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Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons

Parkinson’s disease (PD) is a neurodegenerative disorder characterised by the loss of substantia nigra dopaminergic neurons that leads to a reduction in striatal dopamine (DA) levels. Replacing lost cells by transplanting dopaminergic neurons has potential value to repair the damaged brain. Salidros...

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Autores principales: Zhao, Hong-Bin, Ma, Hui, Ha, Xiao-Qin, Zheng, Ping, Li, Xiao-Yun, Zhang, Ming, Dong, Ju-Zi, Yang, Yin-Shu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410750/
https://www.ncbi.nlm.nih.gov/pubmed/24323403
http://dx.doi.org/10.1002/cbin.10217
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author Zhao, Hong-Bin
Ma, Hui
Ha, Xiao-Qin
Zheng, Ping
Li, Xiao-Yun
Zhang, Ming
Dong, Ju-Zi
Yang, Yin-Shu
author_facet Zhao, Hong-Bin
Ma, Hui
Ha, Xiao-Qin
Zheng, Ping
Li, Xiao-Yun
Zhang, Ming
Dong, Ju-Zi
Yang, Yin-Shu
author_sort Zhao, Hong-Bin
collection PubMed
description Parkinson’s disease (PD) is a neurodegenerative disorder characterised by the loss of substantia nigra dopaminergic neurons that leads to a reduction in striatal dopamine (DA) levels. Replacing lost cells by transplanting dopaminergic neurons has potential value to repair the damaged brain. Salidroside (SD), a phenylpropanoid glycoside isolated from plant Rhodiola rosea, is neuroprotective. We examined whether salidroside can induce mesenchymal stem cells (MSCs) to differentiate into neuron-like cells, and convert MSCs into dopamine neurons that can be applied in clinical use. Salidroside induced rMSCs to adopt a neuronal morphology, upregulated the expression of neuronal marker molecules, such as gamma neuronal enolase 2 (Eno2/NSE), microtubule-associated protein 2 (Map2), and beta 3 class III tubulin (Tubb3/β-tubulin III). It also increased expression of brain-derived neurotrophic factor (BDNF), neurotrophin-3 (NT-3) and nerve growth factor (NGF) mRNAs, and promoted the secretion of these growth factors. The expression of dopamine neurons markers, such as dopamine-beta-hydroxy (DBH), dopa decarboxylase (DDC) and tyrosine hydroxylase (TH), was significantly upregulated after treatment with salidroside for 1–12 days. DA steadily increased after treatment with salidroside for 1–6 days. Thus salidroside can induce rMSCs to differentiate into dopaminergic neurons.
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spelling pubmed-44107502015-04-29 Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons Zhao, Hong-Bin Ma, Hui Ha, Xiao-Qin Zheng, Ping Li, Xiao-Yun Zhang, Ming Dong, Ju-Zi Yang, Yin-Shu Cell Biol Int Research Articles Parkinson’s disease (PD) is a neurodegenerative disorder characterised by the loss of substantia nigra dopaminergic neurons that leads to a reduction in striatal dopamine (DA) levels. Replacing lost cells by transplanting dopaminergic neurons has potential value to repair the damaged brain. Salidroside (SD), a phenylpropanoid glycoside isolated from plant Rhodiola rosea, is neuroprotective. We examined whether salidroside can induce mesenchymal stem cells (MSCs) to differentiate into neuron-like cells, and convert MSCs into dopamine neurons that can be applied in clinical use. Salidroside induced rMSCs to adopt a neuronal morphology, upregulated the expression of neuronal marker molecules, such as gamma neuronal enolase 2 (Eno2/NSE), microtubule-associated protein 2 (Map2), and beta 3 class III tubulin (Tubb3/β-tubulin III). It also increased expression of brain-derived neurotrophic factor (BDNF), neurotrophin-3 (NT-3) and nerve growth factor (NGF) mRNAs, and promoted the secretion of these growth factors. The expression of dopamine neurons markers, such as dopamine-beta-hydroxy (DBH), dopa decarboxylase (DDC) and tyrosine hydroxylase (TH), was significantly upregulated after treatment with salidroside for 1–12 days. DA steadily increased after treatment with salidroside for 1–6 days. Thus salidroside can induce rMSCs to differentiate into dopaminergic neurons. BlackWell Publishing Ltd 2014-01 2014-01-01 /pmc/articles/PMC4410750/ /pubmed/24323403 http://dx.doi.org/10.1002/cbin.10217 Text en © 2014 The Authors Cell Biology International Published by John Wiley & Sons Ltd on behalf of International Federation of Cell Biology http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Zhao, Hong-Bin
Ma, Hui
Ha, Xiao-Qin
Zheng, Ping
Li, Xiao-Yun
Zhang, Ming
Dong, Ju-Zi
Yang, Yin-Shu
Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title_full Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title_fullStr Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title_full_unstemmed Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title_short Salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
title_sort salidroside induces rat mesenchymal stem cells to differentiate into dopaminergic neurons
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410750/
https://www.ncbi.nlm.nih.gov/pubmed/24323403
http://dx.doi.org/10.1002/cbin.10217
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