1.Effect of Zuogui Pill () on monoamine neurotransmitters and sex hormones in climacteric rats with panic attack.
Chinese journal of integrative medicine 2017;23(3):190-195
OBJECTIVESTo explore the effects of Chinese medicine prescription Zuogui Pill (, ZGP) on monoamine neurotransmitters and sex hormones in climacteric rats with induced panic attacks.
METHODSForty-eight climacteric female rats were randomized into 6 groups with 8 rats in each group: the control group, the model group, the low-, medium- and high-dose ZGP groups and the alprazolam group. Rats in the low-, medium- and high-dose ZGP groups were administered 4.725, 9.45, or 18.9 g/kg ZGP by gastric perfusion, respectively. The alprazolam group was treated by gastric perfusion with 0.036 mg/kg alprazolam. The control and model groups were treated with distilled water. The animals were pretreated once daily for 8 consecutive weeks. The behaviors of rats in the open fifield test and the elevated T-maze (ETM) were observed after induced panic attack, and the levels of brain monoamine neurotransmitters and the plasma levels of sex hormones were measured.
RESULTSCompared with the control group, the mean ETM escape time and the levels of 5-hydroxytryptamine (5-HT) and noradrenalin (NE) of the model group were signifificantly reduced (P<0.05), Compared with the model group, the mean ETM escape time and the 5-HT and NE levels of all the ZGP groups increased signifificantly (P<0.05 or P<0.01). However, no signifificant difference was observed in the levels of sex hormones between the groups.
CONCLUSIONPretreatment with ZGP in climacteric rats may improve the behavior of panic attack, which may be related to increased 5-HT and NE in the brain.
Animals ; Behavior, Animal ; drug effects ; Biogenic Monoamines ; metabolism ; Climacteric ; drug effects ; Drugs, Chinese Herbal ; pharmacology ; therapeutic use ; Female ; Gonadal Steroid Hormones ; blood ; Maze Learning ; drug effects ; Neurotransmitter Agents ; metabolism ; Panic Disorder ; blood ; drug therapy ; physiopathology ; Rats ; Rats, Sprague-Dawley
2.Effects of Kaixin San formulas on behavioristics and central monoamine neurotransmitters of chronic stress rats.
Wan-wan LIU ; Lu XU ; Xian-zhe DONG ; Xiao TAN ; Shi WANG ; Wei-yu ZHU ; Ping LIU
China Journal of Chinese Materia Medica 2015;40(11):2180-2185
The efficacy of Chinese herbal formula in treating depression has been proved in many studies. In this study, six different Kaixin San formulas were compared to investigate their effects on central monoamine neurotransmitters of chronic stress rats and against depression based on their different components in plasma, in order to discuss the efficacy-comparability relationship and the possible efficacy mechanism. The classic isolation method and the chronic unpredictable mild stress (CUMS) depression model were combined to investigate the changes in contents in hippocampus and monoamine neurotransmitters (NE, DA, 5-HT) and the components of some formulas in plasma with HPLC and UPLC-Q-TOF-MSE methods. As a result, Dingzhi Xiaowan recorded in Essential Recipes for Emergent Use Worth A Thousand significantly increased the behavioral scores, NE and 5-HT contents in hippocampus and NE, DA and 5-HT contents in cortex, with the best anti-depressant effect. Dingzhi Xiaowan recorded in Complete Records of Ancient and Modern Medical Works showed a notable increase in sucrose preference and open field score in model rats, NE content in hippocampus and NE, DA and 5-HT contents in cortex, with a certain anti anti-depressant effect. Kaixin San recorded in Ishinpo showed remarkable rise in weight of model rats. NE content in hippocampus and DA content in cortex. Puxin Decoction recorded in A Supplement to Recipes Worth A Thousand Gold showed 5-HT content in hippocampus and DA content in cortex. Kaixin San recorded in Yimenfang only showed DA content in cortex. Kaixin Wan recorded in Essential Recipes for Emergent Use Worth A Thousand did not mention the antidepressant effect. According to the results, the formulas' different anti-depressant effects may be related to the different plasma components.
