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首页> 外文期刊>Life sciences >Pharmacological profile of hydroxy fasudil as a selective rho kinase inhibitor on ischemic brain damage.
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Pharmacological profile of hydroxy fasudil as a selective rho kinase inhibitor on ischemic brain damage.

机译:羟基法舒地尔作为选择性rho激酶抑制剂对缺血性脑损伤的药理作用

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The neuroprotective property and the effects on hemodynamics of hydroxy fasudil, an active metabolite of an antispastic drug, fasudil, were examined. In rats, hydroxy fasudil was found following intravenous infusion or intraperitoneal administration of fasudil, and the maximum plasma concentration of hydroxy fasudil was approximately 25 or 40% of the parent drug, respectively. The i.v. administration of hydroxy fasudil produced significant increases in regional cerebral blood flow in dogs. Hydroxy fasudil relaxed the KCl, PGF2alpha or U-46619-induced contraction in canine basilar or middle cerebral arterial strips, concentration-dependently. The neuroprotective property of hydroxy fasudil was examined on delayed neuronal death in gerbils. Hydroxy fasudil (3 mg/kg) significantly protected against the ischemia-induced neuronal loss. To further clarify the effect on neurological impairments, hydroxy fasudil was tested in a rat model of microembolization stroke. Intravenous administration of hydroxy fasudil improved neurological functions, significantly reduced the size of the infarct area and prevented the accumulation of neutrophils. The present findings suggest that hydroxy fasudil has an efficacy to improve the hemodynamic function and to inhibit neutrophil-mediated damage, and contributes to the potency and long duration of the cytoprotective properties of fasudil on ischemic brain damage, and also suggest a critical role for rho kinase in the pathogenesis of cerebral ischemic injury, and the potential utility of rho kinase inhibitor as a therapeutic agent in stroke.
机译:检查了羟基法舒地尔(一种抗痉挛药物法舒地尔的活性代谢产物)的神经保护特性及其对血流动力学的影响。在大鼠中,在静脉内输注法舒地尔或腹膜内给予法舒地尔后发现羟基法舒地尔,并且羟基法舒地尔的最大血浆浓度分别约为母体药物的25%或40%。 i.v.羟基法舒地尔的给药使狗的局部脑血流量显着增加。羟基法舒地尔可浓度依赖性地缓解犬基底基底或大脑中动脉条中KCl,PGF2α或U-46619诱导的收缩。检查了羟基法舒地尔对沙鼠神经元延迟死亡的神经保护作用。羟基法舒地尔(3 mg / kg)可以有效防止缺血引起的神经元丢失。为了进一步阐明对神经系统损害的影响,在微栓塞性中风的大鼠模型中测试了羟基法舒地尔。羟基法舒地尔的静脉内给药改善了神经功能,显着减小了梗塞区域的大小并防止了中性粒细胞的积累。目前的发现表明羟基法舒地尔具有改善血液动力学功能和抑制中性粒细胞介导的损伤的功效,并且有助于法舒地尔对缺血性脑损伤的效力和长期的细胞保护特性,并且还暗示了对法舒地尔的关键作用。激酶在脑缺血性损伤的发病机制中的作用,以及rho激酶抑制剂作为中风治疗剂的潜在用途。

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