Young S N, Gauthier S
J Neurol Neurosurg Psychiatry. 1981 Apr;44(4):323-8. doi: 10.1136/jnnp.44.4.323.
Tryptophan 5-hydroxyindoleacetic acid and indoleacetic acid were measured in cerebrospinal fluid taken during pneumoencephalography from patients, some of whom took a 3 g or 6 g tryptophan load at various times before. Measurements were made on both lumbar and cisternal cerebrospinal fluid and the results showed similarities between indoleamine metabolism in human brain and spinal cord. Our data suggested that (1) the blood-brain barrier active transport system for tryptophan is not far from saturation with tryptophan and the rate-limiting enzyme in 5-hydroxytryptamine (5HT) synthesis, tryptophan hydroxylase, is about half saturated. Therefore, both 3 g and 6 g tryptophan loads produced the same maximum rise in 5HT synthesis of just under 100%, (2) tryptamine differs from 5HT in two respects. It is more sensitive to changes in tryptophan availability than 5HT and the 6 g load increased brain tryptamine metabolism more than the 3 g load; also some of the tryptamine in brain is derived from peripheral sources and diffuses from blood to brain, (3) although the brain tryptamine content is much lower than that of 5HT, its rate of metabolism as indicated by CSF metabolite levels is not. In controls the rate of tryptamine metabolism is 15% of the rate of 5HT metabolism and this can increase to 40% after a 6 g tryptophan load.
在气脑造影期间从患者采集的脑脊液中测量了色氨酸5-羟吲哚乙酸和吲哚乙酸,其中一些患者在之前不同时间摄入了3克或6克色氨酸负荷。对腰椎和脑池脑脊液都进行了测量,结果显示人脑和脊髓中吲哚胺代谢存在相似性。我们的数据表明:(1)色氨酸的血脑屏障主动转运系统距离色氨酸饱和不远,5-羟色胺(5HT)合成中的限速酶色氨酸羟化酶约为半饱和状态。因此,3克和6克色氨酸负荷在5HT合成中产生的最大升高相同,仅略低于100%;(2)色胺在两个方面与5HT不同。它比5HT对色氨酸可用性的变化更敏感,6克负荷比3克负荷更能增加脑色胺代谢;此外,脑中的一些色胺来源于外周,从血液扩散到脑;(3)尽管脑色胺含量远低于5HT,但脑脊液代谢物水平表明其代谢速率并非如此。在对照组中,色胺代谢速率是5HT代谢速率的15%,在摄入6克色氨酸负荷后可增至40%。