Animals
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Behavior, Animal
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drug effects
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Biogenic Monoamines
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analysis
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Brain Chemistry
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drug effects
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Chronic Disease
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Drugs, Chinese Herbal
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pharmacology
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Male
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Medicine, Chinese Traditional
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Neurotransmitter Agents
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analysis
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Norepinephrine
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analysis
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Rats
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Rats, Sprague-Dawley
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Serotonin
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analysis
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Stress, Psychological
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metabolism
3.Effects of Kaixin Jieyu Decoction () on behavior, monoamine neurotransmitter levels, and serotonin receptor subtype expression in the brain of a rat depression model.
Shi-jing HUANG ; Xian-hui ZHANG ; Yan-yun WANG ; Ju-hua PAN ; Han-ming CUI ; Su-ping FANG ; Wei WU ; Jun ZHENG ; Duo-jiao LI ; Ge BAI
Chinese journal of integrative medicine 2014;20(4):280-285
OBJECTIVETo determine the mechanisms underlying the anti-depressant effects of Kaixin Jieyu Decoction (, KJD) by investigating the effects of KJD on behavior, monoamine neurotransmitter levels, and serotonin (5-HT) receptor subtype expression in the brain in a rat model of depression.
METHODSThe rat depression model was established using chronic unpredictable mild stress (CUMS). Forty-eight Sprague Dawley rats were randomly divided into control, depression model (CUMS), CUMS+KJD (7.7 g/kg(-1)·d(-1) of crude drug), and CUMS+fluoxetine (2.4 mg/kg(-1)·d(-1)) groups (n=12 in each group), and the treatments lasted for 21 days. We regularly evaluated body weight, sucrose consumption, and horizontal and vertical activity scores in open-field tests. The content of the monoamine neurotransmitters 5-HT, norepinephrine (NE), and dopamine (DA) and the DA metabolite homovanillic acid in the cerebral cortex, and 5-HT1A and 5-HT2A receptor mRNA in the cerebral cortex and the hippocampus, were determined respectively by high-performance liquid chromatography-coularray electrochemical detector and real-time polymerase chain reaction.
RESULTSCompared with the control group, CUMS rats showed a variety of depression-like behavioral changes, including a significant reduction in body weight, sucrose consumption, and horizontal and vertical activity scores in open-field tests (P<0.05 or P<0.01), and a significant decrease in 5-HT and NE levels and 5-HT2A receptor mRNA expression. In contrast, they showed a significant increase in 5-HT1A receptor mRNA expression in the cerebral cortex. In the hippocampus, 5-HT1A receptor mRNA expression was lower whereas 5-HT2A receptor mRNA expression was higher than in the control group (P<0.05 or P<0.01). Treatment with KJD or fluoxetine partially attenuated these changes (P<0.05 or P<0.01).
CONCLUSIONKJD could normalize the levels of 5-HT and NE and adjust the balance of 5-HT1A and 5-HT2A receptor expression in rat cerebrum, and this may be one of mechanisms of antidepressant effects of KJD.
Animals ; Behavior, Animal ; drug effects ; Biogenic Monoamines ; metabolism ; Depression ; metabolism ; Disease Models, Animal ; Drugs, Chinese Herbal ; pharmacology ; Rats ; Rats, Sprague-Dawley ; Receptors, Serotonin ; classification ; metabolism
4.Analgesic effect of sinomenine on SSNI model rats and monoamine neurotransmitters in striatal extracellular fluid.
Mei-Yu ZHANG ; Peng LI ; Dan-Qiao WANG ; Xiao-Hong NIU ; Ye WANG ; Zhi-Guo WANG ; Ying ZHANG ; Shi XU ; Xiao-Jun XU
China Journal of Chinese Materia Medica 2013;38(4):597-604
OBJECTIVETo observe the analgesic effect of sinomenine on the neuropathic pain rat model induced by SSNI, and discuss its impact on monoamine neurotransmitters in striatal extracellular fluid.
