Hunan Provincial Key Laboratory of Micro & Nano Materials Interface Science, College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
Henan Province of Key Laboratory of New Optoelectronic Functional Materials, College of Chemistry and Chemical Engineering, Anyang Normal University, Anyang 455000, China.
Molecules. 2021 Jul 15;26(14):4301. doi: 10.3390/molecules26144301.
The aberrant aggregation of amyloid-β (Aβ) peptides in the brain has been recognized as the major hallmark of Alzheimer's disease (AD). Thus, the inhibition and dissociation of Aβ aggregation are believed to be effective therapeutic strategiesforthe prevention and treatment of AD. When integrated with traditional agents and biomolecules, nanomaterials can overcome their intrinsic shortcomings and boost their efficiency via synergistic effects. This article provides an overview of recent efforts to utilize nanomaterials with superior properties to propose effective platforms for AD treatment. The underlying mechanismsthat are involved in modulating Aβ aggregation are discussed. The summary of nanomaterials-based modulation of Aβ aggregation may help researchers to understand the critical roles in therapeutic agents and provide new insight into the exploration of more promising anti-amyloid agents and tactics in AD theranostics.
淀粉样蛋白-β(Aβ)肽在大脑中的异常聚集已被认为是阿尔茨海默病(AD)的主要标志。因此,抑制和解离 Aβ聚集被认为是预防和治疗 AD 的有效治疗策略。当与传统药物和生物分子结合使用时,纳米材料可以通过协同作用克服其固有缺点并提高其效率。本文综述了利用具有优异性能的纳米材料来提出有效 AD 治疗平台的最新进展。讨论了调节 Aβ聚集的潜在机制。基于纳米材料的 Aβ聚集调节的总结可能有助于研究人员了解治疗剂中的关键作用,并为探索更有前途的抗淀粉样蛋白药物和 AD 治疗策略提供新的见解。