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Stepwise Coordination-Driven Metal-Phenolic Nanoparticle as a Neuroprotection Enhancer for Alzheimer's Disease Therapy.
Yin, Zhihui; Zhang, Zhixin; Gao, Demin; Luo, Gan; Ma, Tao; Wang, Ying; Lu, Lehui; Gao, Xiaoyan.
Afiliação
  • Yin Z; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
  • Zhang Z; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
  • Gao D; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
  • Luo G; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
  • Ma T; Dongfang Hospital, Beijing University of Chinese Medicine, Beijing100078, China.
  • Wang Y; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
  • Lu L; State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun130022, China.
  • Gao X; School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing102488, China.
ACS Appl Mater Interfaces ; 15(1): 524-540, 2023 Jan 11.
Article em En | MEDLINE | ID: mdl-36542560
Current therapeutic strategies for Alzheimer's disease (AD) mainly focus on inhibition of aberrant amyloid-ß peptide (Aß) aggregation. However, these strategies cannot repair the side symptoms (e.g., high neuronal oxidative stress) triggered by Aß accumulation and thus show limited effects on suppressing Aß-induced neuronal apoptosis. Herein, we develop a stepwise metal-phenolic coordination approach for the rational design of a neuroprotection enhancer, K8@Fe-Rh/Pda NPs, in which rhein and polydopamine are effectively coupled to enhance the treatment of AD in APPswe/PSEN1dE9 transgenic (APP/PS1) mice. We discover that the polydopamine inhibits the aggregation of Aß oligomers, and rhein helps repair damage to neurons triggered by Aß aggregation. Based on molecular docking, we demonstrate that the polydopamine has a strong interaction with Aß monomers/fibrils through its multiple recognition sites (e.g., catechol groups, imine groups, and indolic/catecholic π-systems), thereby reducing Aß burden. Further investigation of the antioxidant mechanisms suggests that K8@Fe-Rh/Pda NPs promote the mitochondrial biogenesis via activating the sirtuin 1 (SIRT1)/peroxisome proliferator-activated receptor gamma coactivator 1-alpha pathway. This finally inhibits neuronal apoptosis. Moreover, an intravenous injection of these nanoparticles potently improves the cognitive function in APP/PS1 mice without adverse effects. Overall, our work provides a promising approach to develop advanced nanomaterials for multi-target treatment of AD.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanopartículas / Doença de Alzheimer Limite: Animals Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China País de publicação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanopartículas / Doença de Alzheimer Limite: Animals Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China País de publicação: Estados Unidos