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Bimodal-hybrid heterocyclic amine targeting oxidative pathways and copper mis-regulation in Alzheimer's disease
Author(s) -
Paulina González,
Viviana C. P. da Costa,
Kimberly Hyde,
Qiong Wu,
Onofrio Annunziata,
Josep Rizo,
Giridhar R. Akkaraju,
Kayla N. Green
Publication year - 2014
Publication title -
metallomics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.012
H-Index - 75
eISSN - 1756-591X
pISSN - 1756-5901
DOI - 10.1039/c4mt00161c
Subject(s) - cyclen , oxidative stress , reactive oxygen species , chemistry , amyloid (mycology) , neurodegeneration , lipoic acid , amyloid disease , antioxidant , oxidative phosphorylation , programmed cell death , biochemistry , biophysics , amyloid β , apoptosis , stereochemistry , disease , biology , amyloid fibril , medicine , inorganic chemistry , pathology
Oxidative stress resulting from metal-ion misregulation plays a role in the development of Alzheimer's disease (AD). This process includes the production of tissue-damaging reactive oxygen species and amyloid aggregates. Herein we describe the synthesis, characterization and protective capacity of the small molecule, lipoic cyclen, which has been designed to target molecular features of AD. This construct utilizes the biologically compatible and naturally occurring lipoic acid as a foundation for engendering low cellular toxicity in multiple cell lines, radical scavenging capacity, tuning the metal affinity of the parent cyclen, and results in an unexpected affinity for amyloid without inducing aggregation. The hybrid construct thereby shows protection against cell death induced by amyloid aggregates and copper ions. These results provide evidence for the rational design methods used to produce this fused molecule as a potential strategy for the development of lead compounds for the treatment of neurodegenerative disorders.

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