Cargando…

MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke

OBJECTIVE: By exploring the effects of miR-29a-5p knockout on neurological damage after acute ischemic stroke, we aim to deepen understanding of the molecular mechanisms of post-ischemic injury and thus provide new ideas for the treatment of ischemic brain injury. METHODS: miR-29a-5p knockout rats a...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Fangfang, Zhao, Haiping, Fan, Junfen, Wang, Rongliang, Han, Ziping, Tao, Zhen, Zheng, Yangmin, Yan, Feng, Huang, Yuyou, Yu, Lei, Zhang, Xu, Qi, Xiaolong, Zhang, Lianfeng, Luo, Yumin, Ma, Yuanwu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8005650/
https://www.ncbi.nlm.nih.gov/pubmed/33790947
http://dx.doi.org/10.3389/fgene.2021.642079
_version_ 1783672154446888960
author Zhao, Fangfang
Zhao, Haiping
Fan, Junfen
Wang, Rongliang
Han, Ziping
Tao, Zhen
Zheng, Yangmin
Yan, Feng
Huang, Yuyou
Yu, Lei
Zhang, Xu
Qi, Xiaolong
Zhang, Lianfeng
Luo, Yumin
Ma, Yuanwu
author_facet Zhao, Fangfang
Zhao, Haiping
Fan, Junfen
Wang, Rongliang
Han, Ziping
Tao, Zhen
Zheng, Yangmin
Yan, Feng
Huang, Yuyou
Yu, Lei
Zhang, Xu
Qi, Xiaolong
Zhang, Lianfeng
Luo, Yumin
Ma, Yuanwu
author_sort Zhao, Fangfang
collection PubMed
description OBJECTIVE: By exploring the effects of miR-29a-5p knockout on neurological damage after acute ischemic stroke, we aim to deepen understanding of the molecular mechanisms of post-ischemic injury and thus provide new ideas for the treatment of ischemic brain injury. METHODS: miR-29a-5p knockout rats and wild-type SD rats were subjected to transient middle cerebral artery occlusion (MCAO). miR-29a levels in plasma, cortex, and basal ganglia of ischemic rats, and in plasma and neutrophils of ischemic stroke patients, as well as hypoxic glial cells were detected by real-time PCR. The infarct volume was detected by TTC staining and the activation of astrocytes and microglia was detected by western blotting. RESULTS: The expression of miR-29a-5p was decreased in parallel in blood and brain tissue of rat MCAO models. Besides, miR-29a-5p levels were reduced in the peripheral blood of acute stroke patients. Knockout of miR-29a enhanced infarct volume of the MCAO rat model, and miR-29a knockout showed M1 polarization of microglia in the MCAO rat brain. miR-29a knockout in rats after MCAO promoted astrocyte proliferation and increased glutamate release. CONCLUSION: Knockout of miR-29a in rats promoted M1 microglial polarization and increased glutamate release, thereby aggravating neurological damage in experimental stroke rat models.
format Online
Article
Text
id pubmed-8005650
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-80056502021-03-30 MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke Zhao, Fangfang Zhao, Haiping Fan, Junfen Wang, Rongliang Han, Ziping Tao, Zhen Zheng, Yangmin Yan, Feng Huang, Yuyou Yu, Lei Zhang, Xu Qi, Xiaolong Zhang, Lianfeng Luo, Yumin Ma, Yuanwu Front Genet Genetics OBJECTIVE: By exploring the effects of miR-29a-5p knockout on neurological damage after acute ischemic stroke, we aim to deepen understanding of the molecular mechanisms of post-ischemic injury and thus provide new ideas for the treatment of ischemic brain injury. METHODS: miR-29a-5p knockout rats and wild-type SD rats were subjected to transient middle cerebral artery occlusion (MCAO). miR-29a levels in plasma, cortex, and basal ganglia of ischemic rats, and in plasma and neutrophils of ischemic stroke patients, as well as hypoxic glial cells were detected by real-time PCR. The infarct volume was detected by TTC staining and the activation of astrocytes and microglia was detected by western blotting. RESULTS: The expression of miR-29a-5p was decreased in parallel in blood and brain tissue of rat MCAO models. Besides, miR-29a-5p levels were reduced in the peripheral blood of acute stroke patients. Knockout of miR-29a enhanced infarct volume of the MCAO rat model, and miR-29a knockout showed M1 polarization of microglia in the MCAO rat brain. miR-29a knockout in rats after MCAO promoted astrocyte proliferation and increased glutamate release. CONCLUSION: Knockout of miR-29a in rats promoted M1 microglial polarization and increased glutamate release, thereby aggravating neurological damage in experimental stroke rat models. Frontiers Media S.A. 2021-03-15 /pmc/articles/PMC8005650/ /pubmed/33790947 http://dx.doi.org/10.3389/fgene.2021.642079 Text en Copyright © 2021 Zhao, Zhao, Fan, Wang, Han, Tao, Zheng, Yan, Huang, Yu, Zhang, Qi, Zhang, Luo and Ma. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Zhao, Fangfang
Zhao, Haiping
Fan, Junfen
Wang, Rongliang
Han, Ziping
Tao, Zhen
Zheng, Yangmin
Yan, Feng
Huang, Yuyou
Yu, Lei
Zhang, Xu
Qi, Xiaolong
Zhang, Lianfeng
Luo, Yumin
Ma, Yuanwu
MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title_full MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title_fullStr MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title_full_unstemmed MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title_short MiR-29a Knockout Aggravates Neurological Damage by Pre-polarizing M1 Microglia in Experimental Rat Models of Acute Stroke
title_sort mir-29a knockout aggravates neurological damage by pre-polarizing m1 microglia in experimental rat models of acute stroke
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8005650/
https://www.ncbi.nlm.nih.gov/pubmed/33790947
http://dx.doi.org/10.3389/fgene.2021.642079
work_keys_str_mv AT zhaofangfang mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT zhaohaiping mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT fanjunfen mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT wangrongliang mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT hanziping mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT taozhen mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT zhengyangmin mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT yanfeng mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT huangyuyou mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT yulei mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT zhangxu mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT qixiaolong mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT zhanglianfeng mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT luoyumin mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke
AT mayuanwu mir29aknockoutaggravatesneurologicaldamagebyprepolarizingm1microgliainexperimentalratmodelsofacutestroke