• Title/Summary/Keyword: monoamine oxidase (MAO)

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Isolation of Monoamine Oxidase B Inhibitory Compound from the Leaves of Eucommia ulmoides Oliv. (두충(Eucommia ulmoides Oliv.)잎으로부터 Monoamine Oxidase B 억제활성물질의 분리)

  • Ahn, Eun-Mi;Hahn, Jae-Taek;Lee, Dong-Wook;Sohn, Hyung-Ok;Kwon, Byoung-Mog;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.42 no.2
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    • pp.166-169
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    • 1999
  • The repeated silica gel colum chromatographies of n-BuOH fraction obtained from MeOH extracts of Eucommia ulmoides leaves led to isolation of a flavonoid-glycoside inhibiting monoamine oxidase B activity. Its chemical structure was determined to be $3-O-[{\beta}-D-glucopyranosyl\;(1{\rightarrow}2)\;{\beta}-D-xylopyranosyl]$ quercetin through interpretation of spectral data and adaptation of acid hydrolysis. The $IC_{50}$ value of this compound in rat brain mitochondrial MAO-B inhibitory activity was evaluated to be $8.05\;{\mu}mol/l$.

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Inhibition of Monamine Oxidase by a Flavone and Its Glycoside from Ixeris dentata Nakai

  • Chung, Ha-Sook
    • Preventive Nutrition and Food Science
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    • v.8 no.2
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    • pp.141-144
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    • 2003
  • Ixeris dentata Nakai (Compositae) is a perennial herb which has been used as a folk medicine for treating diabetes and gastroenteric troubles in Korea. Active compounds were isolated from the aerial parts of Ixeris dentata through the bioassay-guided fractionation and isolation method evaluated for inhibition of monoamine oxidase (MAO) in vitro. The compounds were identified as 5,7,3',4'-tetrahydroxyflavone (1) and 5,7,3',4'- tetrahydroxyflavone 7-glucoside (2), based on physical and spectroscopic characteristics. Compounds 1 and 2 showed a selective inhibition of type B MAO (MAO-B) activity, with IC/sub 50/ values of 15.3 μM and 36.4 μM, respectively, but did not inhibit type A MAO (MAO-A) activity.

Screening of Inhibitory Activity of Edible Mushrooms on the Monoamine Oxidase (모노아민 산화효소에 대한 식용버섯류의 저해활성 검색)

  • Hwang, Keum-Hee;Kim, Hyun-Ku;Han, Yong-Nam
    • Korean Journal of Food Science and Technology
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    • v.29 no.1
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    • pp.156-160
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    • 1997
  • The monoamine oxidase (MAO, EC 1.4.3.4) plays a central role in the metabolism of many amines including the neurotransmitter monoamines. MAO is a flavoprotein found exclusively in the mitochondrial outer membrane, occuring in the MAO-A and MAO-B subtypes. MAO-A deaminates serotonin and noradrenaline much better than phenethylamine (PEA) or benzylamine (BA), and is preferentially inhibited by clorgyline, whereas MAO-B prefers PEA and BA as substrates and is preferentially inhibited by deprenyl. MAO inhibitors were among the first drugs used in the treatment of depression, and it is known to be the inhibition of MAO-A which is important for the antidepressant effect of MAO inhibitors. For the purpose of evaluating MAO inhibitory activities from natural resources, three kinds of edible mushrooms were screened by tracing the inhibitory activities against rat brain mitochondrial MAO-A, utilizing serotonin as a substrate and rat liver mitochondrial MAO-B utilizing benzylamine as a substrate. Among the tested mushrooms, Ganoderma lucidium and Lentinus edodes showed the weak inhibitory activities against MAO-B.

