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首页> 外文期刊>Clinical and experimental pharmacology & physiology >A novel synthetic chemical entity ( UPEI UPEI ‐800) is neuroprotective in vitro and in an in vivo rat model of oxidative stress
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A novel synthetic chemical entity ( UPEI UPEI ‐800) is neuroprotective in vitro and in an in vivo rat model of oxidative stress

机译:一种新颖的合成化学实体(UPEI UPEI -800)是体外的神经保护,氧化应激的体内大鼠模型

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Summary In this study, we tested a novel synthetic pyrazole‐containing compound, 5‐amino‐1‐phenyl‐1H‐pyrazole‐4‐carbonitrile ( APPC ), as an antioxidant in both in vitro and in vivo models of oxidative stress. In addition, the utility of covalently combining APPC with another well‐established antioxidant, lipoic acid ( LA ), was also tested in both models. The in vitro results demonstrated that pretreatment with APPC in a mixed neuronal‐glial culture exposed to oxygen‐glucose deprivation ( OGD ) followed by reoxygenation‐refeeding, resulted in significant neuroprotection at concentrations between 2.5 to 25?μmol/L. In contrast, LA was not neuroprotective following OGD alone or following reoxygenation‐refeeding. However, the synthetic covalent combination of APPC with LA , named “ UPEI ‐800”, resulted in significant neuroprotection at concentrations between 0.027 and 2.7?μmol/L (100‐fold more potent than APPC alone), an effect shown to be correlated with increased cellular antioxidant capacity. Further, in an in vivo model of ischaemia‐reperfusion injury following transient occlusion of the middle cerebral artery ( tMCAO ), both APPC (0.1 and 1.0?mg/kg) and UPEI ‐800 (1×10 ?3 ?mg/kg) provided significant neuroprotection. Consistent with the in vitro findings , the in vivo results following tMCAO also demonstrated a 100‐fold increase in the potency of the covalently linked compound UPEI ‐800 compared to APPC alone.
机译:发明内容在本研究中,我们测试了一种新型合成吡唑化合物,5-氨基-1-苯基-1H-吡唑-4-碳腈(APPC),作为体外和体内氧化应激模型的抗氧化剂。此外,在两种模型中也测试了与另一种良好建立的抗氧化剂硫辛酸(La)的共价结合APPC的效用。体外结果表明,在暴露于氧 - 葡萄糖剥夺(OGD)的混合神经元 - 胶质培养中的预处理,然后通过雷诺化 - 改进,导致浓度为2.5至25μmol/ L的浓度显着的神经保护。相比之下,La并不是单独的OGD或后续再氧化反应后的神经保护。然而,与La的APPC的合成共价组合命名为“uPEI -800”,导致0.027和2.7Ω·μmol/ L(仅仅比APPC的100倍)的浓度为显着的神经保护,其效果与...相关增加细胞抗氧化能力。此外,在中脑动脉(TMCAO)的瞬时闭塞后血管瘤再灌注损伤的体内模型中,APPC(0.1和1.0≤mg/ kg)和upei -800(1×10?3?mg / kg)提供了显着的神经保护作用。与体外发现一致,TMCAO后的体内结果也表明,与单独的APPC相比,共价连接的复合复合复合复合upei -800的效力增加了100倍。

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