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Dietary l-tryptophan leaves a lasting impression on the brain and the stress response

机译:膳食L-色氨酸留下了大脑和压力反应的持久印象

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Comparative models suggest that effects of dietary tryptophan (Trp) on brain serotonin (5-hydroxytryptamine; 5-HT) neurochemistry and stress responsiveness are present throughout the vertebrate lineage. Moreover, hypothalamic 5-HT seems to play a central role in control of the neuroendocrine stress axis in all vertebrates. Still, recent fish studies suggest long-term effects of dietary Trp on stress responsiveness, which are independent of hypothalamic 5-HT. Here, we investigated if dietary Trp treatment may result in long-lasting effects on stress responsiveness, including changes in plasma cortisol levels and 5-HT neurochemistry in the telencephalon and hypothalamus of Atlantic salmon. Fish were fed diets containing one, two or three times the Trp content in normal feed for 1 week. Subsequently, fish were reintroduced to control feed and were exposed to acute crowding stress for 1 h, 8 and 21 d post Trp treatment. Generally, acute crowding resulted in lower plasma cortisol levels in fish treated with 3×Trp compared with 1×Trp- and 2×Trp-treated fish. The same general pattern was reflected in telencephalic 5-HTergic turnover, for which 3×Trp-treated fish showed decreased values compared with 2×Trp-treated fish. These long-term effects on post-stress plasma cortisol levels and concomitant 5-HT turnover in the telencephalon lends further support to the fact that the extrahypothalamic control of the neuroendocrine stress response is conserved within the vertebrate lineage. Moreover, they indicate that trophic/structural effects in the brain underlie the effects of dietary Trp treatment on stress reactivity.
机译:比较模型表明,在整个脊椎动物谱系中存在膳食色氨酸(TRP)对脑血清素(5-羟基对羟基胺; 5-HT)神经化学和应力反应性的影响。此外,下丘脑5-HT似乎在所有脊椎动物中的神经内分泌应激轴上的控制中发挥着核心作用。然而,最近的鱼类研究表明膳食TRP对应激反应性的长期影响,其与下丘脑5-HT无关。在这里,我们调查了膳食TRP治疗可能导致对应激反应性的延续效果,包括血浆皮质醇水平和5-HT神经化学在大西洋鲑鱼的丘脑和下丘脑中的变化。鱼喂食含有一周的TRP含量的饮食,两次或三次。随后,重新引入鱼类以对照进料,并暴露于急性拥挤应力1小时,8和21d后TRP处理。通常,与3×TRP和2×TRP处理的鱼相比,急性挤压导致用3×TRP处理的鱼中的血浆皮质醇水平降低。相同的一般图案反映在斜视5- htergic转换中,其中3×TRP处理的鱼类与2×TRP处理的鱼相比,值下降。这些长期对应激后血浆皮质醇水平的影响和围住5-HT营业额的进一步支持,进一步支持神经内分泌应激反应的含缺细胞分泌反应在脊椎动物谱系内进行保守。此外,它们表明大脑中的营养性/结构效应使膳食TRP处理对应激反应性的影响。

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