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Monoamine Oxidase Inhibitory Coumarins from the Aerial Parts of Dictamnus albus

  • Jeong, Seon-Hwa;Han, Xiang Hua;Hong, Seong-Su;Hwang, Ji-Sang;Hwang, Ji-Hye;Lee, Dong-Ho;Lee, Myung-Koo;Ro,, Jai-Seup;Hwang, Bang-Yeon
    • Archives of Pharmacal Research
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    • v.29 no.12
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    • pp.1119-1124
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    • 2006
  • The methanol extract from the aerial parts of Dictamnus albus was active in inhibiting monoamine oxidase (MAO) from the mouse brain. Activity-guided fractionation led to the isolation of four known coumarins, 7-(6'R-hydroxy-3', 7'-dimethyl-2'E, 7'-octadienyloxy) coumarin (1), auraptene (2), umbelliferone (3), and xanthotoxin (4), as active compounds along with an inactive alkaloid, skimmianine (5). Compounds 1 and 2 inhibited MAO activity in a concentration-dependent manner with $IC_{50}$ values of 0.7 and $1.7\;{\mu}M$, respectively. Compounds 1 and 2 showed a slight and potently selective inhibitory effect against MAO-B ($IC_{50}\;0.5\;and\;0.6\;{\mu}M,\;respectively$) compared to MAO-A ($IC_{50}\;1.3\;and\;34.6\;{\mu}M,\;respectively$). According to kinetic analyses derived by Lineweaver-Burk reciprocal plots, compounds 1 and 2 exhibited a competitive inhibition to MAO-B.

Monoamine Oxidase Inhibitory Constituents from the Fruits of Cudrania tricuspidata

  • Han Xiang Hua;Hong Seong Su;Hwang Ji Sang;Jeong Seon Hwa;Hwang Ji Hye;Lee Min Hee;Lee Myung Koo;Lee Dongho;Ro Jai Seup;Hwang Bang Yeon
    • Archives of Pharmacal Research
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    • v.28 no.12
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    • pp.1324-1327
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    • 2005
  • A methylene chloride soluble fraction of the fruits of Cudrania tricuspidata significantly inhibited the mouse brain monoamine oxidase (MAO). Three known prenylated isoflavones were isolated and identified by activity-guided fractionation. Gancaonin A (1), 4'-O-methylalpinumisoflavone (2), and alpinumisoflavone (3) inhibited MAO activity in a concentration-dependent manner with $IC_{50}$ values of 19.4, 23.9, and 25.8 $\mu$M, respectively. Of these, gancaonin A (1) showed a selective and potent inhibitory effect against MAO-B ($IC_{50}$ 0.8 $\mu$M) than MAO-A ($IC_{50}$ >800 $\mu$M). The kinetic analysis using Lineweaver-Burk plots indicated that gancaonin A (1) competitively inhibited MAO-B.

Effect of Ethanol on Mouse Liver Monoamine Oxidase

  • Huh, Keun;Lee, Sang-Il;Park, Jong-Min;Jang, Byung-Su
    • Archives of Pharmacal Research
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    • v.11 no.3
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    • pp.213-217
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    • 1988
  • The effects of ethanol and acetaldehyde on monoamine oxidase activity in mouse liver mitochondrial fraction were studied. In vivo, a single dose of ethanol increased the hepatic monoamine oxidase activity compared to control group, and chronic ethanol consumption also increased the enzyme activity using tyramine, benzylamine or serotonin as substrate. Acetaldehyde, the metabolite of ethanol, significantly increased monoamine oxidase activity more than ethanol did. In contrast to the in vivo results, it was found that the monoamine oxidase activity was inhibited in vitro by ethanol or acetaldehyde in the dose-dependent manner.

