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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Various exercise intensities differentially regulate GAP-43 and CAP-1 expression in the rat hippocampus
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Various exercise intensities differentially regulate GAP-43 and CAP-1 expression in the rat hippocampus

机译:各种运动强度差异调节大鼠海马中的GAP-43和CAP-1表达

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Exercise intensity is known to affect neuroplasticity. Although corticosterone and lactate levels have been linked to neuroplasticity, the effect of different endurance exercise intensity-dependent production of these biochemicals on the behaviour of hippocampal growth cone markers remains incompletely explored. Here, we investigated the effects of three different endurance treadmill training episodes for six weeks on GAP-43 and CAP-1 expression in the hippocampus of adult male Wistar rats. Our findings showed that mild exercise intensity (MEI) with a lactate production slightly higher than the lactate threshold (LT) is the optimal form of physical activity for elevating GAP-43 without changing CAP-1 expression. It was further observed that high exercise intensity (HEI) with the highest level of corticosterone and lactate production, reduced GAP-43 expression, yet increased CAP-1 expression in the hippocampus. Like HEI, we further identified similar expression patterns for these markers in low exercise intensity (LEI) with blood lactate production below LT and corticosterone level similar to MEI. The findings suggested that in high-intensity exercise, the negative pattern of hippocampal neuroplasticity depends on both corticosterone and lactate levels, whereas in low-intensity exercise, the most important factor determining this negative pattern is the lactate level. Generally, MEI with a lactate production of slightly higher than LT is the most optimal intensity for improving hippocampal neuroplasticity.
机译:已知运动强度影响神经塑性。虽然皮质酮和乳酸水平与神经塑性相连,但不同耐久性运动强度依赖性生产这些生化对海马生长锥标记的行为的影响仍然不完全探索。在这里,我们研究了三种不同耐久性跑步机训练发作的影响六周的成年男性Wistar大鼠海马的GAP-43和CAP-1表达。我们的研究结果表明,乳酸盐产生的温和运动强度(MEI)略高于乳酸阈值(LT)是用于升高GAP-43而不改变CAP-1表达的最佳形式的物理活性形式。进一步观察到,高运动强度(Hei)具有最高水平的皮质酮和乳酸产生,降低了GAP-43表达,但在海马中增加了CAP-1表达。与嘿一样,我们进一步确定了低运动强度(Lei)中这些标记的类似表达模式,其中LT和皮质酮水平类似于类似MEI的皮质乳酸盐产生。结果表明,在高强度运动中,海马神经塑性的负面模式取决于皮质酮和乳酸水平,而在低强度运动中,确定该负图案的最重要因素是乳酸水平。通常,乳酸乳酸盐的含量略高于LT是改善海马神经塑性的最佳强度。

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