首页> 外文期刊>General Pharmacology >Maturation attenuates the effects of cGMP on contraction, (Ca2+)i and Ca2+ sensitivity in ovine basilar arteries.
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Maturation attenuates the effects of cGMP on contraction, (Ca2+)i and Ca2+ sensitivity in ovine basilar arteries.

机译:成熟会减弱cGMP对绵羊基底动脉收缩,(Ca2 +)i和Ca2 +敏感性的影响。

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The present study explores the hypothesis that age-related variations in cerebrovascular responses to vasodilators reflect corresponding age-dependent differences in the mechanisms coupling changes in cytosolic cGMP to vasorelaxation. The experiments focused on cGMP's ability to decrease either [Ca2+]i or myofilament Ca2+ sensitivity, because both effects can contribute to cGMP-induced vasodilation. Use of the cGMP analog 8-pCPT-cGMP minimized problems associated with limited cell permeation or cGMP hydrolysis. In fetal basilars contracted with 10 microM serotonin, the EC30 for 8-pCPT-cGMP-induced relaxation was 6 microM. In fura-2 loaded fetal basilars, pretreatment with 6 microM 8-pCPT-cGMP significantly depressed the sensitivity of [Ca2+]i to 5HT, and also myofilament sensitivity to calcium, but only in fetal arteries. In fetal basilar arteries contracted with 120 mM potassium, the EC30 for 8-pCPT-cGMP-induced relaxation was 25 microM. In fura-2 loaded ovine arteries, pretreatment with 25 microM 8-pCPT-cGMP had no effect on the ability of graded concentrations of potassium to elevate [Ca2+]i but reduced potassium's ability to induce contraction and attenuated myofilament calcium sensitivity; these latter effects were significant only in fetal arteries. In alpha-toxin permeabilized preparations, 25 microM 8-pCPT-cGMP significantly depressed both basal- and agonist-stimulated myofilament calcium sensitivity, only in fetal but not in adult basilars. Together, these results demonstrate that: (1) sensitivity to cGMP is greater in fetal than adult sheep arteries independent of method of contraction; (2) cGMP can reduce [Ca2+]i but only in agonist-contracted and not in potassium-contracted arteries; (3) and cGMP attenuates myofilament calcium sensitivity regardless of method of contraction. Overall, the data demonstrate that variations in the ability of cGMP to produce vasodilatation reflect age-, artery-, and agonist-dependent differences in the combination of mechanisms mediating responses to cGMP.
机译:本研究探讨了以下假设:与年龄相关的脑血管对血管舒张剂反应的变化反映了相应的年龄依赖性差异,这些差异取决于将胞质cGMP变化与血管舒张耦合的机制。实验着重于cGMP降低[Ca2 +] i或肌丝Ca2 +敏感性的能力,因为这两种作用均可导致cGMP诱导的血管舒张。使用cGMP类似物8-pCPT-cGMP可将与细胞渗透受限或cGMP水解相关的问题降到最低。在收缩了10 microM血清素的胎儿基底中,用于8-pCPT-cGMP诱导的松弛的EC30为6 microM。在装有fura-2的胎儿基底中,用6 microM 8-pCPT-cGMP进行预处理可显着降低[Ca2 +] i对5HT的敏感性以及肌丝对钙的敏感性,但仅限于胎儿动脉。在收缩有120 mM钾的胎儿基底动脉中,针对8 pCPT-cGMP引起的舒张的EC30为25 microM。在呋喃2加载的绵羊动脉中,用25 microM 8-pCPT-cGMP预处理对分级浓度的钾升高[Ca2 +] i的能力没有影响,但降低了钾诱导收缩的能力并减弱了肌丝钙敏感性。这些后一种效应仅在胎儿动脉中才有意义。在透α-毒素的制剂中,仅在胎儿而不是在成年基底中,25 microM 8-pCPT-cGMP显着降低了基础和激动剂刺激的肌丝钙敏感性。总之,这些结果表明:(1)胎儿对cGMP的敏感性高于成年绵羊动脉,而与收缩方法无关。 (2)cGMP可以降低[Ca2 +] i,但仅在激动剂收缩的动脉中降低,而在钾收缩的动脉中则不能降低; (3)cGMP会减弱肌丝钙敏感性,而与收缩方法无关。总体而言,数据表明cGMP产生血管舒张能力的变化反映了介导cGMP响应的机制组合中的年龄,动脉和激动剂依赖性差异。

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