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Synthesis of New Tyrosol‐Based Phosphodiester Derivatives: Effect on Amyloid β Aggregation and Metal Chelation Ability

Authors :
Sara García-Viñuales
Danilo Milardi
Armando Zarrelli
Giovanni Di Fabio
Gaetano De Tommaso
Mauro Iuliano
Valeria Romanucci
Mariangela Clemente
Roberta Bernini
Maddalena Giordano
Romanucci, V.
Giordano, M.
De Tommaso, G.
Iuliano, M.
Bernini, R.
Clemente, M.
Garcia-Vinuales, S.
Milardi, D.
Zarrelli, A.
Di Fabio, G.
Source :
ChemMedChem, 16 (2021): 1172–1183. doi:10.1002/cmdc.202000807, info:cnr-pdr/source/autori:Romanucci, Valeria; Giordano, Maddalena; De Tommaso, Gaetano; Iuliano, Mauro; Bernini, Roberta; Clemente, Mariangela; Garcia-Viñuales, Sara; Milardi, Danilo; Zarrelli, Armando; Di Fabio, Giovanni/titolo:Synthesis of New Tyrosol-Based Phosphodiester Derivatives: Effect on Amyloid ? Aggregation and Metal Chelation Ability/doi:10.1002%2Fcmdc.202000807/rivista:ChemMedChem (Print)/anno:2021/pagina_da:1172/pagina_a:1183/intervallo_pagine:1172–1183/volume:16
Publication Year :
2021
Publisher :
Wiley, 2021.

Abstract

Alzheimer's disease (AD) is a multifactorial pathology that requires multifaceted agents able to address its peculiar nature. Increasing evidence has shown that aggregation of amyloid β (Aβ) and oxidative stress are strictly interconnected, and their modulation might have a positive and synergic effect in contrasting AD-related impairments. Herein, a new and efficient fragment-based approach towards tyrosol phosphodiester derivatives (TPDs) has been developed starting from suitable tyrosol building blocks and exploiting the well-established phosphoramidite chemistry. The antioxidant activity of new TPDs has been tested as well as their ability to inhibit Aβ protein aggregation. In addition, their metal chelating ability has been evaluated as a possible strategy to develop new natural-based entities for the prevention or therapy of AD. Interestingly, TPDs containing a catechol moiety have demonstrated highly promising activity in inhibiting the aggregation of Aβ40 and a strong ability to chelate biometals such as CuII and ZnII .

Details

ISSN :
18607187 and 18607179
Volume :
16
Database :
OpenAIRE
Journal :
ChemMedChem
Accession number :
edsair.doi.dedup.....c2efc2a6878acb89f36ff09ff1b31aae
Full Text :
https://doi.org/10.1002/cmdc.202000807