College of Chemistry, Zhengzhou University, Zhengzhou, 450001, China.
State Key Laboratory of Medicinal Chemical Biology, Tianjin Key Laboratory of Biosensing and Molecular Recognition, College of Chemistry, Nankai University, Tianjin 300071, China.
Nano Lett. 2021 Dec 22;21(24):10494-10500. doi: 10.1021/acs.nanolett.1c04007. Epub 2021 Dec 2.
Anti-Aβ therapy has dominated clinical trials for the prevention and treatment of Alzheimer's disease (AD). However, suppressing Aβ aggregation and disintegrating mature fibrils simultaneously remains a great challenge. In this work, we developed a new strategy using a charged tubular supramolecule (CTS) with pillar[5]arene as the backbone and modifying amino and carboxyl groups at the tubular terminals (noted as CTS-A, CTS-A/C, and CTS-C, respectively) to suppress Aβ fibrillation for the first time. According to the spectroscopic and microscopic characterizations, Aβ fibrillation can be efficiently suppressed by CTS-A in a very low inhibitor:peptide (I:P) molar ratio (1:10). A greatly alleviated cytotoxic effect of Aβ peptides after the inhibition or disaggregation process is further disclosed. The well-organized supramolecular structure drives multivalent interaction and gains enhanced efficiency on amyloid fibrillar modulation. These results open a new path for the design of supramolecules in the application of AD treatment.
抗 Aβ 疗法在阿尔茨海默病(AD)的预防和治疗的临床试验中占据主导地位。然而,同时抑制 Aβ 聚集和分解成熟纤维仍然是一个巨大的挑战。在这项工作中,我们首次开发了一种使用带有柱[5]芳烃作为主链的带电管状超分子(CTS)的新策略,并在管状末端修饰氨基和羧基(分别标记为 CTS-A、CTS-A/C 和 CTS-C),以抑制 Aβ 纤维形成。根据光谱和显微镜特性,在非常低的抑制剂:肽(I:P)摩尔比(1:10)下,CTS-A 可以有效地抑制 Aβ 纤维形成。进一步揭示了抑制或解聚过程后 Aβ 肽的细胞毒性作用大大减轻。有序的超分子结构驱动多价相互作用,并在淀粉样纤维调节方面获得增强的效率。这些结果为超分子在 AD 治疗应用中的设计开辟了新途径。