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大鼠主动脉低钠诱导收缩的特征及可能机制

Characteristics and possible mechanisms of low-Na+ induced contractions in rat aorta.

作者信息

Toma C P, Serban D N, Costache V, Branisteanu D D

机构信息

University of Medicine and Pharmacy Iasi, Department of Physiology, Romania.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1995 Jul;352(1):88-93. doi: 10.1007/BF00169194.

Abstract

The influence of reducing external Na+ concentration ([Na+]ex) upon vascular smooth muscle contractility was investigated using the rat isolated aorta. NaCl from the physiological saline solution (PSS) was replaced with either choline-Cl, sucrose, or LiCl to give the following [Na+]ex (mM): 115, 85, 55, and 25 (115NaPSS to 25NaPSS). Small reductions in [Na+]ex (115NaPSS) induced a biphasic contraction, comparable in amplitude with the control one induced by phenylephrine 10(-6) M. Elimination of the endogenous catecholamine participation using either phentolamine 10(-5) M or guanethidine 3.10(-6) M similarly reduces these contractions to 25% (sucrose replacement). A similar relaxing effect was obtained with D600 10(-5) M, an antagonist of the voltage operated Ca2+ channels (25-30% residual tension for all the substitutes). Large reductions in [Na+]ex (25NaPSS) induced contractions comparable in amplitude and shape, but less sensitive to phentolamine and guanethidine (residual tension 65-75%, sucrose replacement) and insensitive to D600 (all the substitutes). The Na+/K+ ATPase inhibitor ouabain (10(-4) M) elicited slowly developing contractions, the amplitude being 115% of the phenylephrine 10(-6) M control. Phenylephrine further contracted the 115NaPSS precontracted preparations, but was significantly less effective in 25NaPSS, although the precontraction levels were similar for the same substitute used. The amplitude of the superimposed phenylephrine contractions exhibited [Na+]ex dependence. Phenylephrine 10(-6) M failed to further contract the ouabain 10(-4) M precontracted rings. We conclude that relatively small reductions in [Na+]ex are able to induce contractions of rat aorta primarily through release of endogenous catecholamines, probably through neural Na+/Ca2+ exchange. Larger reductions in [Na+]ex appear to cause contraction through muscular Na+/Ca2+ exchange.

摘要

采用大鼠离体主动脉研究了降低细胞外钠离子浓度([Na⁺]ex)对血管平滑肌收缩性的影响。用氯化胆碱、蔗糖或氯化锂取代生理盐溶液(PSS)中的氯化钠,得到以下[Na⁺]ex(mM)浓度:115、85、55和25(从115NaPSS到25NaPSS)。[Na⁺]ex的小幅降低(115NaPSS)会引发双相收缩,其幅度与10⁻⁶M去氧肾上腺素诱导的对照收缩相当。使用10⁻⁵M酚妥拉明或3×10⁻⁶M胍乙啶消除内源性儿茶酚胺的参与,同样会使这些收缩降低至25%(蔗糖替代)。10⁻⁵M的D600(一种电压门控性Ca²⁺通道拮抗剂)也产生了类似的舒张作用(所有替代物的残余张力为25 - 30%)。[Na⁺]ex的大幅降低(25NaPSS)诱导的收缩在幅度和形状上相当,但对酚妥拉明和胍乙啶的敏感性较低(蔗糖替代时残余张力为65 - 75%),且对D600不敏感(所有替代物)。Na⁺/K⁺ATP酶抑制剂哇巴因(10⁻⁴M)引发缓慢发展的收缩,幅度为10⁻⁶M去氧肾上腺素对照的115%。去氧肾上腺素使115NaPSS预收缩的标本进一步收缩,但在25NaPSS中效果明显较差,尽管相同替代物的预收缩水平相似。叠加的去氧肾上腺素收缩幅度表现出对[Na⁺]ex的依赖性。10⁻⁶M去氧肾上腺素未能使10⁻⁴M哇巴因预收缩的环进一步收缩。我们得出结论,[Na⁺]ex的相对小幅降低能够主要通过内源性儿茶酚胺的释放诱导大鼠主动脉收缩,可能是通过神经Na⁺/Ca²⁺交换。[Na⁺]ex的较大降低似乎通过肌肉Na⁺/Ca²⁺交换引起收缩。

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