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Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation

Strategies to increase the proportion of neural stem cells that differentiate into neurons are vital for therapy of neurodegenerative disorders. In vitro, the extracellular matrix composition and topography have been found to be important factors in stem cell differentiation. We have developed a nov...

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Autores principales: Jung, Seunghyun, Harris, Nathaniel, Niyonshuti, Isabelle I., Jenkins, Samir V., Hayar, Abdallah M., Watanabe, Fumiya, Jamshidi-Parsian, Azemat, Chen, Jingyi, Borrelli, Michael J., Griffin, Robert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8147862/
https://www.ncbi.nlm.nih.gov/pubmed/34064443
http://dx.doi.org/10.3390/nano11051216
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author Jung, Seunghyun
Harris, Nathaniel
Niyonshuti, Isabelle I.
Jenkins, Samir V.
Hayar, Abdallah M.
Watanabe, Fumiya
Jamshidi-Parsian, Azemat
Chen, Jingyi
Borrelli, Michael J.
Griffin, Robert J.
author_facet Jung, Seunghyun
Harris, Nathaniel
Niyonshuti, Isabelle I.
Jenkins, Samir V.
Hayar, Abdallah M.
Watanabe, Fumiya
Jamshidi-Parsian, Azemat
Chen, Jingyi
Borrelli, Michael J.
Griffin, Robert J.
author_sort Jung, Seunghyun
collection PubMed
description Strategies to increase the proportion of neural stem cells that differentiate into neurons are vital for therapy of neurodegenerative disorders. In vitro, the extracellular matrix composition and topography have been found to be important factors in stem cell differentiation. We have developed a novel artificial extracellular matrix (aECM) formed by attaching gold nanocages (AuNCs) to glass coverslips. After culturing rat neural stem cells (rNSCs) on these gold nanocage-coated surfaces (AuNC-aECMs), we observed that 44.6% of rNSCs differentiated into neurons compared to only 27.9% for cells grown on laminin-coated glass coverslips. We applied laser irradiation to the AuNC-aECMs to introduce precise amounts of photothermally induced heat shock in cells. Our results showed that laser-induced thermal stimulation of AuNC-aECMs further enhanced neuronal differentiation (56%) depending on the laser intensity used. Response to these photothermal effects increased the expression of heat shock protein 27, 70, and 90α in rNSCs. Analysis of dendritic complexity showed that this thermal stimulation promoted neuronal maturation by increasing dendrite length as thermal dose was increased. In addition, we found that cells growing on AuNC-aECMs post laser irradiation exhibited action potentials and increased the expression of voltage-gated Na+ channels compared to laminin-coated glass coverslips. These results indicate that the photothermal response induced in cells growing on AuNC-aECMs can be used to produce large quantities of functional neurons, with improved electrochemical properties, that can potentially be transplanted into a damaged central nervous system to provide replacement neurons and restore lost function.
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spelling pubmed-81478622021-05-26 Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation Jung, Seunghyun Harris, Nathaniel Niyonshuti, Isabelle I. Jenkins, Samir V. Hayar, Abdallah M. Watanabe, Fumiya Jamshidi-Parsian, Azemat Chen, Jingyi Borrelli, Michael J. Griffin, Robert J. Nanomaterials (Basel) Article Strategies to increase the proportion of neural stem cells that differentiate into neurons are vital for therapy of neurodegenerative disorders. In vitro, the extracellular matrix composition and topography have been found to be important factors in stem cell differentiation. We have developed a novel artificial extracellular matrix (aECM) formed by attaching gold nanocages (AuNCs) to glass coverslips. After culturing rat neural stem cells (rNSCs) on these gold nanocage-coated surfaces (AuNC-aECMs), we observed that 44.6% of rNSCs differentiated into neurons compared to only 27.9% for cells grown on laminin-coated glass coverslips. We applied laser irradiation to the AuNC-aECMs to introduce precise amounts of photothermally induced heat shock in cells. Our results showed that laser-induced thermal stimulation of AuNC-aECMs further enhanced neuronal differentiation (56%) depending on the laser intensity used. Response to these photothermal effects increased the expression of heat shock protein 27, 70, and 90α in rNSCs. Analysis of dendritic complexity showed that this thermal stimulation promoted neuronal maturation by increasing dendrite length as thermal dose was increased. In addition, we found that cells growing on AuNC-aECMs post laser irradiation exhibited action potentials and increased the expression of voltage-gated Na+ channels compared to laminin-coated glass coverslips. These results indicate that the photothermal response induced in cells growing on AuNC-aECMs can be used to produce large quantities of functional neurons, with improved electrochemical properties, that can potentially be transplanted into a damaged central nervous system to provide replacement neurons and restore lost function. MDPI 2021-05-04 /pmc/articles/PMC8147862/ /pubmed/34064443 http://dx.doi.org/10.3390/nano11051216 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jung, Seunghyun
Harris, Nathaniel
Niyonshuti, Isabelle I.
Jenkins, Samir V.
Hayar, Abdallah M.
Watanabe, Fumiya
Jamshidi-Parsian, Azemat
Chen, Jingyi
Borrelli, Michael J.
Griffin, Robert J.
Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title_full Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title_fullStr Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title_full_unstemmed Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title_short Photothermal Response Induced by Nanocage-Coated Artificial Extracellular Matrix Promotes Neural Stem Cell Differentiation
title_sort photothermal response induced by nanocage-coated artificial extracellular matrix promotes neural stem cell differentiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8147862/
https://www.ncbi.nlm.nih.gov/pubmed/34064443
http://dx.doi.org/10.3390/nano11051216
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