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Characterization of a CholesteroNitrone (ISQ-201) a Novel Drug Candidate for the Treatment of Ischemic Stroke

机译:胆固醇尼妥酮(ISQ-201)的表征一种新型药物候选物治疗缺血性中风

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摘要

Nitrones have a well-recognized capacity as spin-traps and are considered powerful free radical scavengers, which are two important issues in hypoxia-induced oxidative stress and cell death in brain ischemia. Consequently, nitrones have been proposed as therapeutic agents in acute ischemic stroke (AIS). In this paper, we update the biological and pharmacological characterization of ISQ-201, a previously identified cholesteronitrone hybrid with antioxidant and neuroprotective activity. This study characterizes ISQ-201 as a neuroprotective agent against the hypoxia-induced ischemic injury. Transitory four-vessel occlusion and middle cerebral artery occlusion (tMCAO) were used to induce cerebral ischemia. Functional outcomes were determined using neurofunctional tests. Infarct area, neuronal death, and apoptosis induction were evaluated. In addition, ISQ-201 reactivity towards free radicals was studied in a theoretical model. ISQ-201 significantly decreased the ischemia-induced neuronal death and apoptosis, in a dose-dependent manner, showing its therapeutic effect when administered up until 6 h after post-ischemic reperfusion onset, effects that remained after 3 months from the ischemic episode. Furthermore, ISQ-201 significantly reduced infarct volume, leading to recovery of the motor function in the tMCAO model. Finally, the theoretical study confirmed the reactivity of ISQ-201 towards hydroxyl radicals. The results reported here prompted us to suggest ISQ-201 as a promising candidate for the treatment of AIS.
机译:亚硝基具有公认的自旋捕集能力,被认为是强大的自由基清除剂,这是缺氧诱导的氧化应激和脑缺血中细胞死亡的两个重要问题。因此,已提出硝酮作为急性缺血性中风(AIS)的治疗剂。在本文中,我们更新了ISQ-201的生物学和药理学特性,ISQ-201是先前鉴定的具有抗氧化剂和神经保护活性的胆固醇酮混合体。这项研究将ISQ-201表征为抗缺氧诱导的缺血性损伤的神经保护剂。短暂性四支血管闭塞和大脑中动脉闭塞(tMCAO)被用来诱发脑缺血。使用神经功能测试确定功能结局。评估梗塞面积,神经元死亡和凋亡诱导。此外,在理论模型中研究了ISQ-201对自由基的反应性。 ISQ-201以剂量依赖的方式显着降低了缺血引起的神经元死亡和细胞凋亡,显示了其在缺血再灌注后6小时内的治疗效果,这种作用在缺血发作3个月后仍然存在。此外,ISQ-201大大减少了梗塞体积,从而导致tMCAO模型中的运动功能恢复。最后,理论研究证实了ISQ-201对羟基自由基的反应性。此处报道的结果促使我们建议将ISQ-201作为AIS治疗的有希望的候选者。

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