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Molecules ; 23(3)2018 Mar 19.
Article in English | MEDLINE | ID: mdl-29562662

ABSTRACT

Human islet amyloid peptide (hIAPP1-37) aggregation is an early step in Diabetes Mellitus. We aimed to evaluate a family of pharmaco-chaperones to act as modulators that provide dynamic interventions and the multi-target capacity (native state, cytotoxic oligomers, protofilaments and fibrils of hIAPP1-37) required to meet the treatment challenges of diabetes. We used a cross-functional approach that combines in silico and in vitro biochemical and biophysical methods to study the hIAPP1-37 aggregation-oligomerization process as to reveal novel potential anti-diabetic drugs. The family of pharmaco-chaperones are modulators of the oligomerization and fibre formation of hIAPP1-37. When they interact with the amino acid in the amyloid-like steric zipper zone, they inhibit and/or delay the aggregation-oligomerization pathway by binding and stabilizing several amyloid structures of hIAPP1-37. Moreover, they can protect cerebellar granule cells (CGC) from the cytotoxicity produced by the hIAPP1-37 oligomers. The modulation of proteostasis by the family of pharmaco-chaperones A-F is a promising potential approach to limit the onset and progression of diabetes and its comorbidities.


Subject(s)
Amyloid/chemistry , Diabetes Mellitus/drug therapy , Drug Discovery , Islet Amyloid Polypeptide/chemistry , Molecular Targeted Therapy , Animals , Cell Survival/drug effects , Cerebellum/pathology , Curcumin/chemistry , Curcumin/therapeutic use , Diabetes Mellitus/pathology , Humans , Islet Amyloid Polypeptide/toxicity , Islet Amyloid Polypeptide/ultrastructure , Kinetics , Mice , Molecular Docking Simulation , Protein Aggregates , Protein Folding , Protein Multimerization , Rats, Wistar
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