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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >An investigation of dopaminergic metabolites in the striatum and in the substantia nigra in vivo utilising radiolabelled L-DOPA and high performance liquid chromatography: a new approach in the search for transmitter metabolites.
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An investigation of dopaminergic metabolites in the striatum and in the substantia nigra in vivo utilising radiolabelled L-DOPA and high performance liquid chromatography: a new approach in the search for transmitter metabolites.

机译:利用放射性标记的L-DOPA和高效液相色谱法对体内纹状体和黑质中多巴胺能代谢产物的研究:寻找递质代谢物的新方法。

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摘要

Although the major routes of dopamine metabolism seem to be established, at least in terminal regions such as the striatum, it is important to search for previously unknown metabolites and to investigate the relevance of previously suggested minor alternative pathways. An urgent issue is to verify and quantify the transformation of dopamine to putative toxic species, another is to further explore metabolism of dopamine located in cell bodies/dendrites, e.g. in the substantia nigra. We have developed a new method in order to widen the search for alternative metabolites of dopamine. The method is based on systemic injection of tritiated L-DOPA to rats in vivo. Brain tissue was homogenised and centrifuged and the resulting supernatant fractioned following passage through a liquid chromatography system. The radioactivity of each fraction was measured using a scintillation system. By identifying fractions containing major catecholamines and metabolites, according to a standard solution, novel metabolites can be searched for in the remaining fractions. It was possible to obtain sufficient radioactivity in separate fractions of supernatant of homogenised tissue, even from such a small brain nucleus as substantia nigra. Radioactivity was obtained in those fractions that contained the major catecholamines and their metabolites, as well as in other fractions where it may represent previously unknown metabolites of L-DOPA/dopamine. The method was used to evaluate the possibility that cytochrome P450 2E1 is involved in the metabolism of dopamine in the substantia nigra. Significant changes in the radioactivity pattern were induced by inhibition of the enzyme but conclusions about whether cytochrome P450 2E1 is involved in the metabolism of dopamine or not requires further studies. The method can be used to study the metabolism of dopamine and can be extended, by using other radiolabelled precursors, also to evaluate metabolism of other transmitters, e.g. serotonin.
机译:尽管似乎已经建立了多巴胺代谢的主要途径,至少在诸如纹状体的末端区域中,但重要的是寻找先前未知的代谢产物并研究先前建议的次要替代途径的相关性。迫在眉睫的问题是验证和量化多巴胺向假定的毒性物种的转化,另一个问题是进一步探索位于细胞体/树突中的多巴胺的代谢,例如多巴胺。在黑质。我们已经开发出一种新方法,以扩大对多巴胺替代代谢物的搜索。该方法基于在体内向大鼠全身注射of化的L-DOPA。将脑组织匀浆并离心,然后将所得的上清液通过液相色谱系统分级分离。使用闪烁系统测量每个部分的放射性。根据标准溶液,通过鉴定含有主要儿茶酚胺和代谢物的馏分,可以在其余馏分中寻找新的代谢物。即使在像黑质这样的小脑核中,也有可能在均质化组织的上清液的不同部分中获得足够的放射性。在包含主要儿茶酚胺及其代谢物的馏分中以及在可能代表先前未知的L-DOPA /多巴胺代谢物的其他馏分中获得了放射性。该方法用于评估细胞色素P450 2E1参与黑质中多巴胺代谢的可能性。放射性模式的显着变化是通过抑制该酶引起的,但是关于细胞色素P450 2E1是否参与多巴胺代谢的结论尚需进一步研究。该方法可用于研究多巴胺的代谢,并可通过使用其他放射性标记的前体进行扩展,还可以评估其他递质的代谢,例如血清素。

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