Cargando…

A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease

Alzheimer's disease (AD) remains the most prevalent neurodegenerative disease, and no effective treatment is available yet. Metal‐ion‐triggered aggregates of amyloid‐beta (Aβ) peptide and acetylcholine imbalance are reported to be possible factors in AD pathogenesis. Thus, a combination therapy...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Han, Mu, Weihang, Wei, Daohe, Zhang, Yue, Duan, Yue, Gao, Jun‐xiao, Gong, Xiao‐qun, Wang, Han‐jie, Wu, Xiao‐li, Tao, Huaying, Chang, Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7539195/
https://www.ncbi.nlm.nih.gov/pubmed/33042734
http://dx.doi.org/10.1002/advs.201902906
_version_ 1783591014927171584
author Yang, Han
Mu, Weihang
Wei, Daohe
Zhang, Yue
Duan, Yue
Gao, Jun‐xiao
Gong, Xiao‐qun
Wang, Han‐jie
Wu, Xiao‐li
Tao, Huaying
Chang, Jin
author_facet Yang, Han
Mu, Weihang
Wei, Daohe
Zhang, Yue
Duan, Yue
Gao, Jun‐xiao
Gong, Xiao‐qun
Wang, Han‐jie
Wu, Xiao‐li
Tao, Huaying
Chang, Jin
author_sort Yang, Han
collection PubMed
description Alzheimer's disease (AD) remains the most prevalent neurodegenerative disease, and no effective treatment is available yet. Metal‐ion‐triggered aggregates of amyloid‐beta (Aβ) peptide and acetylcholine imbalance are reported to be possible factors in AD pathogenesis. Thus, a combination therapy that can not only inhibit and reduce Aβ aggregation but also simultaneously regulate acetylcholine imbalance that can serve as a potential treatment for AD is needed. Here, clioquinol (metal‐ion chelating agent) and donepezil (acetylcholinesterase (AChE) inhibitor) co‐encapsulated human serum albumin (HSA) nanoparticles (dcHGT NPs) are designed, which are modified with transcriptional activator protein (TAT) and monosialotetrahexosylganglioside (GM1). The GM1 lipid and TAT peptide endow this drug delivery nanosystem with high brain entry efficiency and long‐term retention capabilities through intranasal administration. It is found that dcHGT NPs can significantly inhibit and eliminate Aβ aggregation, relieve acetylcholine‐related inflammation in microglial cells, and protect primary neurons from Aβ oligomer‐induced neurotoxicity in vitro. The alleviation of Aβ‐related inflammation and AChE‐inhibited effect further synergistically adjust acetylcholine imbalance. It is further demonstrated that dcHGT NPs reduce Aβ deposition, ameliorate neuron morphological changes, rescue memory deficits, and greatly improve acetylcholine regulation ability in vivo. This multifunctional synergetic nanosystem can be a new candidate to achieve highly efficient combination therapy for AD.
format Online
Article
Text
id pubmed-7539195
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75391952020-10-09 A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease Yang, Han Mu, Weihang Wei, Daohe Zhang, Yue Duan, Yue Gao, Jun‐xiao Gong, Xiao‐qun Wang, Han‐jie Wu, Xiao‐li Tao, Huaying Chang, Jin Adv Sci (Weinh) Full Papers Alzheimer's disease (AD) remains the most prevalent neurodegenerative disease, and no effective treatment is available yet. Metal‐ion‐triggered aggregates of amyloid‐beta (Aβ) peptide and acetylcholine imbalance are reported to be possible factors in AD pathogenesis. Thus, a combination therapy that can not only inhibit and reduce Aβ aggregation but also simultaneously regulate acetylcholine imbalance that can serve as a potential treatment for AD is needed. Here, clioquinol (metal‐ion chelating agent) and donepezil (acetylcholinesterase (AChE) inhibitor) co‐encapsulated human serum albumin (HSA) nanoparticles (dcHGT NPs) are designed, which are modified with transcriptional activator protein (TAT) and monosialotetrahexosylganglioside (GM1). The GM1 lipid and TAT peptide endow this drug delivery nanosystem with high brain entry efficiency and long‐term retention capabilities through intranasal administration. It is found that dcHGT NPs can significantly inhibit and eliminate Aβ aggregation, relieve acetylcholine‐related inflammation in microglial cells, and protect primary neurons from Aβ oligomer‐induced neurotoxicity in vitro. The alleviation of Aβ‐related inflammation and AChE‐inhibited effect further synergistically adjust acetylcholine imbalance. It is further demonstrated that dcHGT NPs reduce Aβ deposition, ameliorate neuron morphological changes, rescue memory deficits, and greatly improve acetylcholine regulation ability in vivo. This multifunctional synergetic nanosystem can be a new candidate to achieve highly efficient combination therapy for AD. John Wiley and Sons Inc. 2020-08-09 /pmc/articles/PMC7539195/ /pubmed/33042734 http://dx.doi.org/10.1002/advs.201902906 Text en © 2020 The Authors. Published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Yang, Han
Mu, Weihang
Wei, Daohe
Zhang, Yue
Duan, Yue
Gao, Jun‐xiao
Gong, Xiao‐qun
Wang, Han‐jie
Wu, Xiao‐li
Tao, Huaying
Chang, Jin
A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title_full A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title_fullStr A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title_full_unstemmed A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title_short A Novel Targeted and High‐Efficiency Nanosystem for Combinational Therapy for Alzheimer's Disease
title_sort novel targeted and high‐efficiency nanosystem for combinational therapy for alzheimer's disease
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7539195/
https://www.ncbi.nlm.nih.gov/pubmed/33042734
http://dx.doi.org/10.1002/advs.201902906
work_keys_str_mv AT yanghan anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT muweihang anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT weidaohe anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT zhangyue anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT duanyue anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT gaojunxiao anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT gongxiaoqun anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT wanghanjie anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT wuxiaoli anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT taohuaying anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT changjin anoveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT yanghan noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT muweihang noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT weidaohe noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT zhangyue noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT duanyue noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT gaojunxiao noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT gongxiaoqun noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT wanghanjie noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT wuxiaoli noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT taohuaying noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease
AT changjin noveltargetedandhighefficiencynanosystemforcombinationaltherapyforalzheimersdisease