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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Effects of n-hexanal on dopamine release in the striatum of living rats.
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Effects of n-hexanal on dopamine release in the striatum of living rats.

机译:正己醛对活体大鼠纹状体中多巴胺释放的影响。

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摘要

Green odor is present in many green leaves, vegetables, and fruits and is composed of four 6-carbon straight-chain alcohols, n-hexanol, (E)-2-hexenol, (Z)-3-hexenol, and (E)-3-hexenol, and four aldehydes, n-hexanal, (E)-2-hexenal, (Z)-3-hexenal, and (E)-3-hexenal. It has been reported that certain green odor compounds enhance dopamine release from rat brain striatal slices and rat pheochromocytoma cells (PC12 cells). It is well known that intracellular Ca(2+) levels regulate dopamine release. The amount of dopamine released by n-hexanal-treated PC12 cells decreased in cells pretreated with a membrane-permeable Ca(2+) chelator. In this study, the effect of n-hexanal on dopamine release in the brain striatum of living rats was studied using an in vivo brain microdialysis system. Local stimulation with n-hexanal diluted in Ringer's solution to 0.01%, 0.05%, or 0.1% enhanced dopamine release in a concentration-dependent manner. The amount of dopamine released with 0.01% n-hexanal administration significantly declined when either extracellular or intracellular Ca(2+) levels decreased. Furthermore, the extracellular dopamine concentration increased with perfusion of nomifensine, an inhibitor of dopamine uptake into cells. When nomifensine was co-perfused with n-hexanal into the striatum, extracellular dopamine release increased further. Accordingly, the concentration of dopamine metabolite and the ratio of dopamine metabolite to dopamine decreased after treatment with n-hexanal. These responses were similar to those seen with KCl stimulation. These data suggest that n-hexanal stimulates dopamine release but does not inhibit dopamine uptake in the brain striatum of living rats, and that dopamine release associated with n-hexanal is regulated by both extracellular and intracellular Ca(2+) levels.
机译:绿色气味存在于许多绿叶,蔬菜和水果中,由四种6碳直链醇,正己醇,(E)-2-己烯醇,(Z)-3-己烯醇和(E)组成。 -3-己烯醇和四个醛,正己醛,(E)-2-己烯醛,(Z)-3-己烯醛和(E)-3-己烯醛。据报道,某些绿色气味化合物会增强多巴胺从大鼠脑纹状体切片和大鼠嗜铬细胞瘤细胞(PC12细胞)的释放。众所周知,细胞内Ca(2+)水平调节多巴胺的释放。 n-己醛处理的PC12细胞释放的多巴胺量在用膜可渗透Ca(2+)螯合剂预处理的细胞中减少。在这项研究中,使用体内脑微透析系统研究了正己醛对活体大鼠大脑纹状体中多巴胺释放的影响。在林格氏溶液中用正己酸稀释至0.01%,0.05%或0.1%的局部刺激以浓度依赖的方式增强了多巴胺的释放。当细胞外或细胞内Ca(2+)水平降低时,以0.01%正己二酸给药释放的多巴胺量显着下降。此外,细胞内多巴胺浓度随诺米芬(一种多巴胺摄取进入细胞的抑制剂)的灌注而增加。当诺美芬与正己醛共灌入纹状体时,细胞外多巴胺释放进一步增加。因此,用正己醛处理后,多巴胺代谢物的浓度和多巴胺代谢物与多巴胺的比率降低。这些反应类似于在氯化钾刺激下看到的反应。这些数据表明,n-己醛刺激多巴胺释放,但不抑制多巴胺在活大鼠脑纹状体中的摄取,并且与n-己醛相关的多巴胺释放受细胞外和细胞内Ca(2+)水平的调节。

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