• Title/Summary/Keyword: monoamine oxidase-A

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Monoamine Oxidase Inhibitor from Uncaria rhynchophylla

  • Hong, Seong-Su;Han, Xiang Hua;Park, So-Young;Choi, Woo-Hoi;Lee, Myung-Koo;Hur, Jae-Doo;Hwang, Bang-Yeon;Ro, Jai-Seup
    • Natural Product Sciences
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    • v.11 no.3
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    • pp.145-149
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    • 2005
  • A methanol soluble extract from the dried hooks and stems of Uncaria rhynchophylla showed a strong inhibitory activity against monoamine oxidase in mouse brain. Using a bioassay-guided purification of this extract, a known ${\beta}-carboline$ type alkaloid, harman (1), was obtained as an active constituent. In addition, five known indole alkaloids, isocorynoxeine (2), isorhynchophylline (3), corynoxeine (4), cadambine (5), and $3{\alpha}-dihydrocadambine$ (6), were isolated and found to be weakly active or inactive.

The Inhibitory Activity on Monoamine Oxidase of the Fruit of Morus alba (상심자의 모노아민산화효소 저해활성)

  • Hwang, keum-Hee;Song, Im
    • Korean Journal of Pharmacognosy
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    • v.34 no.2 s.133
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    • pp.185-189
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    • 2003
  • We examined the inhibitory activities against monoamine oxidase (MAO) of Morus alba in vitro and in vivo methods. Methanolic extract of M. alba showed significantly inhibitory activities on MAO-A and MAO-B that were prepared from rat brain and liver in vitro. The inhibitory activities were measured by serotonin and benzylamine as substrates, respectively. MAO-A and MAO-B activities were potently inhibited by ethylacetate extracts of M. alba in vitro tests. Those activities in vivo tests have different tendency each other. MAO-A activity was increased by the oral administration of methanolic extract of M. Alba, while, MAO-B activity was decreased. Consequently, we can suggest that M. alba may have the effects on the inhibitory activities against MAO both in vitro and in vivo.

Effects of Intravenous Administration of Taurocholate on Hepatic Monoamine Oxidase A and B Activities in Cholestatic Rats

  • Do Jun-Young;Kwak Chun-Sik
    • Biomedical Science Letters
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    • v.10 no.4
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    • pp.421-427
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    • 2004
  • The possible mechanisms of decreased monoamine oxidase (MAO) A and B activities in cholestatic rat liver were studied. Hepatic and serum MAG activities were determined from the experimental rats with common bile duct ligation (CBDL). The Michaelis-Menten constants in these hepatic enzymes were also measured. The activities of mitochondrial MAO A and B, and mircosomal MAO B as well as their Vmax values were found to be decreased significantly in CBDL plus taurocholic acid (TCA) injected group than in the control group, such as CBDL alone groups. However, their Km values in the experimental groups did not vary. Serum MAO activity increased significantly in the CBDL plus TCA injected group than in the control group. The above results suggest that TCA represses biosynthesis of the MAO in the liver. The elevated activity of the serum MAO is believed to be caused by the increment of membrane permeability ofhepatocytes upon TCA mediated liver cell necrosis.

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Inhibitory Effects of Coptisine on Monoamine Oxidase Activity

  • Lee, Myung-Koo;Lee, Kyong-Soon;Kim, Hack-Seang;Hong, Seung-Soo;Ro, Jai-Seup
    • Natural Product Sciences
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    • v.6 no.2
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    • pp.70-72
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    • 2000
  • The effects of coptisine on monoamine oxidase (EC 1.4.3.4; MAO) activity in mouse brain were investigated. Coptisine showed an inhibitory effect on MAO activity with a concentration-dependent manner. Coptisine exhibited 51.0% inhibition of MAO activity at $9\;{\mu}M$. The $IC_{50}$ value of coptisine was $8.7\;{\mu}M$. Coptisine inhibited MAO activity competitively with kynuramine as a substrate. The $K_i$ value of coptisine was $4.1\;{\mu}M$. These results indicate that coptisine functions to regulate the catecholamine content at biologically active sites.

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Inhibitory Activity of Monoamine Oxidase by Coumarins from Peucedanum japonicum

  • Dang Thi Lan Huong;Choi, Hee-Cheol;Rho, Tae-Cheol;Lee, Hyun-Sun;Lee, Myung-Koo;Kim, Young-Ho
    • Archives of Pharmacal Research
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    • v.22 no.3
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    • pp.324-326
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    • 1999
  • Four coumarins were isolated from chloroform extract of the root of Peucedanum japonicum and identified as praeruptorin A (1), xanthotoxin (2), psoralen (3) and bergapten (4) on the basis of spectroscopic methods. The inhibitory activities of these coumarins on monoamine oxidase prepared by mouse brian were tested. The IC50 values of them were shown to be $27.4{\mu}M$ (1), $40.7{\mu}M$ (2), $35.8{\mu}M$ (3), and $13.8{\mu}M$ (4), in vitro.

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Identification of N-acetyl and hydroxylated N-acetyltranylcypromine from tranylcypromine-dosed rat urine

  • Kang, Gun-Il;Chung, Soon-Young
    • Archives of Pharmacal Research
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    • v.7 no.1
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    • pp.65-68
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    • 1984
  • Mechanism of the monoamine oxidase inhibition by tranylcypromine was studied in relation to its metabolism to reactive apecies. A metabolic study performed to collect general biotransformation pathway in rats provided GC/MS evidence for the detection of two new metabolites, N-acetyl and hydroxylated N-acetyltranylacypromine.

