• Title/Summary/Keyword: cytochrome P450 enzyme system

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Evaluation of a Schzandrin C Derivative DDB-mixed Preparation(DWP-04) on Acetaminophen Detoxification Enzyme System in the Animal Model (오미자 Schizandrin C 유도체 DDB 복합물 DWP-04가 Acetaminophen 해독계에 미치는 영향)

  • Park, Hee-Juhn;Lee, Myeong-Seon;Chi, Sang-Cheol;Lee, Kyung-Tae;Shin, Young-Ho;Choi, Jong-Won
    • Korean Journal of Pharmacognosy
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    • v.36 no.2 s.141
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    • pp.81-87
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    • 2005
  • The effects of the DWP-04 [DDB:selenium yeast:glutathione (31.1 : 6.8 : 62.1 (w/w%)] on acetaminophen detoxification enzyme system were studied in rats. Treatment with DWP-04 was prevented againt acetaminophen-induiced hepatotoxicity in rat as evidenced by the decreased formation of lipid peroxide. Effect of DWP-04 on the activities of free radical-generating enzymes, free radical scavenging enzymes and glutathione-related enzymes as well as detoxification mechanism of DWP-04 against acetaminophen-treated was investigated in rat. Activities of cytochrome p450, cytochrome b5, aminopyrine demethylase and aniline hydroxylase as free radical-generating enzymes activities were decreased by the treatment with DWP-04 against acetaminophen treated. Although acetaminophen-induced hepatotoxicity results in the significantly decrease in the level of hepatic glutathione and activities of glutathine S-transferase, quinone reductase, glutathione reductase and ${\gamma}-glutamyl-$cysteine synthetase, these decreasing effects were markedly lowered in the DWP-04-treated rat. Therefore, it was concluded that the mechanism for the observed preventive effect of DWP-04 against the acetaminophen-induced hepatotoxicity was associated with the decreased activities in the free radical-generating enzyme system.

(-) Epigallocatechin gallate restores ethanol-induced alterations in hepatic detoxification system and prevents apoptosis

  • Anuradha, Carani V;Kaviarasan, Subramanian
    • Advances in Traditional Medicine
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    • v.7 no.3
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    • pp.311-320
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    • 2007
  • The present study was designed to estimate the protective effect of (-) epigallocatechin gallate (EGCG) on ethanol-induced liver injury in rats. Chronic ethanol administration (6 g/kg/day ${\times}$ 60 days) caused liver damage that was manifested by the elevation of markers of liver dysfunction - aspartate aminotransferase, alanine aminotransferase, alkaline phosphatase, lactate dehydrogenase, bilirubin and ${\gamma}$-glutamyl transferase in plasma and reduction in liver glycogen. The activities of alcohol metabolizing enzymes such as alcohol dehydrogenase and aldehyde dehydrogenase were found to be altered in alcohol-treated group. Ethanol administration resulted in the induction of cytochrome p450 and cytochrome-$b_{5}$ activities and reduction of cytochrome-c reductase and glutathione-S-transferase, a phase II drug metabolizing enzyme. Further, ethanol reduced the viability of isolated hepatocytes (ex vivo) as assessed by trypan blue exclusion test and induced hepatocyte apoptosis as assessed by propidium iodide staining. Treatment of alcoholic rats with EGCG restored the levels of markers of liver injury and mitigated the alterations in alcohol metabolizing and drug metabolizing enzymes and cyt-c-reductase. Increased hepatocyte viability and reduced apoptotic nuclei were observed in alcohol + EGCG-treated rats. These findings suggest that EGCG acts as a hepatoprotective agent against alcoholic liver injury.

