Departamento de Fisiología, Facultad de Farmacia, Universidad Complutense de Madrid, Spain.
Biochem Biophys Res Commun. 2012 Jan 20;417(3):1007-13. doi: 10.1016/j.bbrc.2011.12.076. Epub 2011 Dec 22.
Endothelial cells (EC) control vascular smooth muscle cell (VSMC) tone by release of paracrine factors. VSMC may also influence the EC layer, and therefore, the present study hypothesized that the opening of large-conductance Ca(2+) activated K(+) (BK(Ca)) channels may indirectly modulate EC hyperpolarization and nitric oxide (NO) release via myoendothelial gap junctions (MEGJ). To address this hypothesis 'in situ' EC ion current recordings, isolated VSMC patch clamp recordings, and simultaneous measurements of NO concentration and relaxation were conducted using segments of the rat superior mesenteric artery. In arteries constricted by α(1)-adrenoceptor activation, ACh (1 μM) evoked EC outward currents, vasorelaxation, and NO release. In contrast to preincubation with iberiotoxin (IbTx, 100nM) application of IbTx after ACh decreased EC outward currents, NO release and vasorelaxation. Furthermore, in phenylephrine (Phe)-contracted arteries treated with a gap junction uncoupler, cabenoxolone (CBX), IbTx failed to decrease ACh-evoked EC outward currents. In addition, CBX decreased EC outward currents, time constant of the capacitative transients, input capacitance, and increased input resistance. In isolated VSMC CBX did not affect BK(Ca) currents. Immunohistochemistry revealed only BK(Ca) channel positive staining in the VSMC layer. Therefore, the present results suggest that BK(Ca) channels are expressed in the VSMC, and that Phe by activation of VSMC BK(Ca) channels modulates ACh-evoked EC outward currents, NO release and vasorelaxation via MEGJ in rat superior mesenteric artery.
内皮细胞 (EC) 通过释放旁分泌因子来控制血管平滑肌细胞 (VSMC) 的张力。VSMC 也可能影响 EC 层,因此,本研究假设大电导钙激活钾 (BK(Ca)) 通道的开放可能通过肌内皮缝隙连接 (MEGJ) 间接调节 EC 的超极化和一氧化氮 (NO) 释放。为了在“原位”验证这一假设,我们进行了 EC 离子电流记录、分离的 VSMC 膜片钳记录以及同时测量 NO 浓度和舒张度的实验,使用的是大鼠肠系膜上动脉的节段。在由 α(1)-肾上腺素受体激活引起的动脉收缩中,ACh(1 μM)引发 EC 外向电流、血管舒张和 NO 释放。与预先孵育 iberiotoxin (IbTx, 100nM) 不同,在 ACh 之后应用 IbTx 会降低 EC 外向电流、NO 释放和血管舒张。此外,在缝隙连接解偶联剂 cabenoxolone (CBX) 处理的去甲肾上腺素收缩的动脉中,IbTx 未能降低 ACh 引发的 EC 外向电流。此外,CBX 降低了 EC 外向电流、电容瞬变的时间常数、输入电容并增加了输入电阻。在分离的 VSMC 中,CBX 不影响 BK(Ca) 电流。免疫组织化学仅显示 BK(Ca) 通道在 VSMC 层呈阳性染色。因此,本研究结果表明,BK(Ca) 通道在 VSMC 中表达,并且 Phe 通过激活 VSMC BK(Ca) 通道,通过大鼠肠系膜上动脉中的 MEGJ 调节 ACh 引发的 EC 外向电流、NO 释放和血管舒张。