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首页> 外文期刊>CNS neuroscience & therapeutics. >Calmodulin inhibitor ameliorates cognitive dysfunction via inhibiting nitrosative stress and NLRP3 signaling in mice with bilateral carotid artery stenosis
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Calmodulin inhibitor ameliorates cognitive dysfunction via inhibiting nitrosative stress and NLRP3 signaling in mice with bilateral carotid artery stenosis

机译:钙调蛋白抑制剂通过抑制双侧颈动脉狭窄小鼠的亚硝化应激和NLRP3信号转导改善认知功能障碍

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Summary AimsVascular dementia (VaD) is a heterogeneous brain disorder for which there are no effective approved pharmacological treatments available. We aimed to evaluate the effect of calmodulin inhibitor, DY-9836, and its loaded nanodrug carrier system on cognitive impairment and gain a better understanding of the protective mechanisms in mice with bilateral carotid artery stenosis (BCAS). ResultsDY-9836 (0.5 or 1?mg/kg) or DY-9836 (0.25?mg/kg)-encapsulated polysialic acid-octadecylamine (PSA-ODA) micelles (PSA-ODA/DY) were given to BCAS mice for 4?weeks. Administration of DY-9836 or PSA-ODA/DY reduced escape latency in space exploration and working memory test compared with vehicle group. Vehicle-treated mice showed reduced phospho-CaMKII (Thr286/287) levels in the hippocampus, whereas partially restored by DY-9836 (1?mg/kg) or PSA-ODA/DY (0.25?mg/kg) treatment. In accordance with the pharmacological profile of DY-9836 observed during behavioral studies, experimental molecular and biochemical markers induced by BCAS, such as protein tyrosine nitration, Nod-like receptor protein 3 (NLRP3), caspase-1, and interleukin-1β, were reduced by DY-9836 and PSA-ODA/DY treatment. ConclusionsThese data disclose novel findings about the therapeutic potential of DY-9836, and its encapsulated nanodrug delivery system significantly enhanced the cognitive function via inhibitory effect on nitrosative stress and NLRP3 signaling in VaD mice.
机译:概述血管性痴呆(VaD)是一种异质性脑部疾病,目前尚无有效的有效药理治疗方法。我们旨在评估钙调蛋白抑制剂DY-9836及其负载的纳米药物载体系统对认知障碍的作用,并更好地了解双侧颈动脉狭窄(BCAS)小鼠的保护机制。结果将DY-9836(0.5或1?mg / kg)或DY-9836(0.25?mg / kg)包封的聚唾液酸十八烷基(PSA-ODA)胶束(PSA-ODA / DY)给予BCAS小鼠4?。周。与车辆组相比,DY-9836或PSA-ODA / DY的管理减少了太空探索和工作记忆测试中的逃生潜伏期。媒介物处理的小鼠海马中的磷酸钙-CaMKII(Thr286 / 287)水平降低,而DY-9836(1?mg / kg)或PSA-ODA / DY(0.25?mg / kg)处理可部分恢复。根据行为研究期间观察到的DY-9836的药理学特征,由BCAS诱导的实验性分子和生化标记物包括蛋白酪氨酸硝化,Nod样受体蛋白3(NLRP3),胱天蛋白酶1和白介素1β。通过DY-9836和PSA-ODA / DY处理减少。结论这些数据揭示了关于DY-9836的治疗潜力的新发现,其封装的纳米药物递送系统通过对VaD小鼠亚硝化应激和NLRP3信号的抑制作用,显着增强了认知功能。

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