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首页> 外文期刊>Journal of Turbulence >Comparative Studies on Behavioral, Cognitive and Biomolecular Profiling of ICR, C57BL/6 and Its Sub-Strains Suitable for Scopolamine-Induced Amnesic Models
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Comparative Studies on Behavioral, Cognitive and Biomolecular Profiling of ICR, C57BL/6 and Its Sub-Strains Suitable for Scopolamine-Induced Amnesic Models

机译:ICR,C57BL / 6及其适用于Codopolamine诱导的惰性模型的对比研究ICR,C57BL / 6及其子菌株的比较研究

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Cognitive impairment and behavioral disparities are the distinctive baseline features to investigate in most animal models of neurodegenerative disease. However, neuronal complications are multifactorial and demand a suitable animal model to investigate their underlying basal mechanisms. By contrast, the numerous existing neurodegenerative studies have utilized various animal strains, leading to factual disparity. Choosing an optimal mouse strain for preliminary assessment of neuronal complications is therefore imperative. In this study, we systematically compared the behavioral, cognitive, cholinergic, and inflammatory impairments of outbred ICR and inbred C57BL/6 mice strains subject to scopolamine-induced amnesia. We then extended this study to the sub-strains C57BL/6N and C57BL/6J, where in addition to the above-mentioned parameters, their endogenous antioxidant levels and cAMP response-element binding protein (CREB)/brain-derived neurotrophic factor (BDNF) protein expression were also evaluated. Compared with the ICR strain, the scopolamine-inflicted C57BL/6 strains exhibited a substantial reduction of spontaneous alternation and an approximately two-fold increase in inflammatory protein expression, compared to the control group. Among the sub-strains, scopolamine-treated C57BL/6N strains exhibited declined step-through latency, elevated acetylcholinesterase (AChE) activity and inflammatory protein expression, associated with reduced endogenous antioxidant levels and p-CREB/BDNF expression, compared to the control and tacrine-treated groups. This indicates that the C57BL/6N strains exhibit significantly enhanced scopolamine-induced neuronal impairment compared to the other evaluated strains.
机译:认知障碍和行为差异是在神经变性疾病大多数动物模型中调查的独特基线特征。然而,神经元并发症是多因素,并且需要一个合适的动物模型来研究其潜在的基础机制。相比之下,许多现有的神经退行性研究已经利用了各种动物菌株,导致事实差异。因此,为神经元并发症进行初步评估选择最佳的小鼠菌株是必要的。在这项研究中,我们系统地比较了来自近期的ICR和近交的C57BL / 6小鼠菌株的行为,认知,胆碱能和炎症损伤,受到CoLopolamine诱导的胃癌。然后我们将该研究扩展到子菌株C57BL / 6N和C57BL / 6J,其中除了上述参数之外,它们的内源性抗氧化水平和阵营反应 - 元素结合蛋白(CREB)/脑源性神经营养因子(BDNF )还评估蛋白质表达。与ICR菌株相比,与对照组相比,COLOPOLAMINE造成的C57BL / 6菌株表现出自发交替的显着减少,并且与对照组相比,炎性蛋白表达的大致两倍增加。在亚菌株中,与对照和对照相比,CoLizoMine处理的C57BL / 6N菌株表现出逐渐下降的阶梯式潜伏,乙酰胆碱酯酶(ACHE)活性和炎症蛋白表达,与降低的内源性抗氧化水平和P-CREB ​​/ BDNF表达相关鸡尾酒治疗组。这表明与其他评估的菌株相比,C57BL / 6N菌株表现出显着提高的汽化诱导的神经元损伤。

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