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Screening of Vegetables for Inhibition Activity on Dopamine $\beta$-hydroxylase (DBH) and Monoamine oxidase (MAO)

  • Han, Yong-Nam;Yeunsu Choo
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1998.11a
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    • pp.188-188
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    • 1998
  • Extracts of 24 edible vegetables were tested concerning their action on in vitro inhibition on dopamine ${\beta}$-hydroxylase (DBH) and monoamine oxidase (MAO). All vegetables were purchased in Korean market and their common names were kept. Radish sprouts, ‘kkoch-na-mul’, ‘chong-gyong-chae’, ragwort, applemint showed strong DBH inhibitory effect when tyramine and crude bovine adrenal DBH were used as substrate and enzyme, respectively. ‘Cham-chwi’(Aster scaber), kale, ‘cham-na-mul’(Pimpinella brachycarpa), leek were found to have MAO-A inhibitory effect with serotonin and crude rat brain MAO-A. Lettuce, ‘chong-gyong-chae’, radish sprouts, beet leaves were found to have MAO-B inhibitory effect with benzyl amine and crude rat liver MAO-B.

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Monoamine Oxidase B Inhibitors from the Fruits of Opuntia ficus-indica var. saboten

  • Han, Yong-Nam;Choo, Yeun-Su;Lee, Young-Chul;Moon, Young-In;Kim, Sung-Dae;Choi, Jong-Won
    • Archives of Pharmacal Research
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    • v.24 no.1
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    • pp.51-54
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    • 2001
  • Three varieties of methyl citrate and 1 -methyl malate were isolated from the fruits of Opuntia ficus-indica var. saboten Makino through in vitro bioassay-guided isolation for the inhibition on monoamine oxidase(MAO). The $IC_50$ values for MAO-B of 1-monomethyl citrate, 1,3-dimethy citrate, trimethyl citrate and 1-methyl malate were 0.19, 0.23, 0.61 and 0.25 mM, respectively. However, on MAO-A, their inhibitions showed only marginal activity.

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Studies about Monoamine Oxidase Inhibitory Activities of Korean Green Tea (Teae sinensis L.) Harvested from Different Time and Location

  • Choi, You Jin;Chong, Han-Soo;Kim, Young-Kyoon;Hwang, Keum Hee
    • Natural Product Sciences
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    • v.19 no.4
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    • pp.281-285
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    • 2013
  • This study was designed to investigate the nervous sedative effects of green tea. The sedative effect was evaluated by examination of Monoamine oxidases (MAOs) inhibitory activity in vitro in the brain and liver of rat fed on green tea cultivated and harvested from the different regions and periods. It showed that methanol extracts of green tea inhibited significantly the brain MAO-A activity. Especially late harvested green tea extracts showed potential inhibitory activity. The liver MAO-B activity was also inhibited by all of the green tea extracts with strong intensity. This study confirmed that major compounds of green tea such as catechin, epigallocatechin-3-gallate (EGCG) and L-theanine, which were well known for the main bioactive components in the tea plants, were not associated with the MAO inhibitory activities of green tea. These results suggested that a MAO inhibition activity comes from other minor tea components we have to search in the future.

Catechol-O-Methyltransferase Activity in Cholestatic Rat's Liver Induced by Bile Duct Ligation

  • Mun, Kyo-Cheol
    • BMB Reports
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    • v.29 no.2
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    • pp.142-145
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    • 1996
  • To investigate the cause of increased plasma catecholamine levels in liver disease, catechol-O-methyltransferase (COMT), which provides a major route of catabolism for circulating catecholamines, was studied under the cholestasis induced by mechanical biliary obstruction in rats. Monoamine oxidase (MAO) activity and the $K_m$ and $V_{max}$ values for both enzymes were also measured. Cytosolic, microsomal, and mitochondrial COMT activities in the cholestatic liver were significantly decreased throughout the experiment. Microsomal, and mitochondrial MAO activity in the cholestatic liver were also significantly decreased. Vmax values of COMT and MAO were lower. Serum COMT and MAO activities were detected after CBD ligation. These results indicate that plasma catecholamine levels are increased in liver disease due to decreased hepatic degradation of catecholamines by decreased activities of COMT and MAO. The decreased activity of these enzymes is caused by decreased biosynthesis and by flowage into the blood from the damaged hepatocyte.

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