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A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats

170 SD rats were randomly divided to five groups. Rats in model group, no-acupuncture group, and acupuncture group were subjected to MCAO surgery. Acupuncture group received 3 consecutive acupuncture treatments at a parameter that deep in 2 mm towards apex nasi and thrust/lifted at 3 times per secon...

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Autores principales: Luo, Ding, Fan, Xiaonong, Ma, Congcong, Fan, Tongtao, Wang, Xiaoguang, Chang, Nvzi, Li, Lingxin, Zhang, Yanan, Meng, Zhihong, Wang, Shu, Shi, Xuemin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4120913/
https://www.ncbi.nlm.nih.gov/pubmed/25120577
http://dx.doi.org/10.1155/2014/962343
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author Luo, Ding
Fan, Xiaonong
Ma, Congcong
Fan, Tongtao
Wang, Xiaoguang
Chang, Nvzi
Li, Lingxin
Zhang, Yanan
Meng, Zhihong
Wang, Shu
Shi, Xuemin
author_facet Luo, Ding
Fan, Xiaonong
Ma, Congcong
Fan, Tongtao
Wang, Xiaoguang
Chang, Nvzi
Li, Lingxin
Zhang, Yanan
Meng, Zhihong
Wang, Shu
Shi, Xuemin
author_sort Luo, Ding
collection PubMed
description 170 SD rats were randomly divided to five groups. Rats in model group, no-acupuncture group, and acupuncture group were subjected to MCAO surgery. Acupuncture group received 3 consecutive acupuncture treatments at a parameter that deep in 2 mm towards apex nasi and thrust/lifted at 3 times per second for 1 minute, while model group and no-acupuncture group were no-intervention control groups. Serious neural functional damage and sharp decrease of cerebral blood flow, obvious infarction volume, increased nestin mRNA expression, and immunopositive cells population (nestin(+), BrdU(+) and nestin/BrdU(+)) were found in MCAO rats which had not been observed in normal group and sham-operated group. However, the damage was attenuated by rat's “self-healing” capacity 3 days after MCAO. And the “self-healing” capacity can be strengthen by acupuncture treatment through increasing cerebral blood flow, neurogenesis, and regulation of gene transcription or GSK-3β and PP2A expression. In conclusion, the present study indicates that the underlying mechanism of acupuncture treatment on neural functional damage caused by focal ischemia injury is a multiple interaction which may involve improved cerebral blood supply, neurogenesis, and regulation of gene transcription or GSK-3β and PP2A expression in MCAO rats.
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spelling pubmed-41209132014-08-12 A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats Luo, Ding Fan, Xiaonong Ma, Congcong Fan, Tongtao Wang, Xiaoguang Chang, Nvzi Li, Lingxin Zhang, Yanan Meng, Zhihong Wang, Shu Shi, Xuemin Evid Based Complement Alternat Med Research Article 170 SD rats were randomly divided to five groups. Rats in model group, no-acupuncture group, and acupuncture group were subjected to MCAO surgery. Acupuncture group received 3 consecutive acupuncture treatments at a parameter that deep in 2 mm towards apex nasi and thrust/lifted at 3 times per second for 1 minute, while model group and no-acupuncture group were no-intervention control groups. Serious neural functional damage and sharp decrease of cerebral blood flow, obvious infarction volume, increased nestin mRNA expression, and immunopositive cells population (nestin(+), BrdU(+) and nestin/BrdU(+)) were found in MCAO rats which had not been observed in normal group and sham-operated group. However, the damage was attenuated by rat's “self-healing” capacity 3 days after MCAO. And the “self-healing” capacity can be strengthen by acupuncture treatment through increasing cerebral blood flow, neurogenesis, and regulation of gene transcription or GSK-3β and PP2A expression. In conclusion, the present study indicates that the underlying mechanism of acupuncture treatment on neural functional damage caused by focal ischemia injury is a multiple interaction which may involve improved cerebral blood supply, neurogenesis, and regulation of gene transcription or GSK-3β and PP2A expression in MCAO rats. Hindawi Publishing Corporation 2014 2014-07-10 /pmc/articles/PMC4120913/ /pubmed/25120577 http://dx.doi.org/10.1155/2014/962343 Text en Copyright © 2014 Ding Luo et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Luo, Ding
Fan, Xiaonong
Ma, Congcong
Fan, Tongtao
Wang, Xiaoguang
Chang, Nvzi
Li, Lingxin
Zhang, Yanan
Meng, Zhihong
Wang, Shu
Shi, Xuemin
A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title_full A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title_fullStr A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title_full_unstemmed A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title_short A Study on the Effect of Neurogenesis and Regulation of GSK3β/PP2A Expression in Acupuncture Treatment of Neural Functional Damage Caused by Focal Ischemia in MCAO Rats
title_sort study on the effect of neurogenesis and regulation of gsk3β/pp2a expression in acupuncture treatment of neural functional damage caused by focal ischemia in mcao rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4120913/
https://www.ncbi.nlm.nih.gov/pubmed/25120577
http://dx.doi.org/10.1155/2014/962343
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