Inhibition of Self-Assembling Peptide Fibrils Formation Using Thioflavin T as a Photosensitizer

Tikhonova, Tatiana N. and Rubekina, Anna A. and Vorobev, Viktor A. and Mefodeva, Ekaterina A. and Maksimov, Eugene G. and Efremov, Yuri M. and Darvin, Maxim E. and Timashev, Peter S. and Gorelkin, Peter V. and Erofeev, Alexander S. and Sysoev, Nikolay N. and Shirshin, Evgeny A. (2023) Inhibition of Self-Assembling Peptide Fibrils Formation Using Thioflavin T as a Photosensitizer. Journal of Biomedical Photonics & Engineering. 010304. ISSN 24112844

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Abstract

Misfolded proteins produce fibrillar aggregates, which contain β-sheet higher order structures. The oligomers, protofibrils, and fibrils generated during protein aggregation process are cytotoxic and can cause various neurodegenerative diseases. Recently the photo-active materials, the photosensitizers, have attracted increased attention in the study and treatment of amyloid-related diseases. Here, we studied the photodynamic effect of the amyloid-specific fluorescence dye Thioflavin T on the formation of self-assembled peptide hydrogel. It was demonstrated that the gelation process under irradiation inhibits significantly, at that the structural and mechanical properties of mature fibrils change notably suggesting that ThT could be regarded as a theranostic probe. The developed peptide model allows for quantification of the photodynamic agent’s efficiency in preventing aggregation, thus paving the way for a high-throughput test system for screening of light-responsive theranostic agents.

Item Type: Article
Subjects: Open Research Librarians > Multidisciplinary
Depositing User: Unnamed user with email support@open.researchlibrarians.com
Date Deposited: 08 Apr 2023 09:04
Last Modified: 10 May 2024 07:51
URI: http://stm.e4journal.com/id/eprint/589

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