首页> 美国卫生研究院文献>Biochemical Journal >The role of free serum tryptophan in the biphasic effect of acute ethanol administration on the concentrations of rat brain tryptophan 5-hydroxytryptamine and 5-hydroxyindol-3-ylacetic acid.
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The role of free serum tryptophan in the biphasic effect of acute ethanol administration on the concentrations of rat brain tryptophan 5-hydroxytryptamine and 5-hydroxyindol-3-ylacetic acid.

机译:游离血清色氨酸在急性乙醇给药对大鼠脑色氨酸5-羟色胺和5-羟吲哚-3-基乙酸浓度的双相作用中的作用。

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摘要

1. Acute administration of ethanol exerts a biphasic effect on the concentrations of rat brain tryptophan, 5-hydroxytryptamine and 5-hydroxyindol-3-ylacetic acid. Both effects are associated with corresponding changes in the availability of circulating free tryptophan. 2. The initial increases in the above concentrations are prevented by ergotamine, are unaltered by allopurinol and are potentiated by theophylline, whereas the later decreases are prevented by both ergotamine and allopurinol. 3. It is suggested that the initial enhancement by ethanol of brain tryptophan metabolism is caused by catecholamine-mediated lipolysis followed by displacement of protein-bound serum tryptophan, whereas the activation of liver tryptophaan pyrrolase, which is produced by the same mechanism, leads to the later decreases in the brain concentrations of tryptophan and its metabolites. 4. The initial effects of ethanol can be reproduced by an equicaloric dose of sucrose, and a comparison of the two treatments alone could therefore be misleading. 5. The effects of ethanol on liver and brain tryptophan metabolism have also been examined in mice, and a comparison of the results with those previously reported suggests that the ethanol effects are strain-dependent.
机译:1.乙醇的急性给药对大鼠脑色氨酸,5-羟色胺和5-羟吲哚-3-基乙酸的浓度具有两相作用。两种作用都与循环游离色氨酸的可用性的相应变化有关。 2.麦角胺可防止上述浓度的最初增加,别嘌呤醇不会改变上述浓度,茶碱可增强上述浓度,而麦角胺和别嘌呤醇均可防止随后的浓度下降。 3.有人提出,乙醇对脑中色氨酸代谢的最初增强作用是由儿茶酚胺介导的脂解作用引起的,然后是蛋白质结合的血清色氨酸的置换,而肝脏色氨酸吡咯酶的激活是由相同的机制引起的。后者的色氨酸及其代谢产物的大脑浓度降低。 4.乙醇的初始作用可以通过等热量的蔗糖来再现,因此仅将两种治疗方法进行比较可能会产生误导。 5.还已经在小鼠中检查了乙醇对肝脏和大脑色氨酸代谢的影响,并将结果与​​先前报道的结果进行比较表明,乙醇的影响取决于菌株。

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