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Updated: Aug 24, 2026

Saccharomyces cerevisiae Models of Alzheimer's Disease to Screen Genes, Mutations, and Chemicals Affecting Amyloid Beta Production by γ-Secretase
Published on: June 24, 2025
Design and evaluation of a novel peptide-EV complex for targeted Alzheimer's disease therapy
Varsha Birendra Singh1, Raja Natesan Sella1
1Membrane-Protein Interaction Laboratory, Department of Genetic Engineering, School of Bioengineering, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu, India.
Abstract:
Alzheimer's disease (AD) is a progressive neurodegenerative disorder that involves the formation of amyloid-β (Aβ) aggregates, and the development of targeted therapeutic strategies is needed. In the current work, we report the rational design of H102-CP05, a 22-residue chimeric peptide that integrates the β-sheet breaker peptide H102 with the CD63-targeting anchor CP05 to enable extracellular vesicle (EV)-mediated delivery of an Aβ-inhibitory payload. Computational analysis confirmed favourable physicochemical properties and a non-allergenic profile. In silico immunogenicity assessment and C-IMMSIM simulation demonstrated a low risk of anti-drug antibody formation under chronic dosing conditions. Homology modelling and HADDOCK docking (score: -147.2 ± 4.6) predicted a computationally favourable CD63 binding configuration, while 100 ns molecular dynamics simulations confirmed structural stability in both aqueous and EV-mimetic lipid bilayer environments. In vitro cytotoxicity against HEK-293 cells revealed no significant toxicity (10-100 µM). Zebrafish embryo studies indicated acceptable developmental safety at lower concentrations, with concentration-dependent bradycardia observed at higher doses warranting further cardiovascular evaluation. Thioflavin T fluorescence assays demonstrated dose-dependent inhibition of Aβ fibrillation, with near-complete suppression at 100 µM. These findings collectively support H102-CP05 as a promising EV-displayed therapeutic candidate for AD.

