 cites W1625691044 @default.
- W2042022260 cites W1775749144 @default.
- W2042022260 cites W1966962224 @default.
- W2042022260 cites W1973165349 @default.
- W2042022260 cites W1973854089 @default.
- W2042022260 cites W1977518774 @default.
- W2042022260 cites W1978894148 @default.
- W2042022260 cites W1982736328 @default.
- W2042022260 cites W1985232718 @default.
- W2042022260 cites W1989603622 @default.
- W2042022260 cites W1989950796 @default.
- W2042022260 cites W1996617122 @default.
- W2042022260 cites W2003578638 @default.
- W2042022260 cites W2011066442 @default.
- W2042022260 cites W2012697879 @default.
- W2042022260 cites W2013961425 @default.
- W2042022260 cites W2016022005 @default.
- W2042022260 cites W2019216135 @default.
- W2042022260 cites W2028852620 @default.
- W2042022260 cites W2031558942 @default.
- W2042022260 cites W2032322680 @default.
- W2042022260 cites W2034652601 @default.
- W2042022260 cites W2036317485 @default.
- W2042022260 cites W2037408526 @default.
- W2042022260 cites W2038234450 @default.
- W2042022260 cites W2048011942 @default.
- W2042022260 cites W2055719290 @default.
- W2042022260 cites W2064984426 @default.
- W2042022260 cites W2065889463 @default.
- W2042022260 cites W2066180500 @default.
- W2042022260 cites W2066991902 @default.
- W2042022260 cites W2067837318 @default.
- W2042022260 cites W2076629036 @default.
- W2042022260 cites W2093009414 @default.
- W2042022260 cites W2103618464 @default.
- W2042022260 cites W2106588387 @default.
- W2042022260 cites W2107267499 @default.
- W2042022260 cites W2107991573 @default.
- W2042022260 cites W2108548563 @default.
- W2042022260 cites W2116087989 @default.
- W2042022260 cites W2119477283 @default.
- W2042022260 cites W2124370258 @default.
- W2042022260 cites W2124941107 @default.
- W2042022260 cites W2128777135 @default.
- W2042022260 cites W2130678592 @default.
- W2042022260 cites W2134765554 @default.
- W2042022260 cites W2134812217 @default.
- W2042022260 cites W2140323008 @default.
- W2042022260 cites W2148114970 @default.
- W2042022260 cites W2152094259 @default.
- W2042022260 cites W2158785293 @default.
- W2042022260 cites W2161388092 @default.
- W2042022260 cites W2169494292 @default.
- W2042022260 cites W2179199687 @default.
- W2042022260 cites W2179386874 @default.
- W2042022260 cites W2179904823 @default.
- W2042022260 cites W2206511590 @default.
- W2042022260 cites W2207297727 @default.
- W2042022260 cites W2323458614 @default.
- W2042022260 cites W2328926651 @default.
- W2042022260 cites W2407703666 @default.
- W2042022260 doi "https://doi.org/10.1016/j.cardiores.2006.02.010" @default.
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