• Title/Summary/Keyword: aniline hydroxylase

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Effect of Carbon Tetrachloride on the Changes of Xanthine Oxidase Activity in Rate Previously Fed Low or High Protein Diet (식이성 단백질 함량에 따른 흰쥐에 사염화탄소 투여가 Xanthine Oxidase활성에 미치는 영향)

  • 윤종국;이상일;신중규
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.20 no.6
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    • pp.527-537
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    • 1991
  • To evaluate an effect of liver xanthine oxidase on the induction of liver damage, carbon tetrachloride (CCl4) was intraperitoneally injected twice at 0.1ml/100g body weight to the rate fed a low (LP)or high protein diet(HP) while the control group fed LP or HP received only olive oil. The changing rate of liver xanthine oxidas activity was compared with that of a free radical generating enzyme, liver aniline hydroxylase and a scavenging enzyme, glutathions S-transferase activity between the rate fed a LP and those fed HP, and the two groups treated with CCl4. Concomitantly, the degree of liver damage which could be considered as the paramete for CCl4 metabolism in case of CCl4-intoxicated animal was observed in the present experimental conditions and the effect of allopurinol, xanthine oxidase inhibitor, on the CCl4-toxicity of rate liver was alos demostrated. On the other hand, the comparative effect of actinomycin D on the liver and serum xanthine oxidase of CCl4-treated rats fed HP with that of those fed LP and the kinetics of purifed liver enzyme from the liver of CCl4-treated rats fed HP was also compared with that of those fed LP to clarify the differences of xanthine oxidase activity between two groups. The increasing rate of liver weigth/body wt, serum levels of ALT and the decreasing rate of hepatic ALT activity and protein contents to each control group were higher in CCl4-treated rats fed HP than those fed LP. Under the animal models as indentified by the present data herein, the liver xanthine oxidase activity was higher in CCl4-treated rats fed HP than those fed LP, and the control group fed HP also showed the much higher activity xanthine oxidase than that fed LP, whereas there were no differences in the activity of hepatic aniline hydroxylase and glutathions S-transferase between the two group treated with CCl4. Although the hepatic aniline hydroxylase activity was somewhat higher in the rats fed HP than those fed LP, the increasing rate of liver xanthine oxidase to the rats fed LP was higher in those fed HP than that of liver aniline hydroxylase. The degree of liver damage identified such as liver weight and serum ALT activity was less in the CCl4-treated rats pretreated with allopurinol. These results suggest that even a system at which xanthine oxidase acts as well as the drug metabolizing enzyme may influence the acelatin of CCl4 metabolism. In addition, the purified liver xanthine oxidase from CCl4-treated rats fed HP showed decreased Km value when compared to its control group. The Km value of liver xanthine oxidase of CCl4-treated rats fed LP showed a similar Km value with its control group. Furthermore, the decreasing rate of liver and serum xanthine oxidase acitivity in CCl4-treated rats pretreated with actinomycin D to the CCl4-treated rats was higher in rats fed HP than in those fed LP. These results suggest that the inductino of xanthine oxidase in CCl4-treated rats fed HP may be greater than in those fed LP.

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Effect of Ethanol Pretreatment on the Bromobenzene Metabolism in Rats (흰쥐에 있어서 주정중독이 Bromobenzene 대사에 미치는 영향)

  • 김중우;신중규;윤종국
    • Toxicological Research
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    • v.11 no.2
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    • pp.253-259
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    • 1995
  • To investigate an effect of ethanol pretreatment on the bromobenzene metabolism, the brornobenzene (400 mg/kg body wt. i. p.) was given 3 times at intervals of one day to the male rats orally pretreated with 5% ethanol throughout 2 months. In the ethanol pretreated rats, liver injuries were not demonstrated on the basis of the liver weight per body weight, serum levels of alanine aminotransferase (ALT) activity and histopathologic findings. By the bromobenzene treatment, ethanol pretreated rats showed the more decreased levels of serum ALT and liver weight/body weight(%), and decreased degree of liver damage on histopathological observation than the control group. The ethanol pretreated rats showed the more increased activities of hepatic aniline hydroxylase, glutathione Stransf erase (GST) and the more decreased contents of glutathione than the control. Concomitantly the ethanol pretreated rats showed the more decreased contents of hepatic glutathione and increased activities of GST by the bromobenzene treatment. Above results indicate that ethanol pretreatment enhance the metabolizing ability of bromobenzene in rats.

