2014
DOI: 10.1016/j.jpba.2014.05.039
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A rapid and simple method for the determination of 3,4-dihydroxyphenylacetic acid, norepinephrine, dopamine, and serotonin in mouse brain homogenate by HPLC with fluorimetric detection

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Cited by 154 publications
(57 citation statements)
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“…Improved methods enable more sophisticated experimental design and analysis. The improvement in the separation and quantification of the monoamines and their metabolites (De Benedetto et al, 2014), with excellent temporal resolution (1min (Gu et al, 2015)), and combination with electrophysiology (Flik et al, 2015) has brought direct measurements of brain amines in disease models or in response to drugs into standard practice. In combination with behavioural studies, microdialysis is a very useful experimental tool for the characterization of new models, such as birds (Ihle et al, 2015), that will lead to better understanding of the influences of monoamines on behavior.…”
Section: Mao Inhibition Raises Brain Amine Levelsmentioning
confidence: 99%
“…Improved methods enable more sophisticated experimental design and analysis. The improvement in the separation and quantification of the monoamines and their metabolites (De Benedetto et al, 2014), with excellent temporal resolution (1min (Gu et al, 2015)), and combination with electrophysiology (Flik et al, 2015) has brought direct measurements of brain amines in disease models or in response to drugs into standard practice. In combination with behavioural studies, microdialysis is a very useful experimental tool for the characterization of new models, such as birds (Ihle et al, 2015), that will lead to better understanding of the influences of monoamines on behavior.…”
Section: Mao Inhibition Raises Brain Amine Levelsmentioning
confidence: 99%
“…Detecting and monitoring trace level of DA are not only essential for biomedical chemistry and neurochemistry research but also for diagnostic and pathological purpose [3]. Different methods have been reported for the determination of DA such as spectrophotometry [4], fluorescence method [5,6], electrochemiluminescence [7,8], high-performance liquid chromatography (HPLC) [9,10], capillary electrophoresis [11], molecular imprinting polymer [12][13][14], complementary metal oxide semiconductor (CMOS) capacitive sensors [15,16], photoelectrochemical sensors [17,18], and electrochemical method [19][20][21]. However, traditional spectrophotometry and fluorescence methods are at ease of being interfered by related compounds.…”
Section: Introductionmentioning
confidence: 99%
“…It is important to monitor DA sensitively and selectively not only for biomedical chemistry and neurochemistry research but also for diagnostic and pathological purpose [9]. Different methods have been used for the determination of DA such as spectrophotometry [10], fluorescence method [11,12], electrochemiluminescence [13,14], high performance liquid chromatography (HPLC) [15,16], capillary electrophoresis [17], molecular imprinting polymer [18][19][20], complementary metal oxide semiconductor (CMOS) capacitive sensors [21,22], photoelectrochemical sensors [23,24] and electrochemical method [25][26][27]. Among the modified electrodes, polymer modified electrodes (PMEs) prepared by electropolymerization have been drawn extensive attention due to their high selectivity, sensitivity and strong adherence to electrode surface [28,29].…”
Section: Introductionmentioning
confidence: 99%