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Monoamine Oxidase and Dopamine β-Hydroxylase Inhibitors from the Fruits of Gardenia jasminoides

  • Kim, Ji-Ho;Kim, Gun-Hee;Hwang, Keum-Hee
    • Biomolecules & Therapeutics
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    • v.20 no.2
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    • pp.214-219
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    • 2012
  • This research was designed to determine what components of Gardenia jasminoides play a major role in inhibiting the enzymes related antidepressant activity of this plant. In our previous research, the ethyl acetate fraction of G. jasminosides fruits inhibited the activities of both monoamine oxidase-A (MAO-A) and monoamine oxidase-B (MAO-B), and oral administration of the ethanolic extract slightly increased serotonin concentrations in the brain tissues of rats and decreased MAO-B activity. In addition, we found through in vitro screening test that the ethyl acetate fraction showed modest inhibitory activity on dopamine-${\beta}$ hydroxylase (DBH). The bioassay-guided fractionation led to the isolation of five bio-active compounds, protocatechuic acid (1), geniposide (2), 6'-O-trans-p-coumaroylgeniposide (3), 3,5-dihydroxy-1,7-bis(4-hydroxyphenyl) heptanes (4), and ursolic acid (5), from the ethyl acetate fraction of G. jasminoides fruits. The isolated compounds showed different inhibitory potentials against MAO-A, -B, and DBH. Protocatechuic acid showed potent inhibition against MAO-B ($IC_{50}$ $300{\mu}mol/L$) and DBH ($334{\mu}mol/L$), exhibiting weak MAO-A inhibition (2.41 mmol/L). Two iridoid glycosides, geniposide ($223{\mu}mol/L$) and 6'-O-trans-p-coumaroylgeniposide ($127{\mu}mol/L$), were selective MAO-B inhibitor. Especially, 6'-O-trans-p-coumaroylgeniposide exhibited more selective MAO-B inhibition than deprenyl, well-known MAO-B inhibitor for the treatment of early-stage Parkinson's disease. The inhibitory activity of 3,5-dihydroxy-1,7-bis (4-hydroxyphenyl) heptane was strong for MAO-B ($196{\mu}mol/L$), modest for MAO-A ($400{\mu}mol/L$), and weak for DBH ($941{\mu}mol/L$). Ursolic acid exhibited significant inhibition of DBH ($214{\mu}mol/L$), weak inhibition of MAO-B ($780{\mu}mol/L$), and no inhibition against MAO-A. Consequently, G. jasminoides fruits are considerable for development of biofunctional food materials for the combination treatment of depression and neurodegenerative disorders.

The Inhibitory Activity of the Taraxacum mongolicum on Monoamine Oxidase (민들레의 Monoamine Oxidase 저해활성)

  • Hwang, Keum-Hee;Park, Tae-Kyu
    • Korean Journal of Pharmacognosy
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    • v.37 no.4 s.147
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    • pp.229-234
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    • 2006
  • We examined the inhibitory activities against monoamine oxidase (MAO) of Taraxacum mongolicum in vitro and in vivo methods. Methanol extract of T. mongolicum showed significantly inhibitory activities on MAO-A and MAOB that were prepared from rat brain and liver in vitro. MAO-A and MAO-B activities were potently inhibited by chloroform fraction of T. mongolicum in vitro tests. The $IC_{50}$ values of each fraction on MAO-A are as followed; methanol extracts (0.90 mg/ml), $CHCl_3$ fraction (0.10 mg/ml), EtOAc fraction (0.36 mg/ml). and those on MAO-B are methanol extracts $(0.39{\mu}g/ml)$, $CHCl_3$ fraction $(0.18{\mu}g/ml)$, BuOH fraction $(0.22{\mu}g/ml)$. Those MAO-A and MAO-B activities in vivo tests have different tendency each other. MAO-A activity was increased by the oral administration of ethanol extract of T mon golicum, while MAO-B activity was decreased. The concentration of serotonin of brain tissue after oral administration of ethanolic extract of T. mongolicum is slightly increased in rat. This tendency is not different from the activity of deprenyl which is the well known MAO inhibitor used as a positive control. Based on these results, we can suggest that T. mongolicum may have the effects on the inhibitory activities against MAO. Thess activities of T. mongolicum is considerable for development of functional materials for the purpose of treatment and control of depressant, dementia, Parkinson' disease, stress and promoting exercise.

Inhibition of Monoamine Oxidase by Anithiactins from Streptomyces sp.

  • Lee, Hyun Woo;Jung, Won Kyeong;Kim, Hee Jung;Jeong, Yu Seok;Nam, Sang-Jip;Kang, Heonjoong;Kim, Hoon
    • Journal of Microbiology and Biotechnology
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    • v.25 no.9
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    • pp.1425-1428
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    • 2015
  • Monoamine oxidase (MAO) is found in most cell types and catalyzes the oxidation of monoamines. Three anithiactins (A-C, modified 2-phenylthiazoles) isolated from Streptomyces sp. were tested for inhibitory activity of two isoforms, MAO-A and MAO-B. Anithiactin A was effective and selective for the inhibition of MAO-A, with an IC50 value of 13.0 μM; however, it was not effective for the inhibition of MAO-B. Anithiactins B and C were weaker inhibitors for MAO-A and MAO-B. Anithiactin A was a reversible and competitive inhibitor for MAO-A with a Ki value of 1.84 μM. The hydrophobic methyl substituent in anithiactin A may play an important role in the inhibition of MAO-A. It is suggested that anithiactin A is a selective reversible inhibitor for MAO-A, with moderate potency, and can be considered a new potential lead compound for further development of novel reversible inhibitors for MAO-A.