运动诱导海马中即时早期基因(c-Fos、ARC、EGR-1)的表达:系统综述。

Q3 Medicine
Dementia e Neuropsychologia Pub Date : 2024-04-15 eCollection Date: 2024-01-01 DOI:10.1590/1980-5764-DN-2023-0015
Upik Rahmi, Hanna Goenawan, Nova Sylviana, Iwan Setiawan, Suci Tuty Putri, Septian Andriyani, Lisna Anisa Fitriana
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引用次数: 0

摘要

即刻早期基因在神经系统中表现出激活标记,包括 ARC、EGR-1 和 c-Fos,并与突触可塑性有关,尤其是在海马中。即刻早期基因的表达受体育锻炼的影响,体育锻炼会直接诱导 ARC、EGR-1 和 c-Fos 的表达:为了评估运动的影响,我们进行了一项文献研究,以确定即刻早期基因(ARC、c-Fos 和 EGR-1)的表达水平:获取在线文献的数据库包括 PubMed-Medline、Scopus 和 ScienceDirect。在标题中使用以下关键词选取原始英文文章:(运动或体力活动)和(c-Fos)和(海马)、(运动或体力活动)和(ARC)和(海马)、(运动或体力活动)和(EGR-1 或 zif268)和(海马):结果:体育锻炼可影响海马中 EGR-1、c-Fos 和 ARC 的表达,海马是大脑中参与学习和记忆的重要部分。高强度体育锻炼可增加 c-Fos 的表达,表明神经被激活。此外,ARC 基因的表达也会因体育锻炼而增加。ARC 基因在突触可塑性、学习和记忆调节、突触结构变化和突触连接增加方面发挥作用,而 EGR-1 基因也在突触可塑性方面发挥作用,这种基因变化会影响学习和记忆。总的来说,运动或定期体育锻炼可以增加海马中 ARC、c-Fos 和 EGR-1 的表达。这反映了神经可塑性和突触可塑性随着体育锻炼而发生的变化。结论:运动后海马神经元中 c-Fos、EGR-1 和 ARC 的表达会增加,从而增强与学习和记忆相关的突触可塑性和神经发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exercise induction at expression immediate early gene (c-Fos, ARC, EGR-1) in the hippocampus: a systematic review.

The immediate early gene exhibits activation markers in the nervous system consisting of ARC, EGR-1, and c-Fos and is related to synaptic plasticity, especially in the hippocampus. Immediate early gene expression is affected by physical exercise, which induces direct ARC, EGR-1, and c-Fos expression.

Objective: To assess the impact of exercise, we conducted a literature study to determine the expression levels of immediate early genes (ARC, c-Fos, and EGR-1).

Methods: The databases accessed for online literature included PubMed-Medline, Scopus, and ScienceDirect. The original English articles were selected using the following keywords in the title: (Exercise OR physical activity) AND (c-Fos) AND (Hippocampus), (Exercise OR physical activity) AND (ARC) AND (Hippocampus), (Exercise OR physical activity) AND (EGR-1 OR zif268) AND (Hippocampus).

Results: Physical exercise can affect the expression of EGR-1, c-Fos, and ARC in the hippocampus, an important part of the brain involved in learning and memory. High-intensity physical exercise can increase c-Fos expression, indicating neural activation. Furthermore, the expression of the ARC gene also increases due to physical exercise. ARC is a gene that plays a role in synaptic plasticity and regulation of learning and memory, changes in synaptic structure and increased synaptic connections, while EGR-1 also plays a role in synaptic plasticity, a genetic change that affects learning and memory. Overall, exercise or regular physical exercise can increase the expression of ARC, c-Fos, and EGR-1 in the hippocampus. This reflects the changes in neuroplasticity and synaptic plasticity that occur in response to physical activity. These changes can improve cognitive function, learning, and memory.

Conclusion: c-Fos, EGR-1, and ARC expression increases in hippocampal neurons after exercise, enhancing synaptic plasticity and neurogenesis associated with learning and memory.

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来源期刊
Dementia e Neuropsychologia
Dementia e Neuropsychologia Medicine-Geriatrics and Gerontology
CiteScore
2.20
自引率
0.00%
发文量
58
审稿时长
8 weeks
期刊介绍: Dementia top Neuropsychologia the official scientific journal of the Cognitive Neurology and Ageing Department of the Brazilian Academy of Neurology and of the Brazilian Association of Geriatric Neuropsychiatry, is published by the "Associação Neurologia Cognitiva e do Comportamento", a nonprofit Brazilian association. Regularly published on March, June, September, and December since 2007.
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