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钙依赖性的洋地黄毒苷 Marinobufagenin 对兔窦房结功能影响的选择性。

Ca-Driven Selectivity of the Effect of the Cardiotonic Steroid Marinobufagenin on Rabbit Sinoatrial Node Function.

机构信息

Laboratory of Bioelectric and Bioenergetic Systems, Faculty of Biomedical Engineering, Technion-IIT, Haifa 3200003, Israel.

出版信息

Cells. 2023 Jul 18;12(14):1881. doi: 10.3390/cells12141881.

Abstract

The synergy between Na-K pumps, Na-Ca exchangers, membrane currents and the sarcoplasmic reticulum (SR) generates the coupled-clock system, which governs the spontaneous electrical activity of heart sinoatrial node cells (SANCs). Ca mediates the degree of clock coupling via local Ca release (LCR) from the SR and activation of cAMP/PKA signaling. Marinobufagenin (MBG) is a natural Na-K pump inhibitor whose effect on SANCs has not been measured before. The following two hypotheses were tested to determine if and how MBG mediates between the Na-K pump and spontaneous SAN activity: (i) MBG has a distinct effect on beat interval (BI) due to variable effects on LCR characteristics, and (ii) Ca is an important mediator between MBG and SANC activity. Ca transients were measured by confocal microscopy during application of increasing concentrations of MBG. To further support the hypothesis that Ca mediates between MBG and SANC activity, Ca was chelated by the addition of BAPTA. Dose response tests found that 100 nM MBG led to no change in BI in 6 SANCs (no BI change group), and to BI prolongation in 10 SANCs (BI change group). At the same concentration, the LCR period was prolonged in both groups, but more significantly in the BI change group. BAPTA-AM prolonged the BI in 12 SANCs. In the presence of BAPTA, 100 nM MBG had no effect on SANC BI or on the LCR period. In conclusion, the MBG effects on SANC function are mediated by the coupled clock system, and Ca is an important regulator of these effects.

摘要

钠钾泵、钠钙交换器、膜电流和肌浆网(SR)之间的协同作用产生了偶联时钟系统,该系统控制着心脏窦房结细胞(SANCs)的自发电活动。钙通过从 SR 中局部释放 Ca(LCR)和激活 cAMP/PKA 信号来调节时钟偶联的程度。马林布法金(MBG)是一种天然的钠钾泵抑制剂,其对 SANCs 的作用以前尚未测量过。为了确定 MBG 是否以及如何在钠钾泵和自发性 SAN 活性之间发挥作用,提出了以下两个假设:(i)MBG 对 BI 的影响因对 LCR 特征的不同影响而具有明显的作用,以及(ii)Ca 是 MBG 和 SANC 活性之间的重要介体。在应用递增浓度的 MBG 期间,通过共聚焦显微镜测量 Ca 瞬变。为了进一步支持 Ca 在 MBG 和 SANC 活性之间起中介作用的假设,通过添加 BAPTA 螯合 Ca。剂量反应测试发现,100 nM MBG 在 6 个 SANCs 中导致 BI 没有变化(BI 无变化组),而在 10 个 SANCs 中导致 BI 延长(BI 变化组)。在相同浓度下,两组的 LCR 周期均延长,但 BI 变化组更为明显。BAPTA-AM 在 12 个 SANCs 中延长了 BI。在 BAPTA 存在的情况下,100 nM MBG 对 SANC BI 或 LCR 周期均无影响。总之,MBG 对 SANC 功能的影响是通过偶联时钟系统介导的,而 Ca 是这些影响的重要调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c948/10378090/a78f184bc151/cells-12-01881-g001.jpg

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