School of Life Sciences, Oxford Brookes University, Oxford OX3 0BP, UK.
J Psychiatr Res. 2012 Feb;46(2):239-47. doi: 10.1016/j.jpsychires.2011.10.003. Epub 2011 Nov 8.
Sub-chronic tryptophan depletion (SCTD) is proposed as an animal model for depression. Aims were to test the hypothesis and optimise the time of SCTD-induced depression-related behaviour and associated biochemical changes. Sprague Dawley rats were treated with a low tryptophan (TRP) containing diet for 0, 7 or 14 days. Peripheral and central neurochemical markers were measured. SCTD-induced depression-related behaviour was assessed by the forced swim test (FST). Model sensitivity to antidepressants was tested by concomitant treatment with paroxetine. SCTD-induced significant reductions in weight gain and measures of peripheral and central TRP. Corticosterone, aldosterone and kynurenine (K), increased whilst kynurenic acid (KA), an NMDA antagonist decreased. 5-HT(2) receptor binding Bmax was enhanced but was reversed by paroxetine. Corticosterone and aldosterone were significantly negatively-correlated to weight gain. SCTD increased floating time and reduced swimming time in the FST but were reversed by paroxetine. Aldosterone was increased at 7 and 14 days, whereas other changes maximised at 14 days. Aldosterone may be an early marker or causal link for depression development. Increased corticosterone and brain tissue 5-HT-receptor density may be correlates of depressive behaviour. Consequential increases in NMDA signalling through increased K/KA ratios suggest the model may be useful for testing novel antidepressants.
亚慢性色氨酸耗竭(SCTD)被提议作为一种抑郁症的动物模型。目的是检验假设并优化 SCTD 诱导的与抑郁相关的行为和相关生化变化的时间。Sprague Dawley 大鼠接受低色氨酸(TRP)饮食处理 0、7 或 14 天。测量外周和中枢神经化学标志物。通过强迫游泳试验(FST)评估 SCTD 诱导的与抑郁相关的行为。通过同时用帕罗西汀治疗来测试模型对抗抑郁药的敏感性。SCTD 诱导的体重增加和外周及中枢 TRP 的显著减少。皮质酮、醛固酮和犬尿氨酸(K)增加,而 NMDA 拮抗剂犬尿喹啉酸(KA)减少。5-HT(2)受体结合 Bmax 增加,但被帕罗西汀逆转。皮质酮和醛固酮与体重增加呈显著负相关。SCTD 增加了 FST 中的漂浮时间并减少了游泳时间,但被帕罗西汀逆转。醛固酮在 7 天和 14 天增加,而其他变化在 14 天达到最大值。醛固酮可能是抑郁症发展的早期标志物或因果关系。皮质酮和脑组织 5-HT 受体密度的增加可能是抑郁行为的相关因素。通过增加 K/KA 比值,NMDA 信号的继发增加表明该模型可能可用于测试新型抗抑郁药。