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天然生物活性产物与阿尔茨海默病病理学:转基因模型的启示

Natural Bioactive Products and Alzheimer's Disease Pathology: Lessons from Transgenic Models.

作者信息

Navarro-Hortal María D, Romero-Márquez Jose M, Osta Safa, Jiménez-Trigo Victoria, Muñoz-Ollero Pedro, Varela-López Alfonso

机构信息

Biomedical Research Center, Department of Physiology, Institute of Nutrition and Food Technology "José Mataix Verdú", University of Granada, Avda del Conocimiento s/n., 18100 Granada, Spain.

出版信息

Diseases. 2022 May 13;10(2):28. doi: 10.3390/diseases10020028.

Abstract

Alzheimer's disease (AD) is an age-dependent, progressive disorder affecting millions of people. Currently, the therapeutics for AD only treat the symptoms. Although they have been used to discover new products of interest for this disease, mammalian models used to investigate the molecular determinants of this disease are often prohibitively expensive, time-consuming and very complex. On the other hand, cell cultures lack the organism complexity involved in AD. Given the highly conserved neurological pathways between mammals and invertebrates, has emerged as a powerful tool for the investigation of the pathophysiology of human AD. Numerous models of both Tau- and Aβ-induced toxicity, the two prime components observed to correlate with AD pathology and the ease of performing RNA interference for any gene in the genome, allow for the identification of multiple therapeutic targets. The effects of many natural products in main AD hallmarks using these models suggest promising health-promoting effects. However, the way in which they exert such effects is not entirely clear. One of the reasons is that various possible therapeutic targets have not been evaluated in many studies. The present review aims to explore shared therapeutical targets and the potential of each of them for AD treatment or prevention.

摘要

阿尔茨海默病(AD)是一种与年龄相关的进行性疾病,影响着数百万人。目前,AD的治疗方法仅能缓解症状。尽管这些方法已被用于发现针对该疾病的新产品,但用于研究该疾病分子决定因素的哺乳动物模型通常成本高昂、耗时且非常复杂。另一方面,细胞培养缺乏AD所涉及的生物体复杂性。鉴于哺乳动物和无脊椎动物之间高度保守的神经通路,已成为研究人类AD病理生理学的有力工具。许多Tau蛋白和Aβ诱导毒性的模型,这两种主要成分被观察到与AD病理学相关,并且能够轻松地对基因组中的任何基因进行RNA干扰,从而可以识别多个治疗靶点。使用这些模型研究许多天然产物对AD主要特征的影响,显示出有前景的促进健康作用。然而,它们发挥这种作用的方式尚不完全清楚。原因之一是在许多研究中尚未评估各种可能的治疗靶点。本综述旨在探索共同的治疗靶点以及它们各自在AD治疗或预防中的潜力。

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