Diksic M, Tohyama Y, Takada A
Department of Neurology and Neurosurgery, McGill University, Montreal, QC, Canada.
Neurochem Res. 2000 Dec;25(12):1537-46. doi: 10.1023/a:1026654116999.
The uptake and trapping constants for labeled tryptophan (Trp) via the serotonin (5-hydroxytryptamine; 5-HT) metabolic pathway and for the incorporation of Trp into proteins, and alpha-[14C]methyl-L-tryptophan (alpha-MTrp) were measured. Measurements were done in rats treated with either saline or probenecid (200 mg/kg). In addition, the blood-brain barrier (BBB) permeability surface area products for Trp (PS(T)) and alpha-MTrp (PSalpha) were measured in normal rats. The results suggest that, in both groups of rats, there is a highly significant correlation (p < 0.05; Pearson Product Moment Correlation (PPMC) between the brain uptake and trapping constants for alpha-MTrp and those of Trp via the 5-HT metabolic pathway, but there is no significant correlation (p > 0.05; PPMC) between either of these constants and the PS products of either compound. There is also no significant correlation (p > 0.05; PPMC) between the constant for the Trp incorporation into proteins with any of the other parameters. For all parameters, except Trp incorporation into proteins (alpha-MTrp is not incorporated into proteins), there was a highly significant correlation (p < 0.001) between the quantities measured for Trp and alpha-MTrp. The data presented here strongly suggests that the brain uptake and trapping of alpha-MTrp relates to brain 5-HT synthesis, and does not relate to the BBB transport or protein incorporation of Trp. On the basis of these results, as well as those previously reported, we concluded that trapping (unidirectional uptake) of alpha-MTrp can be converted to the 5-HT synthesis rates in the brain. From this also follows that labeled alpha-MTrp is a good tracer for in vivo evaluation of the brain 5-HT synthesis.
通过血清素(5-羟色胺;5-HT)代谢途径对标记色氨酸(Trp)的摄取和捕获常数、Trp掺入蛋白质的情况以及α-[14C]甲基-L-色氨酸(α-MTrp)进行了测定。实验分别在给予生理盐水或丙磺舒(200mg/kg)的大鼠中进行。此外,还测定了正常大鼠中Trp(PS(T))和α-MTrp(PSα)的血脑屏障(BBB)通透表面积乘积。结果表明,在两组大鼠中,α-MTrp的脑摄取和捕获常数与通过5-HT代谢途径的Trp的脑摄取和捕获常数之间存在高度显著的相关性(p < 0.05;Pearson积矩相关系数(PPMC)),但这些常数与任何一种化合物的PS乘积之间均无显著相关性(p > 0.05;PPMC)。Trp掺入蛋白质的常数与其他任何参数之间也无显著相关性(p > 0.05;PPMC)。对于所有参数,除了Trp掺入蛋白质(α-MTrp不掺入蛋白质)外,Trp和α-MTrp的测量量之间存在高度显著的相关性(p < 0.001)。此处给出的数据强烈表明,α-MTrp的脑摄取和捕获与脑5-HT合成有关,而与Trp的血脑屏障转运或蛋白质掺入无关。基于这些结果以及先前报道的结果,我们得出结论,α-MTrp的捕获(单向摄取)可转化为脑中的5-HT合成速率。由此还可推断,标记的α-MTrp是体内评估脑5-HT合成的良好示踪剂。