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急性色氨酸耗竭:在禽类(家鸡)中的首个方法验证。

Acute tryptophan depletion: the first method validation in an avian species (Gallus gallus domesticus).

机构信息

Department of Animal Biosciences, University of Guelph, ON N1G 2W1 Guelph, Canada.

Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health, Institute of Animal Welfare and Animal Husbandry, Doernbergstrasse 25 & 27, 29223 Celle, Germany.

出版信息

Poult Sci. 2017 Sep 1;96(9):3021-3025. doi: 10.3382/ps/pex142.

Abstract

Acute tryptophan depletion (ATD) is a valuable non-invasive nutritional tool in human and rodent research to study dysfunctions of the serotonergic system and related behavioral disorders. Serotonergic dysfunction is thought to be involved in the pathology of feather pecking behavior of laying hens, one of the most relevant welfare and production issues in modern intensive egg-production systems. ATD temporarily compromises the influx of tryptophan (TRP) across the blood brain barrier which reduces central availability of TRP, the substrate for serotonin (5-HT) synthesis. However, ATD has never before been developed and evaluated in birds. We hereby report that ATD in laying hens effectively depletes plasma levels of TRP to 50% of the baseline concentration, 4 hours after administration. Furthermore, ATD reduces the ratios of TRP towards aromatic amino acids (AAA) by 60% and the ratio of TRP towards large neutral amino acids (LNAA) by 70%, three hours after administration. Further studies will be needed to determine the effects of peripheral depletion on brain TRP and 5-HT levels in birds. However, our study showed for the first time in an avian species that ATD causes lowering of plasma TRP and the ratio in plasma of TRP towards other AAA or LNAA.

摘要

急性色氨酸耗竭(ATD)是一种在人类和啮齿动物研究中非常有价值的非侵入性营养工具,可用于研究 5-羟色胺能系统的功能障碍和相关的行为障碍。5-羟色胺能功能障碍被认为与产蛋鸡啄羽行为的发病机制有关,啄羽行为是现代集约化蛋鸡生产系统中最相关的福利和生产问题之一。ATD 暂时损害了色氨酸(TRP)穿过血脑屏障的内流,从而降低了中枢 TRP 的可用性,即 5-羟色胺(5-HT)合成的底物。然而,ATD 以前从未在鸟类中开发和评估过。我们在此报告,在产蛋母鸡中,ATD 可有效将血浆 TRP 水平降低至基线浓度的 50%,在给药后 4 小时。此外,ATD 可将 TRP 与芳香族氨基酸(AAA)的比值降低 60%,将 TRP 与大中性氨基酸(LNAA)的比值降低 70%,在给药后 3 小时。需要进一步的研究来确定外周耗竭对鸟类大脑 TRP 和 5-HT 水平的影响。然而,我们的研究首次在禽类中表明,ATD 可降低血浆 TRP 及其与其他 AAA 或 LNAA 的比值。

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