• Title/Summary/Keyword: brain serotonin

Search Result 152, Processing Time 0.033 seconds

Effect of Dietary Protein Level and Tryptophan Administration on Brain Serotonin Metabolism (식이 단백질 수준 및 Tryptophan 투여가 Serotonin 대사에 미치는 영향)

  • 신동순;김미경
    • Journal of Nutrition and Health
    • /
    • v.26 no.3
    • /
    • pp.231-247
    • /
    • 1993
  • This study was designed to confirm the effect of dietary protein level and oral administration of tryptophan on brain serotonin metabolism. Two animal experiments were conducted. The objectives and results of research were as follows : In the first experiment, it was investigated whether administration of reserpine to Sprague-Dawley rats fed 6% or 20% casein diet induced decrease in serum tryptophan and large neutral amino acid(LNAA) concentrations, tryptophan/LNAA concentration ratio, brain tryptophan, serotonin and 5-hydroxyindoleacetic acid(5-HIAA) contents. Brain serotonin content of 6% casein diet group was lower than those of 20% casein diet group. Both 6% and 20% casein diet groups administered with reserpine to induce the analogous depression, showed the notable decrease in brain serotonin content when they were compared with 20% casein diet group not administered with reserpine. Serum tryptophan/LNAA ration and brain 5-HIAA content showed a tendency similar to the change of serotonin content, but the mean difference among all groups was not significant. From these results, it could be said that when the dietary protein level was low, brain serotonin content was decrease. The second experimnt was to see the change in serum tryptophan concentration and tryptophan/LNAA ratio and brain tryptophan, serotonin and 5-HIAA content when tryptophan was administered orally to the animals treated with reserpine. Serum tryptophan concentration tended to increase in both reserpine-treated 6% and 20% casein diet groups administered with tryptophan, especially in the 6% casein diet group. Serum tryptophan/LNAA concentration ratio tended to incrase in reserpine-tteated 6% casein diet group, while decrease in reserpine-treated 20% casein diet group. Brain tryptophan content was increased in both reserpine-treated 6% and 20% casein diet groups. However, brain serotonin content of reserpine-treated 6% casein diet group showed a tendency to decrease, while that of reserpine-treated 20% casein group increase. Consequently, the effect of tryptophan administration on increase of brain tryptophan and serotonin content in animals treated with reserpine was far more excellent in 20% casein diet groups. It was concluded that dietary protein intake and tryptophan administration increase brain serotonin level. Accordingly, it was possible to confirm that brain function, particularly in aspect of behavior related to the serotonin, was changed with manipulation of dietary composition.

  • PDF

Effects of Lead Acetate on the Uptake of [$^3$H]-serotonin by the Synaptosomes Separated from the Cerebrum and Brain Stem of the Rat (초산납이 흰쥐 synaptosome의 [$^3$H]-serotonin의 흡수에 미치는 영향)

  • 이규석;박순철
    • Korean Journal of Environmental Biology
    • /
    • v.18 no.2
    • /
    • pp.255-262
    • /
    • 2000
  • This study was carried out to investigate the physiological changes induced acutely with the low doses of lead acetate in the synaptosomes from the cerebrum and brain stem of the rat. The general uptake patterns of [$^3$H]-serotonin were observed in synaptosomes, as a model of presynaptic nerve terminal, from the cerebrum and brain stem. And the effects of the low doses of lead acetate on the uptake process were investigated id vitro and in vivo. The Km value of the uptake of the [$^3$H]-serotonin by the synaptosomes was 0.5 $\mu$M in the cerebrum and 0.1 $\mu$M in the brain stem. These low values reveal that the synaptosomes from the cerebrum and the brain stem have a high affinity to [$^3$H]-serotonin, especially in brain stem. The uptake of $\mu$M-serotonin was dependant on the sodium and potassium ions. When being treated with ouabain, the $Na^+$ $-K^+$ ATPase inhibitor, the uptake of [$^3$H]-serotonin was reduced. This supports strongly that the uptake of [$^3$H]-serotonin was sensitive to the changes of the concentrations of the sodium and potassium ions. When the calcium channel blocker, verapamil, was treated, the uptake of [$^3$H]-serotonin was changed only in synaptosomes from the brain stem. The uptake of [$^3$H]-serotonin was reduced by the lead treatment in the synaptosomes from the cerebrum and brain stem in vitro and in vivo. [lead acetate, synaptosomes, $^3$H-serotonin, rat]