Effect of GE-132 on the Hepatic Bromobenzene Metabolizing Enzyme System in Rats (유기게르마늄(GE-132)이 Bromobenzene의 대사계에 미치는 영향)

  • 김석환;조태현;최종원
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.6
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    • pp.702-708
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    • 1993
  • The study was attempted to elucidate the mechanism of GE-132(100mg/kg, p.o. for 6 weeks) on the metabolism of bromobenzene (460mg/kg, i.p. bid, for 2 days), which has potent carcinogenicity, mutagenicity and hepatotoxicity. It showed that activities of cytochrome p-450, aminopyrine demethylase and aniline hydroxylase, which have epoxide generating property, were not changed by GE-132 treatment. On the other hand, epoxide hydrolase was not changed but that glutathione S-transferase was significantly increased by GE-132 treatment. And also ${\gamma}-glutamylcysteine$ synthetase was not changed following the GE-132 treatment, but the activity of glutathione reductase was significantly increased. The level of hepatic glutathione which was decreased by bromobenzene recovered markedly by GE-132 pretreatment. It is concluded that the mechanism for the observed effect of GE-132 on bromobenzene metabolism is due to the induction of glutathione S-transferase.

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Effect of Methionine and Selenium Levels on Alcohol Metabolic Enzyme System in Rats (Methionine과 Selenium 수준이 흰쥐의 알코올대사 효소계에 미치는 영향)

  • Kim, Myung-Joo;Park, Eun-Mi;Lee, Mi-Kyung;Cho, Soo-Yeal
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.2
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    • pp.319-326
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    • 1997
  • This study was conducted to investigate the effects of methionine(Met) and selenium(Se) levels on alcohol metabolic enzyme system in rats. Sprague-Dawley male rats were fed on diets containing one of the three levels of Met(0, 3, 9g/kg diet) with or without Se(0.45mg/kg diet). Alcohol was administrated with 25%(v/v) ethanol orally at the same time once a day in alcohol group and isocaloric sucrose was administrated to the control group. The rats were sacrificed after 5 and 10 week of feeding periods. Alcohol dehydrogenase(ADH) and microsomal ethanol oxidizing system(MEOS) activities of hepatic tissuedom were increased more in alcohol treated groups than control group. Increment of activities preinated in simultaneous deficiency of dietary Met and Se(LMet-Se+EtOH) group. Aldehyde dehydrogenase (AIDH) activity was decreased more in alcohol treated groups than control group and significantly decreased in Met and Se supplemented(NMet+Se+EtOH) group. Hepatic cytochrome P-450 content and xanthine oxidase(XO) activity were significantly increased in alcohol treated groups Compared to control group and predominated in Met deficiency(LMet) group and excessive Met administration (HMet) group. Superoxide dismutase(SOD), catalase, glutathione S-transferase(GST) activities tended to increase by alcohol administration, the degree of increase predominated in 10 week. The activity of glutathione peroxidase(GSH-Px) was decreased in alcohol groups and tended to increase in proportion to the level of dietary Met.

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Effects of Polyacetylene Compounds from Panax Ginseng C.A. Meyer on $CCl_4$-Induced Lipid Peroxidation in Mouse Liver

  • Kim, Hye-Young;Lee, You-Hui;Kim, Shin-Il
    • Toxicological Research
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    • v.4 no.1
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    • pp.13-22
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    • 1988
  • The inhibitory effect of three polyacetylene compounds, panaxydol, panaxynol and panaxytriol isolated from Panax ginseng C.A. Meyer on $CCl_4$induced lipid peroxidation in vivo and in vitro hepatic microsomal lipid peroxidation induced by ADP-$Fe^{3+}$, NADPH and NADPH-cytochrome P-450 reductase were investigated. Their effects on lowering the lipid peroxide levels both in serum and liver and lowering the serum enzyme (GOT, GPT, LDH) activities without the $CCl_4$-induction were also determined. Male ICR mice were pretreated i.p. with polyacetylene compounds or DL-${\alpha}$-tocopherol before administration of $CCl_4$ i.p. and 20 hr after the administration of $CCl_4,$ serum and liver were analyzed. Hepatic microsome was isolated and used for the in vitro NADPH-dependent lipid peroxidation system. Except for panaxynol, treatment with polyacetylenes to control mice did not reduce the levels of lipid peroxides and serum enzyme activities. Panaxynol itself inhibited lipid peroxidation in the liver of normal mice. Polyacetylene compounds protected from the $CCl_4$-induced hepatic lipid peroxidation and lowered serum lipid peroxide levels. Polyacetylenes also inhibited the in virto hepatic microsomal lipid peroxidation in a dose-dependent manner. The results suggest that panaxydol, panaxynol and panaxytriol seem to be the antioxidant components which contribute the anti-aging activities of Panax ginseng C.A. Meyer.

