Grupo de Investigación en Fisiología Vascular, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, Argentina.
Channels (Austin). 2012 May-Jun;6(3):174-80. doi: 10.4161/chan.20362. Epub 2012 May 1.
Bupivacaine is a local anesthetic compound belonging to the amino amide group. Its anesthetic effect is commonly related to its inhibitory effect on voltage-gated sodium channels. However, several studies have shown that this drug can also inhibit voltage-operated K(+) channels by a different blocking mechanism. This could explain the observed contractile effects of bupivacaine on blood vessels. Up to now, there were no previous reports in the literature about bupivacaine effects on large conductance voltage- and Ca(2+) -activated K(+) channels (BK(Ca)). Using the patch-clamp technique, it is shown that bupivacaine inhibits single-channel and whole-cell K(+) currents carried by BK(Ca) channels in smooth muscle cells isolated from human umbilical artery (HUA). At the single-channel level bupivacaine produced, in a concentration- and voltage-dependent manner (IC(50) 324 µM at +80 mV), a reduction of single-channel current amplitude and induced a flickery mode of the open channel state. Bupivacaine (300 µM) can also block whole-cell K(+) currents (~45% blockage) in which, under our working conditions, BK(Ca) is the main component. This study presents a new inhibitory effect of bupivacaine on an ion channel involved in different cell functions. Hence, the inhibitory effect of bupivacaine on BK(Ca) channel activity could affect different physiological functions where these channels are involved. Since bupivacaine is commonly used during labor and delivery, its effects on umbilical arteries, where this channel is highly expressed, should be taken into account.
布比卡因是一种属于酰胺类的局部麻醉化合物。其麻醉作用通常与其对电压门控钠离子通道的抑制作用有关。然而,多项研究表明,该药物还可以通过不同的阻断机制抑制电压门控 K(+) 通道。这可以解释布比卡因对血管的观察到的收缩作用。到目前为止,文献中尚无关于布比卡因对大电导电压和 Ca(2+) 激活的 K(+) 通道(BK(Ca))的影响的报道。使用膜片钳技术,结果表明布比卡因抑制了从人脐动脉(HUA)分离的平滑肌细胞中 BK(Ca) 通道的单通道和全细胞 K(+) 电流。在单通道水平上,布比卡因以浓度和电压依赖性的方式(在+80 mV 时 IC(50) 为 324 µM),减少了单通道电流幅度并诱导了开放通道状态的闪烁模式。布比卡因(300 µM)还可以阻断全细胞 K(+) 电流(~45%阻断),在我们的工作条件下,BK(Ca) 是主要成分。这项研究揭示了布比卡因对参与不同细胞功能的离子通道的新的抑制作用。因此,布比卡因对 BK(Ca) 通道活性的抑制作用可能会影响涉及这些通道的不同生理功能。由于布比卡因在分娩期间经常使用,因此应该考虑其对高度表达这种通道的脐动脉的影响。