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Neurochemical studies on catecholamines and indoleamines by high-performance liquid chromatography with electrochemical detection

机译:高效液相色谱-电化学检测对儿茶酚胺和吲哚胺的神经化学研究

摘要

This communication reports the HPLC separation and quantitative ECD assay of dopamine (DA) and its metabolites DOPAC and HVA, 5-HT and its metabolite 5-HIAA and the noradrenaline metabolites MHPG and VMA, in samples of rat brain extracts and human CSF. The separation is carried out by reversed-phase with a methanolic phosphate/citrate buffer as mobile phase. Response is linear within 10pg-20 ng. Rat brain homogenates of cortex plus striatum were centrifuged and 10–20 l aliquots injected in the column. CSF samples were directly injected without any further manipulation. The method has been applied to the study of the possible neuromodulating role of T on the catecholaminergic and serotonergic transmission. For this purpose rats are injected intraperitoneally (ip) with T (150 mg/kg) and killed after 30 min. Relative to control rats, the results show that for n=12, T does not affect the basal level of DA and DOPAC whereas HVA increases a 99.3% and 5HT and 5HIAA show variations of 23% and — 4.1%, respectively. Aside from the fall of 5HIAA, it is interesting to note that the turnover rate of 5HT decreases, which might prove of functional significance.
机译:该通报报道了大鼠脑提取物和人脑脊液样品中多巴胺(DA)及其代谢物DOPAC和HVA,5-HT及其代谢物5-HIAA和去甲肾上腺素代谢物MHPG和VMA的HPLC分离和定量ECD分析。分离以磷酸甲醇/柠檬酸盐缓冲液为流动相通过反相进行。响应在10pg-20 ng之内是线性的。离心大鼠大脑皮层和纹状体匀浆,并在该柱中注入10-20升等分试样。 CSF样品无需进一步处理即可直接注射。该方法已用于研究T对儿茶酚胺能和血清素能传递的可能神经调节作用。为了这个目的,给大鼠腹膜内(ip)注射T(150mg / kg)并在30分钟后处死。相对于对照大鼠,结果显示,对于n = 12,T不会影响DA和DOPAC的基础水平,而HVA会提高99.3%,而5HT和5HIAA的变异分别为23%和-4.1%。除了5HIAA的下降以外,有趣的是5HT的周转率下降了,这可能具有功能意义。

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