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Suicidal gene therapy with rabbit cytochrome P450 4B1/2-aminoanthracene or 4-ipomeanol system in human colon cancer cell

  • Jang, Su Jin;Kang, Joo Hyun;Moon, Byung Seok;Lee, Yong Jin;Kim, Kwang Il;Lee, Tae Sup;Choe, Jae Gol;Lim, Sang Moo
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.1 no.2
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    • pp.118-122
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    • 2015
  • Suicidal gene therapy is based on the transduction of tumor cells with "suicide" genes encoding for prodrug-activating enzymes that render target cells susceptible to prodrug treatment. Suicidal gene therapy results in the death of tumor with the expression of gene encoding enzyme that converts non-toxic prodrug into cytotoxic product. Cytochrome P450 4B1 (CYP4B1) activates 4-ipomeanol (4-IPO) or 2-aminoanthracene (2-AA) to cytotoxic furane epoxide and unsaturated dialdehyde intermediate.In this study, therapeutic effects of suicidal gene therapy with rabbit CYP4B1/2-AA or 4-IPO system were evaluated in HT-29 (human colon cancer cell). pcDNA-CYP4B1 vector was transfected into HT-29 by lipofection and stable transfectant was selected by treatment of hygromycin ($500{\mu}g/mL$) for 3 weeks. Reverse transcription polymerase chain reaction (RT-PCR) analysis was performed for confirmation of CYP4B1 expression in CYP4B1 gene transduced cell. The cytotoxic effects of CYP4B1 transduced cell were determined using dye-exclusion assay after treatment of 2-AA or 4-IPO for 96 hrs. Dye-exclusion assay showed that $IC_{50}$ of HT-29 and CYP4B1 transduced HT-29 was 0.01 mM and 0.003 mM after 4-IPO or 2-AA treatment at 96 hrs exposure, respectively. In conclusion, CYP4B1 based prodrug gene therapy probably have the potential for treatment of colorectal adenocarcinoma.

Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11

  • Choi, Seunghye;Han, Songhee;Lee, Hwayoun;Chun, Young-Jin;Kim, Donghak
    • Biomolecules & Therapeutics
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    • v.21 no.6
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    • pp.487-492
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    • 2013
  • Cytochrome P450 4A11 (CYP4A11) is a fatty acid hydroxylase enzyme expressed in human liver. It catalyzes not only the hydroxylation of saturated and unsaturated fatty acids, but the conversion of arachidonic acid to 20-hydroxyeicosatetraenoic acid (20-HETE), a regulator of blood pressure. In this study, we performed a directed evolution analysis of CYP4A11 using the luminogenic assay system. A random mutant library of CYP4A11, in which mutations were made throughout the entire coding region, was screened with luciferase activity to detect the demethylation of luciferin-4A (2-[6-methoxyquinolin-2-yl]-4,5-dihydrothiazole-4-carboxylic acid) of CYP4A11 mutants in Escherichia coli. Consecutive rounds of random mutagenesis and screening yielded three improved CYP4A11 mutants, CP2600 (A24T/T263A), CP2601 (T263A), and CP2616 (A24T/T263A/V430E) with ~3-fold increase in whole cells and >10-fold increase in purified proteins on the luminescence assay. However, the steady state kinetic analysis for lauric acid hydroxylation showed the significant reductions in enzymatic activities in all three mutants. A mutant, CP2600, showed a 51% decrease in catalytic efficiency ($k_{cat}/K_m$) for lauric acid hydroxylation mainly due to an increase in $K_m$. CP2601 and CP2616 showed much greater reductions (>75%) in the catalytic efficiency due to both a decrease in $k_{cat}$ and an increase in Km. These decreased catalytic activities of CP2601 and CP2616 can be partially attributed to the changes in substrate affinities. These results suggest that the enzymatic activities of CYP4A11 mutants selected from directed evolution using a luminogenic P450 substrate may not demonstrate a direct correlation with the hydroxylation activities of lauric acid.

