Suppr超能文献

在低动脉血压下,缺乏低电压激活型 Cav3.1 T 型钙通道的小鼠的肌源性张力受损。

Myogenic tone is impaired at low arterial pressure in mice deficient in the low-voltage-activated CaV 3.1 T-type Ca(2+) channel.

机构信息

Department of Veterinary Clinical and Animal Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Denmark.

出版信息

Acta Physiol (Oxf). 2013 Apr;207(4):709-20. doi: 10.1111/apha.12066. Epub 2013 Feb 18.

Abstract

AIM

Using mice deficient in the CaV 3.1 T-type Ca(2+) channel, the aim of the present study was to elucidate the molecular identity of non-L-type channels involved in vascular tone regulation in mesenteric arteries and arterioles.

METHODS

We used immunofluorescence microscopy to localize CaV 3.1 channels, patch clamp electrophysiology to test the effects of a putative T-type channel blocker NNC 55-0396 on whole-cell Ca(2+) currents, pressure myography and Ca(2+) imaging to test diameter and Ca(2+) responses of the applied vasoconstrictors, and Q-PCR to check mRNA expression levels of several Ca(2+) handling proteins in wild-type and CaV 3.1(-/-) mice.

RESULTS

Our data indicated that CaV 3.1 channels are important for the maintenance of myogenic tone at low pressures (40-80 mm Hg), whereas they are not involved in high-voltage-activated Ca(2+) currents, Ca(2+) entry or vasoconstriction to high KCl in mesenteric arteries and arterioles. Furthermore, we show that NNC 55-0396 is not a specific T-type channel inhibitor, as it potently blocks L-type and non-L-type high-voltage-activated Ca(2+) currents in mouse mesenteric vascular smooth muscle cell.

CONCLUSION

Our data using mice deficient in the CaV 3.1 T-type channel represent new evidence for the involvement of non-L-type channels in arteriolar tone regulation. We showed that CaV 3.1 channels are important for the myogenic tone at low arterial pressure, which is potentially relevant under resting conditions in vivo. Moreover, CaV 3.1 channels are not involved in Ca(2+) entry and vasoconstriction to large depolarization with, for example, high KCl. Finally, we caution against using NNC 55-0396 as a specific T-type channel blocker in native cells expressing high-voltage-activated Ca(2+) channels.

摘要

目的

利用缺乏 CaV 3.1 T 型钙(Ca2+)通道的小鼠,本研究旨在阐明参与肠系膜动脉和小动脉血管张力调节的非 L 型通道的分子特征。

方法

我们使用免疫荧光显微镜定位 CaV 3.1 通道,使用膜片钳电生理学检测假定的 T 型通道阻滞剂 NNC 55-0396 对全细胞 Ca2+电流的影响,使用压力肌动描记术和 Ca2+成像检测应用的血管收缩剂的直径和 Ca2+反应,以及 Q-PCR 检查野生型和 CaV 3.1(-/-)小鼠中几种 Ca2+处理蛋白的 mRNA 表达水平。

结果

我们的数据表明,CaV 3.1 通道对于维持低压力(40-80mmHg)下的肌源性张力很重要,而它们不参与肠系膜动脉和小动脉中的高电压激活的 Ca2+电流、Ca2+内流或高 KCl 引起的血管收缩。此外,我们表明 NNC 55-0396 不是特异性 T 型通道抑制剂,因为它在小鼠肠系膜血管平滑肌细胞中强烈阻断 L 型和非 L 型高电压激活的 Ca2+电流。

结论

我们使用缺乏 CaV 3.1 T 型通道的小鼠的数据代表了非 L 型通道参与小动脉张力调节的新证据。我们表明,CaV 3.1 通道对于低动脉压下的肌源性张力很重要,这在体内静息条件下可能是相关的。此外,CaV 3.1 通道不参与大去极化时的 Ca2+内流和血管收缩,例如高 KCl。最后,我们警告不要在表达高电压激活的 Ca2+通道的天然细胞中使用 NNC 55-0396 作为特异性 T 型通道抑制剂。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验