KLVFF-Guided Molecular Scissors: a Trojan Horse Strategy for Precision Photodynamic Dissolution of Aβ Aggregates.

Ye, Zhongju; Li, Luping; Duan, Qianyan; Sheng, Xiaoyi; Zhang, Chen; Fan, Xiulin; Li, Zhaohui; Xiao, Lehui · Adv Healthc Mater · 2025

basic_science · Level V

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Abstract

Alzheimer's disease (AD) is pathologically linked to the aggregation of amyloid-β (Aβ) peptides into neurotoxic fibrils. Despite advancements in Alzheimer's therapeutics, current strategies fail to simultaneously target amyloid-β aggregation and oxidative stress, particularly with spatiotemporal precision. To address the limitations of conventional therapies, this study develops a photo-responsive nanomaterial, conjugated polymer nanodots functionalized with chlorin e6 (Ce6) and KLVFF peptides (CNPs-Ce6<sub>50</sub>-K<sub>0.5</sub>), for targeted inhibition of Aβ<sub>1-42</sub> fibrillization. The nanomaterial is synthesized via nanoprecipitation, integrating Ce6 for reactive oxygen species (ROS) generation and KLVFF for Aβ-specific recognition. Systematic characterization confirms its structural stability, tunable ROS production, and high biocompatibility. Fluorescence microscopy, TEM, and CD spectroscopy demonstrate that CNPs-Ce6<sub>50</sub>-K<sub>0.5</sub> synergistically inhibits Aβ<sub>1-42</sub> aggregation through dual mechanisms: 1) KLVFF-mediated high-affinity binding to Aβ monomers, preventing nucleation; 2) Ce6-generated ROS under light irradiation, destabilizing β-sheet structures. This work establishes CNPs-Ce6<sub>50</sub>-K<sub>0.5</sub> as a multifunctional platform for precise Aβ modulation, offering a promising strategy for AD therapeutics with spatiotemporal controllability and minimal off-target effects.

Medical subject headings