  • PDF

Effect of Tryptophan on Serotonin and Opiate Receptor Binding in Stressed Rats (트립토판이 스트레스 받은 쥐 뇌의 세로토닌과 오피에이트 수용체 결합에 미치는 영향)

  • 김은미;김해리
    • YAKHAK HOEJI
    • /
    • v.35 no.4
    • /
    • pp.326-331
    • /
    • 1991
  • Brain serotonin and its utilization was investigated on stressed rats after feeding high tryptophan diet for a month. High tryptophan fed rats displayed significantly higher level of serum tryptophan, brain tryptophan, serotonin (5-hydroxytryptamine; 5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) than the control diet fed rats. When rats were treated with 3 hour immobilization (IMMB) stress, serotonin turnover was slightly increased, but not statistically significant, in control diet group rats. However in high tryptophan diet rats, 3 hr IMMB stress resulted in statistically significantly (p<0.05) decreased the serum tryptophan, brain tryptophan and 5-HT level. The concentration of 5-HIAA was significantly increased indicating accelerated utilization of the brain 5-HT of the high trp. fed rat. The utilization pattern of the serotonin was found to be similar among young and adult rats. Rats on a tryptophan enriched diet displayed higher coping ability to the stress as they exhibited smaller increment of corticosterone level. A possble involvement of opioid system was suggested in serotonin utilization by measuring total $^{3}$[H]-naloxone binding in brain.

  • PDF

A Study on the Serotonin Metabolism and the Morphine-related Analgesic Mechanism in Mice Fed Tryptophan Supplemented Deit (II) (트립토판 보강식이를 섭취한 마우스에서 serotonin 대사와 morphine 진통기작 관련성에 대한 연구(II))

  • 권영혜;이윤옥;김해리
    • Biomolecules & Therapeutics
    • /
    • v.9 no.1
    • /
    • pp.20-25
    • /
    • 2001
  • In this study we fed control diet and tryptophan supplemented diets containing 0.35% tryptophan to ICR mice for 2 weeks. The concentrations of serotonin and 5-HIAA were changed by injection of the serotonin synthesis inhibitor, p-CPA and the serotonin precursor, serotoninP and the change of brain serotonin concentration negatively correlated with that of pain sensitivity, and p-CPA and serotoninP also changed the analgesic effect of morphine. The injection of naloxone, the opiate antagonist, resulted in an increase in the writhing frequency, but its antagonistic effect was not significant. The concentration of 5-HIAA elevated in mice brain at least 3hr after administration of morphine hydroxide indicates that the changes in brain serotonin metabolism may be associated with the acute effects of morphine analgesia. In short, these results not only suggest that tryptophan supplemented diet suppress pain sensitivity in mice, but also indicate that at least in part analgesic mechanism of serotonin may be associated with morphine analgesia.

  • PDF

An Experimental Study on the Effects of Gungsindodamtang and Dangquibohyultang on the contents of Serotonin and Catecholamine in the Brain and the Plasma of the Reserpine treated rats (궁신도담탕(芎辛導痰湯) 및 당귀보혈탕(當歸補血湯)이 뇌(腦) 및 혈장(血漿)의 Serotonin과 Catecholamine 함량(含量)에 미치는 영향(影響))

  • O, So-Jeo;Park, Seong-Sik;Lee, Won-Cheol
    • The Journal of Dong Guk Oriental Medicine
    • /
    • v.3
    • /
    • pp.91-106
    • /
    • 1994
  • This Study was performed to prove the effects of Gungsindodamtang (GDT) and Dangquibohyultang (DBT) on the cosntents of Serotonin and Catecholamine in the Brain and the Plasma of the Reserpine treated rats. High-Perfomance Liquid Chromatography was used for measuring the contents of the Serotonin and Catecholamine. The results were as follows. 1. norepinephrine contents in the Brain were increased significantly in GDT-treated group and DBT-treated group in comparison with the control group. 2. epinephrine and serotonin contents in the Brain were increased in all the sample groups but have not significance. 3. norepinephrine contents in the plasma were increased significantly in all the sample groups in comparison with the control group. 4. epinephrine contents in the plasma were increased in all the sample groups but have not significance. 5. serotonin contents in the plasma were increased significantly in DBT-treated group in comparison with the control group, and inreased in GDT-treated group but have not significance. According to the above results, it is considered that Dangquibohyultang could be applied more effectively than Gungsindodamtang in decrease of the serotonin and catecholamine and other symptoms induced by Reserpine.