METHODMale SD rats were randomly divided into the sham operation group, the SSNI model group, the gabapentin group (100 mg x kg(-1)), the sinomenine high dose group (40 mg x kg(-1)) and the sinomenine low dose group (20 mg x kg(-1)). Mechanical hyperalgesia and cold pain sensitivity were evaluated by Von Frey hairs and cold spray. Striatum was sampled by microdialysis. High performance liquid chromatography-electrochemical detector (HPLC-ECD) were used to detect the content of such neurotransmitters as monoamine neurotransmitters noradrenaline (NE), dopamine (DA), 5-hydroxy tryptamine (5-HT) and their metabolites dihydroxyphenylacetic phenylacetic acid (DOPAC) and 5-hydroxyindoleacetic acid (5-HIAA).
RESULTSSNI model rats showed significant improvement in mechanical withdrawal threshold and cold pain sensitivity, significant decrease in intracerebral NE and notable increase in DA, 5-HT and their metabolites. Compared with the model group, the sinomenine high dose group showed significant increase in mechanical withdrawal threshold at 60, 90, 180 and 240 min after abdominal administration (P < 0.01), significant decrease in cold pain sensitivity score during 30-240 min (P < 0.05). Sinomenine can significantly up-regulated NE content in striatal extracellular fluid during 45-135 min (P < 0.05), remarkably reduce DA content and DOPAC at 45, 75 and 135 min (P < 0.05), 5-HT content during 45-135 min, DOPAC during 75-165 min (P < 0.05), and 5-HIAA during 45-135 min (P < 0.05).
CONCLUSIONSinomenine has the intervention effect on neuropathic pain in SSNI model rats. Its mechanism may be related to disorder of monoamine neurotransmitters in striatal extracellular fluid.
Analgesics ; pharmacology ; Animals ; Biogenic Monoamines ; metabolism ; Disease Models, Animal ; Extracellular Fluid ; drug effects ; Male ; Morphinans ; pharmacology ; Neostriatum ; pathology ; Neurotransmitter Agents ; metabolism ; Rats ; Rats, Sprague-Dawley ; Sciatic Nerve ; drug effects ; injuries ; metabolism ; pathology
5.Detection of monoamine neurotransmitters and its metabolites by high performance liquid chromatograph after pre-column derivatization of dansyl chloride column.
Xiao HUANG ; Jia-wen CHEN ; Li-ping HE ; Xue-jun KANG
Chinese Journal of Preventive Medicine 2012;46(12):1117-1120
OBJECTIVETo develop a high performance liquid chromatography (HPLC) for detection of monoamine neurotransmitters and its metabolites after pre-column derivatization with dansyl chloride.
METHODSThe C(18) chromatograph column (150 mm×4.6 mm×5 µm) was selected for detection, and derived by dansyl chloride (10 mg/ml) under the condition of 50°C water bath by pH11 buffer solution. 20 µl acetic acid acetone solution (1.0 mol/L) was then mixed in for termination of the reaction. Then the solution was cooling to room temperature, 0.1 mol/L acetic acid zinc-acetonitrile-tetrahydrofuran solution was adopted for mobile phrase, with the volume ratio at 62:35:3. The flow rate was 1.0 ml/min between 0-10 min, 2.0 ml/min between 10-35 min. The ultraviolet detection wavelength was 286 nm. The above method separately detected monoamine neurotransmitters and its metabolites and evaluated the limit of detection, accurate degree and accuracy degree.
