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Tannic acid, a vasodilator present in wines and beverages, stimulates Ca2+ influx via TRP channels in bEND.3 endothelial cells

机译:葡萄酸,一种存在于葡萄酒和饮料中的血管扩张器,通过Bend.3内皮细胞中的TRP通道刺激CA2 +流入

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摘要

Tannic acid (TA) is a polyphenol compound present in wines and many beverages. Although previous works have shown that TA could cause vasodilation in an endothelial cell (EC)-dependent manner, there is hitherto no report showing whether TA could raise EC cytosolic Ca2+ concentration. In this work we examined the effects of TA on cytosolic Ca2+ of mouse brain bEND.3 EC. TA (1-30 mu M) caused a slow elevation in cytosolic Ca2+ level in a concentration-dependent manner. At 30 mu M, TA triggered Ca2+ influx without causing intracellular Ca2+ release. TA-triggered Ca2+ influx was suppressed by Ni2+ (a non-specific Ca2+ channel blocker), ruthenium red and SKF 96365 (non-specific TRP channel blockers), CBA (a selective TRPM4 inhibitor) and M 084 (a selective TRPC4/C5 blocker). However, TA-triggered Ca2+ influx pathway was not permeable to Mn2+. Our results suggest TA activated TRP channels, possibly TRPM4 and TRPC4/C5, to promote influx of Ca2+. (C) 2020 Elsevier Inc. All rights reserved.
机译:鞣酸(TA)是葡萄酒和许多饮料中存在的多酚化合物。 尽管以前的作用表明,TA可能导致内皮细胞(EC)依赖性的血管舒张,但迄今为止没有报告显示TA是否可以提高EC细胞溶质CA2 +浓度。 在这项工作中,我们检查了TA对小鼠脑弯曲的细胞溶胶CA2 +的影响。 TA(1-30μm)以浓度依赖的方式引起细胞溶胶CA2 +水平的缓慢升高。 在30μm,ta触发Ca2 +流入而不会引起细胞内Ca2 +释放。 通过Ni2 +(非特异性Ca2 +通道阻断剂),钌红色和SKF 96365(非特异性TRP通道阻滞剂),CBA(选择性TRPM4抑制剂)和M 084(选择性TRPC4 / C5阻挡剂 )。 然而,Ta-Triggered Ca2 +流入路径对于MN2 +不渗透。 我们的结果推出了TA激活的TRP通道,可能是TRPM4和TRPC4 / C5,以促进CA2 +的流入。 (c)2020 Elsevier Inc.保留所有权利。

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