  • PDF

Antioxidant Effects of Serotonin and L-DOPA on Oxidative Damages of Brain Synaptosomes

  • Ham, Sang-Soo;Kim, Dong-Hyun;Lee, Suk-Ha;Kim, Yun-Sang;Lee, Chung-Soo
    • The Korean Journal of Physiology and Pharmacology
    • /
    • v.3 no.2
    • /
    • pp.147-155
    • /
    • 1999
  • Antioxidant effects of serotonin and L-DOPA on neuronal tissues were examined by studying the oxidative damages of brain synaptosomal components. The study further explored the mechanism by which they exert protective actions. Serotonin and L-DOPA (1 ${\mu}M$ to 1 mM) significantly inhibited lipid peroxidation of brain tissues by either $Fe^{2+}$ and ascorbate or t-butyl hydroperoxide in a dose dependent fashion. Protective effect of serotonin on the peroxidative actions of both systems was greater than that of L-DOPA. Protein oxidation of synaptosomes caused by $Fe^{2+}$ and ascorbate was attenuated by serotonin and L-DOPA. Protein oxidation more sensitively responded to L-DOPA rather than serotonin. Serotonin and L-DOPA (100 ${\mu}M$) decreased effectively the oxidation of synaptosomal sulfhydryl groups caused by $Fe^{2+}$ and ascorbate. The production of hydroxyl radical caused by either $Fe^{3+},$ EDTA, H_2O_2$ and ascorbate or xanthine and xanthine oxidase was significantly decreased by serotonin and L-DOPA (1 mM). Equal concentrations of serotonin and L-DOPA restored synaptosomal $Ca^{2+}$ uptake decreased by $Fe^{2+}$ and ascorbate, which is responsible for SOD and catalase. Protective effects of serotonin and L-DOPA on brain synaptosomes may be attributed to their removing action on reactive oxidants, hydroxyl radicals and probably iron-oxygen complex, without chelating action on iron.

  • PDF

A Study on Effect of Soeuminsohabhyangwon on the Brain Serotonin contents of Stressed Mice (소음인(少陰人) 소합향원(蘇合香元)이 Stress 생쥐의 뇌(腦) Serotonin 함량(含量)에 미치는 영향(影響))

  • Kwen Soon-Ju;Chung Dae-Kyoo;Kim Yun-Sub
    • Journal of Oriental Neuropsychiatry
    • /
    • v.9 no.2
    • /
    • pp.87-95
    • /
    • 1998
  • This study was aimed to evaluate the anti-stress effect of Soeuminsohabhyangwon on the mice in Cold and Swimming stress.In order to investigate the anti-stress effect of Soeuminsohabhyangwon in Cold and Swimming stressed mice, the serotonin contents were measured by HPLC method in various part of mouse brain The following results were observed. 1. In Cerebral Cortex of Frontal Lobe, the serotonin content was decreased in the Control group as compared with Normal group and the serotonin content was increased in the SHW group as compared with Control group. 2. In hypothalamus, the serotonin content was decreased in the Control group as compared with Normal group and the serotonin content was increased with statistical significance in the SHW group as compared with Control group. 3. In corpus striatum, the serotonin content was decreased in the Control group as compared with Normal group and the serotonin content was increased with statistical significance in the SHW group as compared with Control group. 4. In hippocampus, the serotonin content was decreased in the Control group as compared with Normal group and the serotonin content was increased with statistical significance in the SHW group as compared with control group.Base on the above results, it may be concluded that Soeuminsohabhyangwon are effective to reduce stress.

  • PDF

The Effects of Self-administration of Methamphetamine on Serotonin Receptors Level in Rat Brain (메스암페타민 자발섭취가 흰쥐 뇌조직 중 세로토닌 수용체에 미치는 영향)

