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通过计算模拟、体外和芯片实验室技术研究莲心碱对淀粉样β和tau 聚集的双重调节作用。

Dual regulatory effects of neferine on amyloid-β and tau aggregation studied by in silico, in vitro, and lab-on-a-chip technology.

机构信息

Department of Biochemistry, College of Medicine, Konyang University, 158, Gwanjeodong-ro, Seo-gu, Daejeon 35365, Republic of Korea.

Department of Food and Life Science, Pukyong National University, Busan 48513, Republic of Korea.

出版信息

Biomed Pharmacother. 2024 Mar;172:116226. doi: 10.1016/j.biopha.2024.116226. Epub 2024 Feb 1.

DOI:10.1016/j.biopha.2024.116226
PMID:38301421
Abstract

Alzheimer's disease (AD) is characterized by the presence of two critical pathogenic factors: amyloid-β (Aβ) and tau. Aβ and tau become neurotoxic aggregates via self-assembly, and these aggregates contribute to the pathogenesis of AD. Therefore, there has been growing interest in therapeutic strategies that simultaneously target Aβ and tau aggregates. Although neferine has attracted attention as a suitable candidate agent for alleviating AD pathology, there has been no study investigating whether neferine affects the modulation of Aβ or tau aggregation/dissociation. Herein, we investigated the dual regulatory effects of neferine on Aβ and tau aggregation/dissociation. We predicted the binding characteristics of neferine to Aβ and tau using molecular docking simulations. Next, thioflavin T and atomic force microscope analyses were used to evaluate the effects of neferine on the aggregation or dissociation of Aβ and tau K18. We verified the effect of neferine on Aβ fibril degradation using a microfluidic device. In addition, molecular dynamics simulation was used to predict a conformational change in the Aβ-neferine complex. Moreover, we examined the neuroprotective effect of neferine against neurotoxicity induced by Aβ and tau and their fibrils in HT22 cells. Finally, we foresaw the pharmacokinetic properties of neferine. These results demonstrated that neferine, which has attracted attention as a potential treatment for AD, can directly affect Aβ and tau pathology.

摘要

阿尔茨海默病(AD)的特征是存在两种关键的致病因素:β淀粉样蛋白(Aβ)和 tau。Aβ 和 tau 通过自组装变成神经毒性聚集物,这些聚集物导致 AD 的发病机制。因此,人们越来越关注同时针对 Aβ 和 tau 聚集物的治疗策略。虽然小檗碱作为一种缓解 AD 病理学的合适候选药物引起了人们的关注,但还没有研究探讨小檗碱是否影响 Aβ 或 tau 聚集/解离的调节。在此,我们研究了小檗碱对 Aβ 和 tau 聚集/解离的双重调节作用。我们使用分子对接模拟预测了小檗碱与 Aβ 和 tau 的结合特性。接下来,使用硫黄素 T 和原子力显微镜分析评估了小檗碱对 Aβ 和 tau K18 聚集或解离的影响。我们使用微流控装置验证了小檗碱对 Aβ 纤维降解的影响。此外,分子动力学模拟用于预测 Aβ-小檗碱复合物的构象变化。此外,我们检查了小檗碱对 Aβ 和 tau 及其纤维诱导的神经毒性的神经保护作用在 HT22 细胞中。最后,我们预测了小檗碱的药代动力学特性。这些结果表明,作为 AD 潜在治疗药物而受到关注的小檗碱可以直接影响 Aβ 和 tau 病理学。

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引用本文的文献

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Dual modulation of amyloid beta and tau aggregation and dissociation in Alzheimer's disease: a comprehensive review of the characteristics and therapeutic strategies.阿尔茨海默病中淀粉样β蛋白和tau蛋白聚集与解离的双重调节:特征与治疗策略的综合综述
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