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Effect of a Single Dichloromethane Administration on Drug Metabolizing Activity in Rats (랫트에서 이염화메탄 일회투여가 약물대사활성에 미치는 영향)

  • 윤혜은;김상겸;이희승;김영철
    • Toxicological Research
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    • v.12 no.2
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    • pp.265-270
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    • 1996
  • Effects of a single administration of dichloromethane (DCM) on the hepatic drug metabollzing activity were determined using adult female rats. Rats were treated with DCM (3 mmol/kg, ip) and the disappearance of antipyrine (100 mg/kg, iv) or ethanol (2 g/kg, ip) from blood was measured. The blood concentration and half-life of antipyrine was not influenced by DCM administration. And DCM did not alter the blood concentration of ethanol measured for 240 min after the treatment. The effect of DCM treatment on in vitro cytochrome P-450-dependent enzyme activities was examined as well. No significant difference in either aniline hydroxylase or aminopyrine N-demethylase was observed in hepatic microsomal fractiorts of rats treated with DCM 24 hr prior to sacrifice. The present study indicates that acutely given DCM does not alter the metabolism of xenobiotics in vivo. The failure of DCM to alter the in vitro hepatic microsomal drug metabolizing activity was also noted.

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Protective Effect of Diallyl Disulfide on the Bromobenzene-Induced Hepatotoxicity in Mice (Bromobenzene 간손상에 대한 Diallyl Disulfide의 예방효과)

  • Lee, Sang-Il;Yoon, Chong-Guk;Huh, Keun
    • The Korean Journal of Pharmacology
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    • v.26 no.2
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    • pp.185-192
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    • 1990
  • The present work was undertaken to investigate the protective effect of diallyl disulfide on the bromobenzene toxicity in mice. It was observed that the aniline hydroxylase and epoxide hydrolase activities were not changed by the treatment of diallyl disulfide for 5 days. But glutathione S-transferase activity was significantly increased. A striking enhancement of serum alanine aminotransferase activity and hepatic lipid peroxide content after bromobenzene administration was markedly decreased by diallyl disulfide pretreatment. These results indicate that the inducing effects of diallyl disulfide on the bromobenzene intermediate detoxifying enzyme such as glutathione S-transferase are believed to be a possible protective mechanism for the bromobenzene toxicity in mice.

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The Effects of Houttuynia cordata on the Hepatic Bromobenzene Metabolizing Enzyme System in Rats and Isolation of Phenolic Compounds (흰쥐의 브로모벤젠대사계에 미치는 어성초의 영향과 페놀성 화합물의 분리)

  • Hur, Jong-Moon;Park, Ju-Gwon;Park, Sung-Jong;Lee, Jong-Ho;Sung, Nak-Ju;Choi, Myeong-Rak;Song, Sang-Ho;Kim, Moon-Sung;Choi, Jong-Won;Park, Jong-Cheol
    • Korean Journal of Pharmacognosy
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    • v.31 no.2
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    • pp.228-234
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    • 2000
  • Effects of Houttuynia cordata on the level of lipid peroxide and the enzyme activities of the liver were investigated in bromobenzene-induced rats. Lipid peroxide content in liver was increased by bromobenzene. It was decreased when the methanol extract from the aerial parts of H. cordata was treated to the rat. The methanol extract reduced the activities of aminopyrine N-demethylase and aniline hydroxylase that increased by bromobenzene, however did not affect glutathione S-transferase activity. The methanol extract recovered the activity of epoxide hydrolase activity that decreased significantly by bromobenzene. We suggest that under our experimental conditions the extract might play an important play in the prevention of hepatotoxicity by reduction of aminopyrine N-demethylase and aniline hydroxylase activities as well as enhancement of epoxide hydrolase activity. Six phenolic compounds have been isolated from H. cordata and identified by means of spectral analysis as protocatechuic acid, quercetin, apigenin, afzelin, hyperoside and quercitrin.

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Hepatoprotective Activities of Rosa davurica Root Extract in Rats Intoxicated with Bromobenzene (브로모벤젠으로 유도된 간독성 흰쥐에서 생열귀나무 뿌리의 간보호활성)

  • Park, Jong-Cheol;Hur, Jong-Moon;Hwang, Young-Hee;Choi, Myeong-Rak;Kim, Suk-Nam;Choi, Jong-Won
    • Journal of Life Science
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    • v.13 no.2
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    • pp.230-235
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    • 2003
  • To investigate hepatoprotective activities of the root extract of Rosa davurica, the activities of hepatic enzymes, aminopyrine N-demethylase, aniline hydroxylase, glutathione S-transferase and epoxide hydrolase in rats intoxicated with bromobenzene were studied. Pretreatment with the methanol extract from the roots of Rosa davurica did not show any significant effects on the increases of the activities of aminopyrine N-demethylase and aniline hydroxylase, enzymes forming toxic epoxide by bromobenzene. There was no change in glutathione S-transferase activity by Rosa davurica. However, the activity of epoxide hydrolase, and epoxide-removing enzyme, was increased 33% by the administration of 500 mg/kg of the methanol extract. From the results, the protection of Rosa davurica against bromobenzene-induced hepatotoxicity is thought to be via enhancing the activity of epoxide hydrolase, an enzyme removing toxic epoxide rather than through epoxide-producing system.

