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Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1

Background: This study is conducted to investigate the protective role of elevated microRNA-375 (miR-375) in dopaminergic neurons in Parkinson’s disease through down-regulating transcription factor specificity protein 1 (SP1). Results: The successfully modeled rats with Parkinson’s disease showed ag...

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Autores principales: Cai, Li-Jun, Tu, Li, Li, Tian, Yang, Xiu-Lin, Ren, Yi-Pin, Gu, Ran, Zhang, Qian, Yao, Huan, Qu, Xiang, Wang, Qian, Tian, Jin-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6977707/
https://www.ncbi.nlm.nih.gov/pubmed/31927536
http://dx.doi.org/10.18632/aging.102649
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author Cai, Li-Jun
Tu, Li
Li, Tian
Yang, Xiu-Lin
Ren, Yi-Pin
Gu, Ran
Zhang, Qian
Yao, Huan
Qu, Xiang
Wang, Qian
Tian, Jin-Yong
author_facet Cai, Li-Jun
Tu, Li
Li, Tian
Yang, Xiu-Lin
Ren, Yi-Pin
Gu, Ran
Zhang, Qian
Yao, Huan
Qu, Xiang
Wang, Qian
Tian, Jin-Yong
author_sort Cai, Li-Jun
collection PubMed
description Background: This study is conducted to investigate the protective role of elevated microRNA-375 (miR-375) in dopaminergic neurons in Parkinson’s disease through down-regulating transcription factor specificity protein 1 (SP1). Results: The successfully modeled rats with Parkinson’s disease showed aggregated neurobehavioral change, increased neuroinflammatory response and oxidative stress, and lowered dopamine content. Parkinson’s disease rats treated with overexpressed miR-375 displayed improved neurobehavioral change, ameliorated neuroinflammatory response and oxidative stress, heightened dopamine content and abated neuronal apoptosis by down-regulating SP1. Up-regulation of SP1 reversed the protective effect of upregulated miR-375 on Parkinson’s disease. Conclusion: Up-regulation of miR-375 ameliorated the damage of dopaminergic neurons, reduced oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1. Methods: Parkinson’s disease rat model was established by targeted injection of 6-hydroxydopamine to damage the substantia nigra striatum. The successfully modeled Parkinson’s disease rats were intracerebroventricularly injected with miR-375 mimics or pcDNA3.1-SP1. The functions of miR-375 and SP1 in neurobehavioral change, neuroinflammatory response, oxidative stress, dopamine content and expression of apoptosis-related proteins in the substantia nigra of Parkinson’s disease rats were evaluated. The target relation of miR-375 and SP1 was confirmed by bioinformatics analysis and dual luciferase reporter gene assay.
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spelling pubmed-69777072020-01-31 Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1 Cai, Li-Jun Tu, Li Li, Tian Yang, Xiu-Lin Ren, Yi-Pin Gu, Ran Zhang, Qian Yao, Huan Qu, Xiang Wang, Qian Tian, Jin-Yong Aging (Albany NY) Research Paper Background: This study is conducted to investigate the protective role of elevated microRNA-375 (miR-375) in dopaminergic neurons in Parkinson’s disease through down-regulating transcription factor specificity protein 1 (SP1). Results: The successfully modeled rats with Parkinson’s disease showed aggregated neurobehavioral change, increased neuroinflammatory response and oxidative stress, and lowered dopamine content. Parkinson’s disease rats treated with overexpressed miR-375 displayed improved neurobehavioral change, ameliorated neuroinflammatory response and oxidative stress, heightened dopamine content and abated neuronal apoptosis by down-regulating SP1. Up-regulation of SP1 reversed the protective effect of upregulated miR-375 on Parkinson’s disease. Conclusion: Up-regulation of miR-375 ameliorated the damage of dopaminergic neurons, reduced oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1. Methods: Parkinson’s disease rat model was established by targeted injection of 6-hydroxydopamine to damage the substantia nigra striatum. The successfully modeled Parkinson’s disease rats were intracerebroventricularly injected with miR-375 mimics or pcDNA3.1-SP1. The functions of miR-375 and SP1 in neurobehavioral change, neuroinflammatory response, oxidative stress, dopamine content and expression of apoptosis-related proteins in the substantia nigra of Parkinson’s disease rats were evaluated. The target relation of miR-375 and SP1 was confirmed by bioinformatics analysis and dual luciferase reporter gene assay. Impact Journals 2020-01-11 /pmc/articles/PMC6977707/ /pubmed/31927536 http://dx.doi.org/10.18632/aging.102649 Text en Copyright © 2020 Cai et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Cai, Li-Jun
Tu, Li
Li, Tian
Yang, Xiu-Lin
Ren, Yi-Pin
Gu, Ran
Zhang, Qian
Yao, Huan
Qu, Xiang
Wang, Qian
Tian, Jin-Yong
Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title_full Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title_fullStr Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title_full_unstemmed Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title_short Up-regulation of microRNA-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in Parkinson’s disease by inhibiting SP1
title_sort up-regulation of microrna-375 ameliorates the damage of dopaminergic neurons, reduces oxidative stress and inflammation in parkinson’s disease by inhibiting sp1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6977707/
https://www.ncbi.nlm.nih.gov/pubmed/31927536
http://dx.doi.org/10.18632/aging.102649
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