College of Chemistry, Key Laboratory of Functional Polymer Materials (Ministry of Education), Nankai University, Tianjin, 300071, China.
State Key Laboratory of Elemento-Organic Chemistry, Frontiers Science Center for New Organic Matter, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Nankai University, Tianjin, 300071, China.
Adv Mater. 2024 Jul;36(28):e2401918. doi: 10.1002/adma.202401918. Epub 2024 May 6.
The complex pathologies in Alzheimer's disease (AD) severely limit the effectiveness of single-target pharmic interventions, thus necessitating multi-pronged therapeutic strategies. While flexibility is essentially demanded in constructing such multi-target systems, for achieving optimal synergies and also accommodating the inherent heterogeneity within AD. Utilizing the dynamic reversibility of supramolecular strategy for conferring sufficient tunability in component substitution and proportion adjustment, amphiphilic calixarenes are poised to be a privileged molecular tool for facilely achieving function integration. Herein, taking β-amyloid (Aβ) fibrillation and oxidative stress as model combination pattern, a supramolecular multifunctional integration is proposed by co-assembling guanidinium-modified calixarene with ascorbyl palmitate and loading dipotassium phytate within calixarene cavity. Serial pivotal events can be simultaneously addressed by this versatile system, including 1) inhibition of Aβ production and aggregation, 2) disintegration of Aβ fibrils, 3) acceleration of Aβ metabolic clearance, and 4) regulation of oxidative stress, which is verified to significantly ameliorate the cognitive impairment of 5×FAD mice, with reduced Aβ plaque content, neuroinflammation, and neuronal apoptosis. Confronted with the extremely intricate clinical realities of AD, the strategy presented here exhibits ample adaptability for necessary alterations on combinations, thereby may immensely expedite the advancement of AD combinational therapy through providing an exceptionally convenient platform.
阿尔茨海默病(AD)的复杂病理严重限制了单靶点药物干预的效果,因此需要多管齐下的治疗策略。虽然构建这种多靶点系统本质上需要灵活性,但需要实现最佳协同作用,并适应 AD 内部的固有异质性。利用超分子策略的动态可逆性来赋予足够的组件替代和比例调整的可调性,两亲性杯芳烃有望成为一种特权分子工具,可轻松实现功能集成。在此,以β-淀粉样蛋白(Aβ)纤维化和氧化应激为模型组合模式,通过将胍基改性杯芳烃与抗坏血酸棕榈酸共组装,并在杯芳烃腔室内装载二钾植酸钠,提出了一种超分子多功能整合。该多功能系统可以同时解决一系列关键事件,包括 1)抑制 Aβ的产生和聚集,2)分解 Aβ 纤维,3)加速 Aβ 的代谢清除,以及 4)调节氧化应激,这被证明可以显著改善 5×FAD 小鼠的认知障碍,降低 Aβ斑块含量、神经炎症和神经元凋亡。面对 AD 极其复杂的临床现实,这里提出的策略在组合上表现出足够的适应性,从而可以通过提供一个非常方便的平台,极大地促进 AD 联合治疗的进展。