[HTML][HTML] Regulation of aldosterone secretion by Cav1.3

CB Xie, L Haris Shaikh, S Garg, G Tanriver, AED Teo… - Scientific reports, 2016 - nature.com
CB Xie, L Haris Shaikh, S Garg, G Tanriver, AED Teo, J Zhou, C Maniero, W Zhao, S Kang…
Scientific reports, 2016nature.com
Aldosterone-producing adenomas (APAs) vary in phenotype and genotype. Zona
glomerulosa (ZG)-like APAs frequently have mutations of an L-type calcium channel (LTCC)
CaV1. 3. Using a novel antagonist of CaV1. 3, compound 8, we investigated the role of
CaV1. 3 on steroidogenesis in the human adrenocortical cell line, H295R and in primary
human adrenal cells. This investigational drug was compared with the common
antihypertensive drug nifedipine, which has 4.5-fold selectivity for the vascular LTCC, CaV1 …
Abstract
Aldosterone-producing adenomas (APAs) vary in phenotype and genotype. Zona glomerulosa (ZG)-like APAs frequently have mutations of an L-type calcium channel (LTCC) CaV1.3. Using a novel antagonist of CaV1.3, compound 8, we investigated the role of CaV1.3 on steroidogenesis in the human adrenocortical cell line, H295R and in primary human adrenal cells. This investigational drug was compared with the common antihypertensive drug nifedipine, which has 4.5-fold selectivity for the vascular LTCC, CaV1.2, over CaV1.3. In H295R cells transfected with wild-type or mutant CaV1.3 channels, the latter produced more aldosterone than wild-type, which was ameliorated by 100 μM of compound 8. In primary adrenal and non-transfected H295R cells, compound 8 decreased aldosterone production similar to high concentration of nifedipine (100 μM). Selective CaV1.3 blockade may offer a novel way of treating primary hyperaldosteronism, which avoids the vascular side effects of CaV1.2-blockade and provides targeted treatment for ZG-like APAs with mutations of CaV1.3.
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