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Correlation between hippocampal levels of neural, epithelial and inducible NOS and spatial learning skills in rats

机译:大鼠海马神经,上皮和诱导型NOS水平与空间学习技能的相关性

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In the present study, to better understand the role of different nitric oxide synthase (NOS) isoforms in hippocampus-dependent forms of learning, we examined the expression of neural, endothelial, and inducible NOS in the hippocampus of young-adult rats classified as "poor" and "good" learners on the basis of their performance in the partially baited 12-arm radial maze. Taking into consideration strain-dependent differences in learning skills and NOS expression, experiments were performed on two different lines of laboratory rats: the inbred Wistar (W) and the outcrossed Wistar/Spraque-Dawley (W/S) line. The hippocampal levels of NOS proteins were assessed by Western Blotting. In the present study, genetically more homogenous W rats showed a slower rate of learning compared to the genetically less homogenous outcrossed W/S rats. The deficient performance in the W rat group compared to outcrossed W/S rats, and in "poor" learners of both groups compared to "good" learners was due to a higher percentage of reference memory errors. The overall NOS levels were significantly higher in W group compared to outcrossed W/S rats. In both rat lines, the rate of learning positively correlated with hippocampal levels of nNOS and negatively correlated with iNOS levels. Hippocampal eNOS levels correlated negatively with animals' performance but only in the W rats. These results suggest that all 3 NOS isoforms are implemented but play different roles in neural signaling.
机译:在本研究中,为了更好地了解不同的一氧化氮合酶(NOS)亚型在海马依赖型学习中的作用,我们检查了成年大鼠海马中神经,内皮和诱导型NOS的表达。 ”和“好”的学习者是根据他们在部分诱饵的12臂径向迷宫中的表现而定的。考虑到学习技能和NOS表达的菌株依赖性差异,在两条不同的实验大鼠品系上进行了实验:近交Wistar(W)和异型Wistar / Spraque-Dawley(W / S)品系。通过蛋白质印迹法评估海马中NOS蛋白的水平。在本研究中,与遗传上同质性较弱的W / S大鼠相比,遗传上更同质的W大鼠显示出较慢的学习速度。与交叉W / S大鼠相比,W大鼠组的表现欠佳;与“良好”学习者相比,两组的“学习能力差”的学习者的表现均归因于参考记忆错误的百分比较高。与交叉W / S大鼠相比,W组的总NOS水平明显更高。在这两个大鼠系中,学习率与海马nNOS水平呈正相关,与iNOS水平呈负相关。海马的eNOS水平与动物的表现负相关,但仅在W大鼠中。这些结果表明,所有3种NOS亚型均已实现,但在神经信号传导中发挥不同的作用。

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