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Updated: Aug 30, 2026

Synthesis and Characterization of 1,2-Dithiolane Modified Self-Assembling Peptides
Published on: August 20, 2018
Assembling peptides for treating Alzheimer's disease: a supramolecular perspective
Xiaohua Fang1,2, Zhuobin Zhang3, Xiaoyu Hu3
1College of Pharmacy, Shaanxi University of Chinese Medicine Xianyang 712046 China 2051004@sntcm.edu.cn.
Abstract:
Alzheimer's disease (AD) is a progressive neurodegenerative disorder. Current clinical treatments for AD primarily focus on alleviating symptoms but still face limitations such as suboptimal efficacy, side effects, and irreversible neuronal loss. Misfolding of the Aβ peptide plays a key role in AD pathogenesis and progression. By targeting this AD pathology, peptide-based therapeutics, particularly peptide assembly strategies, hold immense potential in AD therapy. Unlike sequence-based conventional reviews, this review reorganizes relevant advances from the perspective of a unified supramolecular framework. We first illustrate the structural, kinetic, and thermodynamic molecular basis of the pathological Aβ assembly and its neurotoxicity. Three mainstream supramolecular intervention strategies are then discussed: peptides redirecting the regulation of aberrant Aβ assembly, neuroprotective peptide scaffolds, and drug-loading peptide hydrogels. Finally, a universal rational design workflow for multifunctional peptide therapeutics is summarized, and perspectives on advanced directions are outlined.
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