Cargando…

Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders

[Image: see text] A challenge in neurology is the lack of efficient brain-penetrable neuroprotectants targeting multiple disease mechanisms. Plasmonic gold nanostars are promising candidates to deliver standard-of-care drugs inside the brain but have not been trialed as carriers for neuroprotectants...

Descripción completa

Detalles Bibliográficos
Autores principales: Morfill, Corinne, Pankratova, Stanislava, Machado, Pedro, Fernando, Nathalie K., Regoutz, Anna, Talamona, Federica, Pinna, Alessandra, Klosowski, Michal, Wilkinson, Robert J., Fleck, Roland A., Xie, Fang, Porter, Alexandra E., Kiryushko, Darya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614720/
https://www.ncbi.nlm.nih.gov/pubmed/36218307
http://dx.doi.org/10.1021/acsami.2c14220
_version_ 1784820254061363200
author Morfill, Corinne
Pankratova, Stanislava
Machado, Pedro
Fernando, Nathalie K.
Regoutz, Anna
Talamona, Federica
Pinna, Alessandra
Klosowski, Michal
Wilkinson, Robert J.
Fleck, Roland A.
Xie, Fang
Porter, Alexandra E.
Kiryushko, Darya
author_facet Morfill, Corinne
Pankratova, Stanislava
Machado, Pedro
Fernando, Nathalie K.
Regoutz, Anna
Talamona, Federica
Pinna, Alessandra
Klosowski, Michal
Wilkinson, Robert J.
Fleck, Roland A.
Xie, Fang
Porter, Alexandra E.
Kiryushko, Darya
author_sort Morfill, Corinne
collection PubMed
description [Image: see text] A challenge in neurology is the lack of efficient brain-penetrable neuroprotectants targeting multiple disease mechanisms. Plasmonic gold nanostars are promising candidates to deliver standard-of-care drugs inside the brain but have not been trialed as carriers for neuroprotectants. Here, we conjugated custom-made peptide dendrimers (termed H3/H6), encompassing motifs of the neurotrophic S100A4-protein, onto star-shaped and spherical gold nanostructures (H3/H6-AuNS/AuNP) and evaluated their potential as neuroprotectants and interaction with neurons. The H3/H6 nanostructures crossed a model blood–brain barrier, bound to plasma membranes, and induced neuritogenesis with the AuNS, showing higher potency/efficacy than the AuNP. The H3-AuNS/NP protected neurons against oxidative stress, the H3-AuNS being more potent, and against Parkinson’s or Alzheimer’s disease (PD/AD)-related cytotoxicity. Unconjugated S100A4 motifs also decreased amyloid beta-induced neurodegeneration, introducing S100A4 as a player in AD. Using custom-made dendrimers coupled to star-shaped nanoparticles is a promising route to activate multiple neuroprotective pathways and increase drug potency to treat neurodegenerative disorders.
format Online
Article
Text
id pubmed-9614720
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-96147202022-10-29 Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders Morfill, Corinne Pankratova, Stanislava Machado, Pedro Fernando, Nathalie K. Regoutz, Anna Talamona, Federica Pinna, Alessandra Klosowski, Michal Wilkinson, Robert J. Fleck, Roland A. Xie, Fang Porter, Alexandra E. Kiryushko, Darya ACS Appl Mater Interfaces [Image: see text] A challenge in neurology is the lack of efficient brain-penetrable neuroprotectants targeting multiple disease mechanisms. Plasmonic gold nanostars are promising candidates to deliver standard-of-care drugs inside the brain but have not been trialed as carriers for neuroprotectants. Here, we conjugated custom-made peptide dendrimers (termed H3/H6), encompassing motifs of the neurotrophic S100A4-protein, onto star-shaped and spherical gold nanostructures (H3/H6-AuNS/AuNP) and evaluated their potential as neuroprotectants and interaction with neurons. The H3/H6 nanostructures crossed a model blood–brain barrier, bound to plasma membranes, and induced neuritogenesis with the AuNS, showing higher potency/efficacy than the AuNP. The H3-AuNS/NP protected neurons against oxidative stress, the H3-AuNS being more potent, and against Parkinson’s or Alzheimer’s disease (PD/AD)-related cytotoxicity. Unconjugated S100A4 motifs also decreased amyloid beta-induced neurodegeneration, introducing S100A4 as a player in AD. Using custom-made dendrimers coupled to star-shaped nanoparticles is a promising route to activate multiple neuroprotective pathways and increase drug potency to treat neurodegenerative disorders. American Chemical Society 2022-10-11 2022-10-26 /pmc/articles/PMC9614720/ /pubmed/36218307 http://dx.doi.org/10.1021/acsami.2c14220 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Morfill, Corinne
Pankratova, Stanislava
Machado, Pedro
Fernando, Nathalie K.
Regoutz, Anna
Talamona, Federica
Pinna, Alessandra
Klosowski, Michal
Wilkinson, Robert J.
Fleck, Roland A.
Xie, Fang
Porter, Alexandra E.
Kiryushko, Darya
Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title_full Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title_fullStr Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title_full_unstemmed Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title_short Nanostars Carrying Multifunctional Neurotrophic Dendrimers Protect Neurons in Preclinical In Vitro Models of Neurodegenerative Disorders
title_sort nanostars carrying multifunctional neurotrophic dendrimers protect neurons in preclinical in vitro models of neurodegenerative disorders
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614720/
https://www.ncbi.nlm.nih.gov/pubmed/36218307
http://dx.doi.org/10.1021/acsami.2c14220
work_keys_str_mv AT morfillcorinne nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT pankratovastanislava nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT machadopedro nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT fernandonathaliek nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT regoutzanna nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT talamonafederica nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT pinnaalessandra nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT klosowskimichal nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT wilkinsonrobertj nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT fleckrolanda nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT xiefang nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT porteralexandrae nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders
AT kiryushkodarya nanostarscarryingmultifunctionalneurotrophicdendrimersprotectneuronsinpreclinicalinvitromodelsofneurodegenerativedisorders