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Spontaneous and induced nontransgenic animal models of AD: Modeling AD using combinatorial approach

机译:AD的自发性和诱导性非转基因动物模型:使用组合方法建模AD

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Alzheimer's disease (AD), the most common neurodegenerative and dementing disorder, is characterized by extracellular amyloid deposition, intracellular neurofibrillary tangle formation, and neuronal loss. We are still behind in AD research in terms of knowledge regarding understanding its pathophysiology and designing therapeutics because of the lack of an accurate animal model for AD. A complete animal model of AD should imitate all the cognitive, behavioral, and neuropathological features of the disease. Partial models are currently in use, which only mimic specific and not all of the components of AD pathology. Currently the transgenic animals are the popular models for AD research, but different genetic backgrounds of these transgenic animals remain a major confounding factor. This review attempts to summarize the current literature on nontransgenic animal models of AD and to highlight the potential of exploiting spontaneous and induced animal models for neuropathological, neurochemical, neurobehavioral, and neuroprotective studies of AD.
机译:阿尔茨海默氏病(AD)是最常见的神经变性和痴呆症,其特征是细胞外淀粉样蛋白沉积,细胞内神经原纤维缠结和神经元丢失。由于缺乏准确的AD动物模型,我们在了解AD的病理生理学和设计治疗方法的知识方面仍落后于AD研究。完整的AD动物模型应模仿该疾病的所有认知,行为和神经病理特征。当前正在使用部分模型,该模型仅模仿特定的模型,而不是模仿AD病理学的所有组成部分。当前,转基因动物是用于AD研究的流行模型,但是这些转基因动物的不同遗传背景仍然是主要的混杂因素。这篇综述试图总结有关AD非转基因动物模型的现有文献,并强调利用自发和诱导动物模型进行AD的神经病理学,神经化学,神经行为和神经保护研究的潜力。

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