RESULTSThe linear relations between each component was good in the range of 1 - 20 µg/ml (r = 0.999). The lowest detection limit of norepinephrine, dopamine, 5-hydroxytryptamine and the metabolites 3-methoxy-4-benzoglycols, homovanillic acid and 5-heteroauxin were separately 0.60, 0.80, 0.41, 0.21, 0.19 and 0.1 µg/ml; while the average recovery rates were between 78.5% - 95.9%, and the relative standard deviation (RSD) was 6.62%, 7.64%, 2.98%, 3.60%, 5.09% and 3.09%, respectively. In the process of selection and optimization of the chromatographic conditions, we observed the importance of metal ions to discretion, and discussed the temperature, pH of the buffer solution and dosage of dansyl chloride in derivation. Under the above conditions, the reaction was perfect, and the baseline of the detected materials thoroughly separated.
CONCLUSIONThe method to detect monoamine neurotransmitters and its metabolites by HPLC and pre-column derivatization with dansyl chloride was established; and this method could provide reference for the detection of polyamine by HPLC.
Biogenic Monoamines ; analysis ; metabolism ; Chromatography, High Pressure Liquid ; methods ; Dansyl Compounds ; Neurotransmitter Agents ; analysis ; metabolism
6.Effects of theanine on monoamine neurotransmitters and related genes in cerebral ischemia-reperfusion injury rats.
Jing YAO ; Xin-nan SHEN ; Hui SHEN ; Min WU
Chinese Journal of Preventive Medicine 2012;46(7):635-639
OBJECTIVETo study the effects of theanine on dopamine (DA), 5-hydroxy tryptamine (5-TH) and glutamate receptor 2 (GluR2) mRNA, phospholipase-γ1 (PLC-γ1) mRNA in cerebral ischemia-reperfusion injury rats and explore the mechanism of protective effects of theanine on the induced brain injury by ischemia-reperfusion in rats.
METHODSAccording to random number table, a total of 56 sprague-dawley rats in SPF grade about six-week old and 100 - 120 grams weighting were divided into five groups according to the body weight levels: model group (n = 12), sham-operation group (n = 8), low theanine group (10 mg/kg), middle theanine group (30 mg/kg) and high theanine group (90 mg/kg). There were 12 rats in each of the theanine group. The rats in model group and sham-operation groups were given distilled water, and the rats in theanine groups were given corresponding theanine solution intragastrically for fifteen days. Then the cerebral ischemia-reperfusion injury was established by middle cerebral artery occlusion (MCAO). The score of neurological behavior was evaluated at the 3rd and 24th hours after reperfusion. Rats were sacrificed at 24 hours after reperfusion, the concentrations of DA, 5-HT and theanine in rats brain following ischemia-reperfusion were determined. At the same time, we determined the levels of reactive oxygen species (ROS) and activities of catalase (CAT) in mitochondria of brain. The expressions of GluR2 mRNA and PLC-γ1 mRNA in rat brain were examined by reverse transcription polymerase chain reaction (RT-PCR) technique.
RESULTSThe score of neurological behavior of rats in model group, theanine-low, middle, high dose groups at the 3rd hour was 6.000 ± 0.926, 4.100 ± 0.738, 3.444 ± 0.726 and 2.250 ± 0.886 respectively (F = 29.70, P < 0.01), and the score at the 24th hour in these groups was 6.625 ± 0.916, 5.000 ± 0.817, 3.667 ± 0.707 and 2.625 ± 0.916 respectively(F = 34.68, P < 0.01). The concentration of DA in model group, theanine-low, middle, high dose groups and sham-operation group was (10.26 ± 1.12), (12.48 ± 1.09), (14.55 ± 0.94), (15.97 ± 0.92) and (11.98 ± 0.63) µg/g respectively (F = 43.76, P < 0.01). The concentration of 5-HT in these groups was (1.091 ± 0.160), (0.818 ± 0.101), (0.571 ± 0.050), (0.453 ± 0.111) and (0.863 ± 0.063) µg/g respectively (F = 48.68, P < 0.01). The level of ROS was (3.072 ± 0.503), (1.331 ± 0.268), (1.295 ± 0.061), (0.804 ± 0.200) and (2.158 ± 0.218) U×min⁻¹×mg⁻¹ (F = 80.82, P < 0.01) respectively and the activities of CAT in these groups were (4.880 ± 1.121), (8.405 ± 1.356), (9.535 ± 2.511), (15.090 ± 4.054) and (21.260 ± 6.054) U/g respectively (F = 28.58, P < 0.01). The expressions of GluR2 mRNA were 0.842 ± 0.020, 1.063 ± 0.100, 1.170 ± 0.152, 1.254 ± 0.131 and 1.012 ± 0.056 respectively (F = 9.23, P < 0.01). The expressions of PLC-γ1 mRNA in these groups were 0.737 ± 0.090, 0.887 ± 0.045, 0.963 ± 0.025, 0.991 ± 0.049 and 0.867 ± 0.079 respectively(F = 10.24, P < 0.01).