  • 박기숙;홍진태;한진이;김혜진;김용규;이종권;안광수;이선희
    • Biomolecules & Therapeutics
    • /
    • v.9 no.2
    • /
    • pp.88-95
    • /
    • 2001
  • (+)-Methamphetamine (METH) is a psychostimulant, which has been the most popular abused drug in Korea. The rewarding mechanism in METH abuse has been reported to be mediated by dopaminergic system. Recently, it has been reported that dopamine releaser (phentermine) plays a dominant role in the discriminative stimulus effects of METH, whereas 5-HT releaser (fenfluramine) can strongly modify METH self-administration. The present study is designed to assess the behavioral changes and the changes of the serotonin receptors in the brains of rats administered repeated of self-administered METH. The repeated administration of 1.0 mg/kg/day METH for 12 days increased locomotor activities, and there was no difference between i.v. and i.p. treatment. Rats had actively acquired METH self-administration for 3 weeks at 0.1 or 0.2 mg/kg/injection. Whereas, it was taken few days to acquire sucrose pellet self-administration. The binding of [$^3$H]-8-hydroxy-DPAT (5-H $T_{1A}$ receptors) and [$^3$H]-5-carboxytryptamine (5-H $T_{1B}$ receptors) to brain sections was examined. Both passive administration and self-administration of METH did not change significantly the serotonin receptors levels in hippocampus, striatum and nucleus accumbens. These results suggest that serotonin receptors may not change in the acquisition period of METH self-administration, and we are trying to investigate the serotonin receptors levels of brain in rats maintained of METH self-administration.n.n.

  • PDF

A Study on Immunomodulation and Serotonin Metabolism Changes by Immobilization Stress in Mice Fed Tryptophan Supplemented Diet. (고 트립토판 식이를 섭취한 마우스에서 Immobilization 스트레스로 인한 면역변조와 Serotonin 대사의 변화에 대한 연구)

  • 서경원
    • Journal of Nutrition and Health
    • /
    • v.27 no.2
    • /
    • pp.153-161
    • /
    • 1994
  • We fed high trypotophan diet(3.5% tryptophan/diet(w/w) to mice for 7 days and treated then with 3 hour immobilization(IMMB) stress to investigate tryptophan metabolism and immunomodulation. The levels of serum tryptophan, brain tryptophan, serotonin(5HT) and 5-hydroxyindoleacetic acid(5HIAA) in the tryptophan diet fed animals were higher than those of the normal diet fed animals. Feeding tryptophan supplemented diet to stressed animal significantly decreased the levels of serum and brain tryptophan and 5HT levels. However, the amount of 5HIAA which is the metabolite of serotonin was increased in brain. Plasma corticosterone level was increased by the stress in both groups but the degree of this increase was smaller in high tryptophan fed animals. The relative numbers of CD8+ T cells, CD4+ T cells and B cells in spleen were decreased in high tryptophan diet fed and stressed animals compared to control diet fed and no stressed animals. CD8+ T cells decreased more than CD4+ T cells. The decrease of CD8+ T cells in high tryptophan fed and stressed animals was similar to that in high tryptophan fed animals or normal diet fed and stressed animals. Stress and tryptophan supplement acted synergistically to decrease the number of B cells. This study suggests that stress and tryptophan supplement could modify the number of lymphocyte cells, and indicates that the interaction of stress and tryptophan supplement on immune fuction depends on the types of immune cells.

  • PDF

Effect of Aerobic Exercise on Factors Relative to the Brain Nerve Growth in Girls (유산소운동이 여자 아동의 뇌세포 생성 관련인자에 미치는 영향)

  • Pyun, Mi-Young;Cho, Han-Sam;Jeon, Jae-Young;Kim, Jong-Won;Lee, Kyung-Hee;Lim, Chun-Kyu;Kim, Tae-Un;Kim, Hyun-Jun;Kwak, Yi-Sub;Ko, Ki-Jun
    • Journal of Life Science
    • /
    • v.20 no.6
    • /
    • pp.948-954
    • /
    • 2010
  • Exercise can favorably influence brain plasticity by facilitating neurogeneration, neuroadaptivity, and neuroprotection. Aerobic exercise has been reported to change brain nerve growth factors (growth hormone, insulin like factor-1, estrogen and serotonin). The purpose of this study was to demonstrate the effects of aerobic exercise for 12 weeks on brain nerve growth factors in girls. Fourteen female participants in elementary school grades 1 through 3 were randomly allocated to the exercise group (EG, n=6) and control group (CG, n=8). The EG participated in 60 minutes of modified ballet exercise as aerobic training three days a week for 12 weeks. Based on comparison between groups by two-way ANOVA with repeated measures, aerobic exercise program participants experienced decreased weight (p<0.01), BMI (p<0.01), fat mass (p<0.001), fat percent (p<0.001) and increased LBM (lean body mass) percent (p<0.001). In addition, we detected that aerobic exercise decreased the level of serotonin (p<0.05) and increased the level of GH (p<0.05) and IGF-1 (p<0.05). These findings suggest that aerobic exercise programs can be an efficient intervention to change body composition, alleviate central fatigue, improve brain function, and induce brain cell proliferation in girls.