Schou-Pedersen Anne Marie V, Hansen Stine N, Tveden-Nyborg Pernille, Lykkesfeldt Jens
Department of Veterinary Disease Biology, Faculty of Health and Medical Sciences, University of Copenhagen, Ridebanevej 9, 1870 Frederiksberg C, Denmark.
Department of Veterinary Disease Biology, Faculty of Health and Medical Sciences, University of Copenhagen, Ridebanevej 9, 1870 Frederiksberg C, Denmark.
J Chromatogr B Analyt Technol Biomed Life Sci. 2016 Aug 15;1028:222-230. doi: 10.1016/j.jchromb.2016.05.048. Epub 2016 Jun 16.
In the present paper, we describe a validated chromatographic method for the simultaneous quantification of monoamine neurotransmitters and their biogenic metabolites intracellularly and extracellularly in primary neuronal cell culture and in sub-regions of the guinea pig brain. Electrochemical detection provided limits of quantifications (LOQs) between 3.6 and 12nM. Within the linear range, obtained recoveries were from 90.9±9.9 to 120±14% and intra-day and inter-day precisions found to be less than 5.5% and 12%, respectively. The analytical method was applicable for quantification of intracellular and extracellular amounts of monoamine neurotransmitters and their metabolites in guinea pig frontal cortex and hippocampal primary neuronal cell cultures. Noradrenaline, dopamine and serotonin were found to be in a range from 0.31 to 1.7pmol per 2 million cells intracellularly, but only the biogenic metabolites could be detected extracellularly. Distinct differences in monoamine concentrations were observed when comparing concentrations in guinea pig frontal cortex and cerebellum tissue with higher amounts of dopamine and its metabolites, 3,4-dihydroxyphenylacetic acid and homovanillic acid in frontal cortex, as compared to cerebellum. The chemical turnover in frontal cortex tissue of guinea pig was for serotonin successfully predicted from the turnover observed in the frontal cortex cell culture. In conclusion, the present analytical method shows high precision, accuracy and sensitivity and is broadly applicable to monoamine measurements in cell cultures as well as brain biopsies from animal models used in preclinical neurochemistry.
在本论文中,我们描述了一种经过验证的色谱方法,用于同时定量原代神经元细胞培养物以及豚鼠脑亚区域内细胞内和细胞外的单胺类神经递质及其生物源代谢物。电化学检测提供的定量限(LOQ)在3.6至12 nM之间。在直线范围内,获得的回收率为90.9±9.9%至120±14%,日内和日间精密度分别小于5.5%和12%。该分析方法适用于定量豚鼠额叶皮质和海马原代神经元细胞培养物中细胞内和细胞外的单胺类神经递质及其代谢物的含量。发现去甲肾上腺素、多巴胺和5-羟色胺在细胞内每200万个细胞中的含量范围为0.31至1.7 pmol,但细胞外仅能检测到生物源代谢物。与小脑相比,豚鼠额叶皮质中多巴胺及其代谢物3,4-二羟基苯乙酸和高香草酸的含量更高,在比较额叶皮质和小脑组织中的浓度时,观察到单胺浓度存在明显差异。根据额叶皮质细胞培养物中观察到的5-羟色胺周转率,成功预测了豚鼠额叶皮质组织中的化学周转率。总之,本分析方法显示出高精度、准确性和灵敏度,广泛适用于细胞培养物以及临床前神经化学中使用的动物模型脑活检中的单胺测量。