CONCLUSIONTheanine has a protective effect on the induced brain injury by ischemia-reperfusion in rats, which might be associated with its interaction with monoamine neurotransmitters and up-regulating the expressions of GluR2 mRNA and PLC-γ1 mRNA.
Animals ; Biogenic Monoamines ; metabolism ; Brain ; drug effects ; metabolism ; Brain Ischemia ; genetics ; metabolism ; Glutamates ; pharmacology ; Male ; Neurotransmitter Agents ; pharmacology ; Phospholipase C gamma ; genetics ; metabolism ; RNA, Messenger ; genetics ; Rats ; Rats, Sprague-Dawley ; Receptors, AMPA ; genetics ; metabolism ; Reperfusion Injury ; genetics ; metabolism
7.Effects of Chinese herbal compound on monoamine and neuronal amino acids in rat's telencephalon in the course of exhaustion and recovery process.
Hong-Zhen LIU ; Li ZENG ; Xi-Liang KONG ; Iei ZHU ; Yun-Chao MA
Chinese Journal of Applied Physiology 2011;27(4):439-443
OBJECTIVETo observe the effect of Chinese herbal compound on variance of neurotransmitters in rat telencephalon and to further discuss the mechanism underlying Chinese herbal compound in improving exercise capacity and promoting recovery from exercise-induced fatigue.
METHODS64 rats (8 week old) were randomly divided into medicine group (MG) and control group (CG). Chinese herbal compound was administered to rats of MG for 8 weeks. 8 weeks later, every group was divided into 4 subgroups and all were killed at different time point separately, and then neurotransmitter in rat brain was tested.
RESULTSThe exhaustion time of MG was significantly longer than that in CG (P < 0.01). In rest conditions, glutamic acid (GLU) of MG was significantly higher than that in CG (P < 0.01), while, there were no significant differences between MG and CG in other indexes. After fixed quantitative load exercise, the content of 5-hydroxytryptamineZZ(5-HT), 5-hydroindole acetic (5-HIAA), gamma-aminobutyric acid (GABA), Dopamine (DA) and 5-HT/5-HIAA were significantly lower than those in CG, while, GLU, GLU/GABA and DA/5-HT were significantly higher than those in CG. Compared with CG, exhaustion significantly (P < 0.05) decreased 5-HT, GABA and 5-HT/5-HIAA, and significantly (P<0.05) increased GLU, DA/5-HT and GLU/GABA level in MG. 12 h after exhaustion, in contrast to CG, level of 5-HT and 5-HT/5-HIAA in MG were significantly (P < 0.01) lower while GLU, DA, GABA and DA/5-HT were significantly (P < 0.01) higher.
CONCLUSIONDuring exhaustion exercise, Chinese herbal compound demonstrated strong inhibiting effect on synthesis of 5-HT, 5-HIAA, DA, GABA and promoting effect on GLU synthesis, this had been confirmed by the combined effect, including increase of excitatory transmitter and excitability of central nervous system and the prolongation of exhaustion time and promoting recovery from fatigue.
