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SCN取代Cl-对血管平滑肌张力、[Ca2+]i及离子电流的影响。

Effects of SCN substitution for Cl- on tension, [Ca2+]i, and ionic currents in vascular smooth muscle.

作者信息

Standley P R, Zhang F, Ravi J, Ram J L, Sowers J R

机构信息

Department of Physiology, Wayne State University School of Medicine, Detroit, MI, USA.

出版信息

Life Sci. 1996;59(9):739-52. doi: 10.1016/0024-3205(96)00360-8.

Abstract

Substitution of thiocyanate ions (SCN-) for chloride ions (Cl-) in the extracellular medium of aortic rings and strips causes a biphasic contractile response; initial relaxation followed by sustained contraction. Alterations in these responses are sex-specific, and may elucidate fundamental differences in vascular function between males and females. In order to investigate the role of changes in intracellular Ca2+ ([Ca2+]i) in these changes in tension, we investigated effects of SCN- on [Ca2+]i and ionic currents in vascular smooth muscle cells (VSMC). Extracellular substitution of SCN- for Cl- caused a biphasic change in [Ca2+]i. Initially, [Ca2+]i decreased, reaching a minimum within 1-2 min, subsequently returned to original levels within 4-5 min, and then increased to a higher plateau over the next 10 minutes. This pattern of change in [Ca2+]i is identical to the pattern of tension changes in aortic rings, but it occurs somewhat faster. Partial substitution of SCN- for Cl- elicited increased, but no preceding decrease in [Ca2+]i. In the absence of external Ca2+, anion substitution elicited the decrease in [Ca2+]i but not the subsequent increase. Verapamil (1 microM) blocked the increased [Ca2+]i phase but not the decreased [Ca2+]i phase; whereas, R+ verapamil (up to 5 microM for 20 min), an inactive enantiomer, caused no change. Ionic current measurements obtained using whole cell patch and current clamp techniques revealed two responses to anion substitution: (a) a rapid, transient outward shift in holding current, and (b) a sustained increase in peak current and a hyperpolarizing shift in voltage sensitivity of Ca2+ channels. The calcium channel blocker PN200-110 blocked SCN(-)-enhanced current but had no effect on the changes in holding current. S- verapamil, but not R+ verapamil, reduced SCN(-)-enhanced current. In current clamp mode, SCN- caused an initial hyperpolarization followed by a slow depolarization punctuated by spikes. Thus, SCN- causes changes in vascular smooth muscle [Ca2+]i that could underlie both phases of its effects on tension in isolated aortas and may be explained by the following model: an initial outward shift in current causes hyperpolarization with a consequent decrease in cell excitability, and the somewhat slower increase in Ca2+ channel excitability eventually leads to enhanced calcium influx and tension. These data shed light on possible mechanisms underlying gender-related differences in VSMC physiology.

摘要

在主动脉环和条带的细胞外培养基中,用硫氰酸根离子(SCN-)替代氯离子(Cl-)会引起双相收缩反应;先是舒张,随后是持续收缩。这些反应的变化具有性别特异性,可能阐明雄性和雌性血管功能的根本差异。为了研究细胞内Ca2+([Ca2+]i)变化在这些张力变化中的作用,我们研究了SCN-对血管平滑肌细胞(VSMC)中[Ca2+]i和离子电流的影响。细胞外将SCN-替代Cl-导致[Ca2+]i发生双相变化。起初,[Ca2+]i下降,在1-2分钟内降至最低,随后在4-5分钟内恢复到原始水平,然后在接下来的10分钟内升至更高的平台期。[Ca2+]i的这种变化模式与主动脉环中张力变化的模式相同,但发生得稍快一些。SCN-部分替代Cl-会使[Ca2+]i升高,但之前没有下降。在无细胞外Ca2+的情况下,阴离子替代引起[Ca2+]i下降,但随后没有升高。维拉帕米(1 microM)阻断了[Ca2+]i升高阶段,但未阻断[Ca2+]i下降阶段;而无活性对映体R+维拉帕米(高达5 microM,作用20分钟)则无变化。使用全细胞膜片钳和电流钳技术进行的离子电流测量显示,对阴离子替代有两种反应:(a)钳制电流快速、短暂的外向偏移,以及(b)峰值电流持续增加和Ca2+通道电压敏感性的超极化偏移。钙通道阻滞剂PN200-110阻断了SCN(-)增强的电流,但对钳制电流的变化没有影响。S-维拉帕米而非R+维拉帕米降低了SCN(-)增强的电流。在电流钳模式下,SCN-引起初始超极化,随后是由尖峰打断的缓慢去极化。因此,SCN-导致血管平滑肌[Ca2+]i发生变化,这可能是其对离体主动脉张力影响的两个阶段的基础,并且可能由以下模型解释:电流的初始外向偏移导致超极化,从而使细胞兴奋性降低,而Ca2+通道兴奋性的稍慢增加最终导致钙内流和张力增强。这些数据揭示了VSMC生理学中与性别相关差异潜在的可能机制。

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