Department of Pediatrics, Maastricht University Medical Centre, School for Oncology and Developmental Biology (GROW), P. Debyelaan 25, P.O. Box 5800, 6202 AZ Maastricht, The Netherlands.
J Comp Physiol B. 2010 Mar;180(3):427-35. doi: 10.1007/s00360-009-0420-y.
Rho-kinase-dependent Ca2+ sensitization is an essential process for contraction of mammalian vascular smooth muscle but the information about its effects in non-mammalian vessels is scarce. We aimed to investigate, using the Rho-kinase inhibitor hydroxyfasudil, the potential role of the Rho-kinase pathway of Ca2+ sensitization in depolarization- and agonist-mediated contraction of chicken embryo (at day 19 of the 21 days of incubation) femoral arteries. Contraction elicited by KCl (125 mM) comprised two phases (phasic and tonic contraction), both of which were abolished in the absence of extracellular Ca2+. Hydroxyfasudil (10 microM) left the initial phasic component nearly intact but abolished the tonic component. Hydroxyfasudil also induced a marked impairment of the contractions elicited by phenylephrine (PE), the thromboxane A2 mimetic U46619, and endothelin-1. In contrast, inhibition of protein kinase C (PKC) by chelerythrine did not affect KCl- or PE-induced contractions, indicating lack of participation of PKC-mediated Ca2+ sensitization. Incubation under chronic hypoxia (15% O2 from day 0) impaired embryonic growth but did not significantly affect hydroxyfasudil-mediated relaxation. In summary, our findings are indicative of a role for Rho-kinase activity in depolarization- and agonist-induced force generation in chicken embryo femoral arteries.
Rho-kinase 依赖性 Ca2+ 敏化是哺乳动物血管平滑肌收缩的一个基本过程,但关于其在非哺乳动物血管中的作用的信息却很少。我们旨在使用 Rho-kinase 抑制剂羟法舒地尔来研究 Ca2+ 敏化的 Rho-kinase 途径在鸡胚(孵育 21 天的第 19 天)股骨动脉去极化和激动剂介导的收缩中的潜在作用。KCl(125mM)引起的收缩包括两个阶段(相收缩和紧张性收缩),两者在不存在细胞外 Ca2+的情况下均被消除。羟法舒地尔(10μM)几乎保留了初始相收缩成分,但消除了紧张性收缩成分。羟法舒地尔还明显损害了由苯肾上腺素(PE)、血栓素 A2 模拟物 U46619 和内皮素-1 引起的收缩。相比之下,蛋白激酶 C(PKC)抑制剂 Chelerythrine 对 KCl 或 PE 诱导的收缩没有影响,表明 PKC 介导的 Ca2+ 敏化不参与其中。慢性缺氧(从第 0 天开始 15% O2)孵育会损害胚胎生长,但对羟法舒地尔介导的松弛没有显著影响。总之,我们的发现表明 Rho-kinase 活性在鸡胚股骨动脉的去极化和激动剂诱导的力产生中发挥作用。