运动强度对内侧前额叶皮层星形细胞反应性极化的影响。

Su-Ju Eo, Yea-Hyun Leem
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引用次数: 1

摘要

目的:体育锻炼通过促进认知功能,如学习和记忆,有助于神经可塑性。星形细胞表型与突触可塑性密切相关。本研究旨在确定高强度和中等强度运动对内侧前额叶皮层(mPFC)星形胶质细胞极化和突触改变的影响是否不同。方法:小鼠进行中强度(MIE)和高强度跑步机运动(HIE)。记忆容量评估采用新的目标识别和改进的y迷宫测试。免疫组化,在mPFC中计数c- fos阳性细胞。使用western blot分析,在全细胞裂解物中定量星形胶质细胞表型标记物,并在突触体部分中测定突触分子。结果:在NOR测试中,无论运动强度如何,运动都延长了对新物体的接近时间,而MIE仅改善了空间记忆。运动诱导的c-Fos在前扣带皮层(ACC)和c-Fos阳性细胞中的表达在MIE中高于HIE中。在边缘前/边缘下皮质区,c- fos阳性细胞数量在MIE小鼠中增加,在HIE小鼠中减少。HIE小鼠的A1星形胶质细胞标记物(C3)增加,而运动小鼠的A2星形胶质细胞标记物增强,无论强度如何。在突触体部分,无论运动强度如何,突触蛋白均升高。结论:运动强度通过调节星形胶质细胞的反应状态影响神经元的可塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Effects of exercise intensity on the reactive astrocyte polarization in the medial prefrontal cortex.

Purpose: Physical exercise contributes to neuroplasticity by promoting cognitive functions, such as learning and memory. The astrocytic phenotype is closely associated with synaptic plasticity. This study aimed to determine whether astrocyte polarization and synaptic alterations in the medial prefrontal cortex (mPFC) are affected differently by high- and moderate-intensity exercise.

Methods: Mice were subjected to moderate-(MIE) and high-intensity treadmill running (HIE). Memory capacity was assessed using the novel object recognition and modified Y-maze tests. For immunohistochemistry, c-Fos-positive cells were counted in the mPFC. Using western blot analysis, astrocyte phenotype markers were quantified in whole-cell lysates, and synaptic molecules were determined in the synaptosomal fraction.

Results: Exercise lengthened the approach time to novel objects regardless of intensity in the NOR test, whereas MIE only improved spatial memory. Exercise induced c-Fos expression in the anterior cingulate cortex (ACC) and c-Fos-positive cells were higher in MIE than in HIE in the ACC area. In the prelimbic/infralimbic cortex region, the number of c-Fos-positive cells were enhanced in MIE and decreased in HIE mice. The A1 astrocyte marker (C3) was increased in HIE mice, while the A2 astrocyte markers were enhanced in exercised mice, regardless of the intensity. In the synaptosomal fraction, synaptic proteins were elevated by exercise regardless of intensity.

Conclusion: These results suggest that exercise intensity affects neuronal plasticity by modulating the reactive state of astrocytes in the mPFC.

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