| Literature DB >> 34887621 |
Nicholas Andrikopoulos1, Zhiyuan Song2, Xulin Wan3, Alon M Douek4, Ibrahim Javed5, Changkui Fu5, Yanting Xing2, Fangyun Xin1,6, Yuhuan Li1,7, Aleksandr Kakinen5, Kairi Koppel1, Ruirui Qiao5, Andrew K Whittaker5, Jan Kaslin4, Thomas P Davis1,5, Yang Song8,9, Feng Ding2, Pu Chun Ke1,5,10.
Abstract
Amyloid aggregation is a ubiquitous form of protein misfolding underlying the pathologies of Alzheimer's disease (AD), Parkinson's disease (PD) and type 2 diabetes (T2D), three primary forms of human amyloid diseases. While much has been learned about the origin, diagnosis and management of these neurological and metabolic disorders, no cure is currently available due in part to the dynamic and heterogeneous nature of the toxic oligomers induced by amyloid aggregation. Here we synthesized beta casein-coated iron oxide nanoparticles (βCas IONPs) via a BPA-P(OEGA-b-DBM) block copolymer linker. Using a thioflavin T kinetic assay, transmission electron microscopy, Fourier transform infrared spectroscopy, discrete molecular dynamics simulations and cell viability assays, we examined the Janus characteristics and the inhibition potential of βCas IONPs against the aggregation of amyloid beta (Aβ), alpha synuclein (αS) and human islet amyloid polypeptide (IAPP) which are implicated in the pathologies of AD, PD and T2D. Incubation of zebrafish embryos with the amyloid proteins largely inhibited hatching and elicited reactive oxygen species, which were effectively rescued by the inhibitor. Furthermore, Aβ-induced damage to mouse brain was mitigated in vivo with the inhibitor. This study revealed the potential of Janus nanoparticles as a new nanomedicine against a diverse range of amyloid diseases.Entities:
Keywords: Amyloid beta; IAPP; Janus nanoparticle; alpha synuclein; iron oxide nanoparticle
Year: 2021 PMID: 34887621 PMCID: PMC8651233 DOI: 10.1021/acs.chemmater.1c01947
Source DB: PubMed Journal: Chem Mater ISSN: 0897-4756 Impact factor: 10.508