Hepatoprotective Effect of Catechin Isolated from the Root of Rosa rugosa Thunb (해당화 뿌리에서 분리한 Catechin의 간보호효과)

  • Hur, Jong-Moon;Kim, In-Ho;Park, Jong-Cheol
    • Korean Journal of Medicinal Crop Science
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    • v.15 no.1
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    • pp.21-25
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    • 2007
  • The root of Rosa rugosa has been used in folkloric medicine as a treatment agent for diabetes. In the present study, we investigated whether (+)-catechin isolated from this plant can change the activities of hepatic drug metabolizing enzymes in rats treated with bromobenzene. Pretreatment with (+)-catechin gave no effects on the activities of aminopyrine N-demethylase and aniline hydroxylase, enzymes forming toxic bromobenzene epoxide intermediates and glutathione Stransferase, an enzyme removing toxic epoxides. However, the activity of epoxide hydrolase, an enzyme detoxifying the bromobenzene toxic intermediates was mildly recovered by (+)-catechin treatment.

The Effects of Fermented Anchovy on the Bromobenzene-Induced Hepatic Lipid Peroxidation in vitro (시험관내에서 멸치액젓이 Bromobenzene유발 간조직 지질과산화에 미치는 효과)

  • Park, Jong-Ok;Choi, Jong-Won;Kim, Hee-Sook;Ryu, Byung-Ho
    • Korean Journal of Food Science and Technology
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    • v.32 no.5
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    • pp.1179-1185
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    • 2000
  • Fermented anchovy was used to investigate its effects on the formation of lipid peroxide and the activities of epoxide or free radical generating enzyme in vitro in bromobenzene-treated rats. All solvent fractions from fermented anchovy not only showed the strong antioxidative activities on linoleic acid autooxidation, but also reduced bromobenzene-induced hepatic lipid peroxidation. The activities of aniline hydroxylase and aminopyrine N-demethylase elevated by bromobenzene were recovered to the level of normal rats by adding the solvent fractions of fermented anchovy. But, xanthine oxidase and aldehyde oxidase activities were not affected by fermented anchovy. These results suggest that reduction of the bromobenzene-induced hepatic lipid peroxidation is caused by inhibition on the epoxide formation, not on free radical generation.

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A Study for Regulation of Ethanol-inducible $P_{450}$(CYP2E1) on $CCI_4$-induced Hepatic Damage

  • Park, Sun-Mi;Park, Eun-Jeon;Ko, Geon-Il;Kim, Jae-Baek;Sohn, Dong-Hwan
    • Archives of Pharmacal Research
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    • v.18 no.3
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    • pp.179-182
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    • 1995
  • Previous study showed that $CCl_4$ administration evoked a rapid decrease in cytochrome $P_{450}$ 2E1 protein soon after the exposure due to posttranslational inhibition(Biochem. Biophys. Res. Commun. 179:449-454, 1991). In this report, aniline hydroxylase and the amounts of immunoreactive $P_{450}$ 2E1 were rapidly decreased during day 1 to 2 and recovered during day 3 to 4 after a single dose of $CCl_4$. The activity of pentoxyresorufin-O-dealkylase was also suppressed at day 1 and began to repair from day 2. However, the decrease in immunoreactive $P_{450}$ 2C content was not observed. The decreases in $P_{450}$ 2E1 enzyme activity and immunoreactive protein by acute $CCl_4$ treatment were accompanied by a decline in $P_{450}$ 2E1 mRNA level. The data thus suggested a pretranslational reduction of $P_{450}$ 2E1 during day 1 to 2 after acute $CCl_4$ treatment.

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Effect of Dietary Tungstate on the Liver Damage in $CCl_4$-treated Rats (식이성 Tungstate가 사염화탄소 투여에 의한 흰쥐 간 손상에 미치는 영향)

  • 윤종국;박해숙;이상일
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.6
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    • pp.678-684
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    • 1993
  • To evaluate the role of xanthine oxidase in liver damage by CCl4, a group of rats were fed tungstate for a month, which suppressed the activities of xanthine oxidase in serum and liver. Control group of rats were fed standard diet without tungstate. Liver damage was induced both in tungstate fed and control groups by two intraperitoneal injections of CCl4 at the level of 0.1ml/100g body weight at intervals of 24 hours. Increases in the levels of serum alanine aminotransferase by CCl4 were significantly smaller in tungstate fed rats than in control rats. Concomitantly, histopathologic changes were less in tungstate fed rats than in control ones. In rats either treated with CCl4 or not, hepatic type O xanthine oxidase activities were remarkably reduced by tungstate feeding. Hepatic aniline hydroxylase activities were higher in rats fed tungstate than control rats when animals were not treated with CCl4, but the enzyme activities were lower in tungstate fed rats than control when they were treated with CCl4. Neither tungstate feeding nor CCl4 treatment caused any significant changes in hepatic glutathione contents, and activities of hepatic glutathione S-transferase, glutathione peroxidase and superoxide dismutase. It is concluded xanthine oxidase reaction augment CCl4 induced liver damage via oxygen free radical system.

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