Amino Acids ; metabolism ; Animals ; Biogenic Monoamines ; metabolism ; Drugs, Chinese Herbal ; pharmacology ; Fatigue ; metabolism ; physiopathology ; Hydroxyindoleacetic Acid ; metabolism ; Male ; Neurons ; metabolism ; Physical Conditioning, Animal ; physiology ; Physical Exertion ; physiology ; Rats ; Rats, Wistar ; Serotonin ; metabolism ; Telencephalon ; drug effects ; metabolism
8.Research traditional Chinese medicine properties by detecting rats' monoamine neurotransmitter after given two different traditional Chinese medicine.
Junqing LI ; Deqin ZHANG ; Xiao ZHANG ; Xi WANG ; Sen ZENG
China Journal of Chinese Materia Medica 2010;35(8):1022-1024
OBJECTIVETo find out the essence of the traditional Chinese medicine properties from detecting the rats' monoamine neurotransmitter after given different traditional Chinese drug.
METHODThe property of rhizome curcumae and radix curcumae is opposite, they were given to rats respectively for one month. Next, HPLC-ECD method was used to detect the rats' monoamine neurotransmitter in different encephalic region.
RESULTRhizome curcumae can raise the rats' monoamine neurotransmitter, but radix curcumae inhibits the rats' monoamine neurotransmitter.
CONCLUSIONThere are correlations between the traditional Chinese medicine properties and monoamine neurotransmitter.
Animals ; Biogenic Monoamines ; metabolism ; Brain ; drug effects ; metabolism ; Chromatography, High Pressure Liquid ; Curcuma ; chemistry ; Drugs, Chinese Herbal ; pharmacology ; Male ; Neurotransmitter Agents ; metabolism ; Rats ; Rats, Wistar
9.Influence of long-term microwave radiation on contents of amino acids and monoamines in urine of Wistar rats.
Li-feng WANG ; Xiang-jun HU ; Rui-yun PENG
Chinese Journal of Industrial Hygiene and Occupational Diseases 2010;28(6):445-448
Amino Acids
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urine
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Animals
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Biogenic Monoamines
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metabolism
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urine
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Male
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Microwaves
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Rats
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Rats, Wistar
10.Effect of environment temperature on the recovery of microdialysis probe for monoamine neurotransmitter.
Heng-Yi ZHANG ; Hong-Yi SHI ; En-Yu WANG
Journal of Zhejiang University. Medical sciences 2009;38(3):271-275
OBJECTIVETo investigate the effect of environment temperature on the recovery of microdialysis probe for neurotransmitters.
METHODSNeurotransmitters NE, DA, and 5-HT were dialyzed with 4 mm membrane length microdialysis probes in different environmental temperature. There were three conditions: lower temperature condition, the temperature of standard solution and that of the perfusate were both 24 degree; higher temperature condition,both were 37.5 degree; and the middle temperature:the perfusate was 24 degree and the standard solution was 37.5 degree. The concentrations of neurotransmitters in the dialyzed solution and the standard solution were analyzed by HPLC-ECD, and recoveries were then calculated.
RESULTIn lower temperature condition,the recoveries of microdialysis probe for NE, DA, 5-HT were 18.3 %, 19.6% and 16.9%, respectively. In middle temperature condition, the recoveries were 29.6%, 30.7% and 24.3%, respectively, and in higher temperature condition, those were 49.2%, 47.5% and 37.2%, respectively. With the analysis of variance, the recoveries for NE, DA, 5-HT increased with temperature significantly (P<0.01).
CONCLUSIONBoth the perfusate and the standard solution affects the environmental temperature of microdialysis probe, which in turns affects the recovery of microdialysis probe for neurotransmitters. So in order to calculate the recovery more accurately, the standard solution/the perfusate should be kept in body temperature.
Animals ; Biogenic Monoamines ; analysis ; Brain ; metabolism ; Brain Chemistry ; Chromatography, High Pressure Liquid ; Humans ; Microdialysis ; methods ; Neurotransmitter Agents ; analysis ; Oxadiazoles ; Temperature

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