Pu Yiyao, Dai Xue-Lin, Wang Yichun, Chen Yanbing, Wu Chengheng, Zhou Xiangyu, Chen Meiwan, Chen Yi-Hung, Shuai Xintao, Jin Rongrong, Nie Yu
National Engineering Research Center for Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu, Sichuan, 610064, P. R. China.
Institute for Advanced Studies (IAS), Wuhan University, Wuhan, Hubei, 430072, P. R. China.
Adv Mater. 2025 Jul;37(27):e2418560. doi: 10.1002/adma.202418560. Epub 2025 Apr 29.
Efficient clearance of amyloid-β (Aβ) is vital but challenging in Alzheimer's disease (AD) treatment due to its complicated regulation mechanisms during generation and metabolism. It necessitates a multidimensional synergistic strategy based on ingenious delivery system design. Herein, guanidine-rich lipids (metformin-inspired MLS and arginine-contained RLS) are devised to trigger selective chaperone-mediated autophagy for amyloid precursor protein degradation in neurons. They are further co-assembled with oleic acid-modified cerium dioxide (OA@CeO) to form RMC assembly for pApoE2 delivery (RMC/pApoE2 lipoplex). The OA@CeO boosts macro-autophagy, alleviates oxidative stress and inflammatory microenvironment, and promotes the neurons-microglia crosstalk for Aβ elimination. Concurrently, both guanidine-rich lipids and OA@CeO benefit pApoE2 transfection in neurons, enabling the transport of Aβ into microglia, and facilitating enzymatic hydrolysis and cellular digestion of extracellular Aβ. The lipoplex-boosted neuron-microglia interactions ultimately eliminate both intra- and extra-cellular Aβ aggregates. Consequently, the RMC/pApoE2 lipoplex eliminates ≈86.9% of Aβ plaques in the hippocampus of APP/PS1 mice and restored the synaptic function and neuronal connectivity. Moreover, it recovers the spatial memory of APP/PS1 mice to nearly the level of WT control. The presented hybrid lipoplex showcases an advanced gene delivery system, and offers a promising strategy for Aβ clearance in AD treatment.
在阿尔茨海默病(AD)的治疗中,有效清除β淀粉样蛋白(Aβ)至关重要,但由于其在生成和代谢过程中复杂的调控机制,这一过程具有挑战性。这需要基于巧妙的递送系统设计的多维协同策略。在此,设计富含胍的脂质(受二甲双胍启发的MLS和含精氨酸的RLS)以触发选择性伴侣介导的自噬,从而在神经元中降解淀粉样前体蛋白。它们进一步与油酸修饰的二氧化铈(OA@CeO)共组装形成用于递送载脂蛋白E2(pApoE2)的RMC组装体(RMC/pApoE2脂质复合物)。OA@CeO可促进巨自噬,减轻氧化应激和炎症微环境,并促进神经元与小胶质细胞的串扰以消除Aβ。同时,富含胍的脂质和OA@CeO均有利于pApoE2在神经元中的转染,使Aβ能够转运至小胶质细胞,并促进细胞外Aβ的酶促水解和细胞消化。脂质复合物增强的神经元与小胶质细胞的相互作用最终消除了细胞内和细胞外的Aβ聚集体。因此,RMC/pApoE2脂质复合物消除了APP/PS1小鼠海马中约86.9%的Aβ斑块,并恢复了突触功能和神经元连接。此外,它将APP/PS1小鼠的空间记忆恢复到接近野生型对照的水平。所展示的混合脂质复合物展示了一种先进的基因递送系统,并为AD治疗中Aβ的清除提供了一种有前景的策略。