Effect of Protein and Fiber Levels on Ethanol-Induced Brain Damage in Rats

  • Cho, Soo-Yeul;Lee, Mi-Kyung;Kim, Myung-Joo
    • Preventive Nutrition and Food Science
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    • v.3 no.4
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    • pp.351-355
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    • 1998
  • The purpose of this study was to investigate the effect of protein and dietary fiber levels on the activities of ehanol metabilizing enzymes of the brain in acute and chronic ethanol-treated rats. Male Sprague-Dwley rats were fed on diets containing two levels of protein(7%, 20%)) with two levels of fiber(5%, 105) for 5 weeks. Rats were orally administered 40% (v/v) ethanol(5g/body weight) 90 min before decapitation in the acute ethanol-treated groups and 25% (v/v) ethanol (5g/kg body weight) once a day for 5 weeks in the chronic ethnol-treated groups. Cytosilic alcohol dehydrogenase (ADH) activities were higher than those of mitochondrial ADH. The ADH activities were increased by 20% protein and %% fiber levels in the diet in two fractions , but were decreased by chronic ethanol treatment. Mitochondrial aldehyde dehydrogenase (ALDH) activities did not change by ethanol treatment but were increased by the 20% protein level. However, cytosilic ALDH activities were decreased by chronic ethanol treatment at the 5% fiber level and did not change with protein levels. Both ALDH activities were higher in the 10% fiber groups than the 5% fiber groups. Cytochrome P-450 contents were significantly increased in the chronic ethanol-treated groups but xanthine oxidase (XO) activities did not change. P-450 contents and XO activities were significantly decreased in both the low protein and fiber groups.

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Effect of Combination Therapy of Isoniazid, Rifampicin, Ethambutol, and Pyrazinamide on Theophylline Pharmacokinetics (Isoniazid, Rifampicin, Ethambutol, Pyrazinamide의 병용투여가 Theophylline의 약물동태에 미치는 영향)

  • Ahn, Hyo-Cho;Yang, Jae-Heaon;Kim, Gwang-Hun;Ahn, Heok-Soo;Jang, Jae-Ho;Lee, Heung-Bum;Lee, Yong-Chul;Rhee, Yang-Keun
    • Tuberculosis and Respiratory Diseases
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    • v.44 no.5
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    • pp.992-1000
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    • 1997
  • Background : Since up to 90% of a theophylline dose is biotransformed, probably by interaction with one or more the variants of the cytochrome P-450 drug metabolism system, anti-tuberculosis agents including drugs influencing microsomal enzyme systems, such as isoniazid and rifampicin. may be affect the elimination of theophylline. Method : The effect of combination therapy with isoniazid(INH), rifampicin(RFP), ethambutol(EMB) and pyrazinamide(PZA) on the pharmacokinetics of theophylline was evaluated by a computer program using Bayesian method. Three group were divided as follows. Group I is control, Group II is treated with INH. RFP, EMB and PZA and Group III is treated with INH, RFP and EMB. All of them were ilon-smoker who were normal in liver and renal functions, and not administered drugs affecting on the clearance of theophylline with exception of anti-tuberculous agents. Results : When it compared control with test groups, the clearance of theophylline in Group II and Group III was significantly decreased(p<0.001), and half life in Group II and Group III showed significant elevation(p<0.001). However there were no significant differences in clearance and half life between the Group II and Group III. Conclusion : These results suggest that theophylline dose may be need of readjustment in concurrent medication of anti-tuberculous agents including INH, RFP, and EMB.

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Effects of Phloroglucinol Isolated from Ecklonia stolonifera on the Acetaminophen-Metabolizing Enzyme System in Rat (해조류 곰피로부터 분리한 Phloroglucinol이 흰쥐의 아세트아미노펜 대사효소활성에 미치는 영향)

  • 박종철;허종문;박주권;김현주;전순실;최재수;최종원
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.3
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    • pp.448-452
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    • 2000
  • 실험동물에서 곰피로부터 분리한 phlorglucinol은 acetaminophen의 투여로 현저히 증가된 간조직에 있어서 지질과선화의 함량을 억제하였다. Acetaminophen 투여에 따른 간 cytochrome P-450, aminopyrine N-deme-thylase 및 aniline hydroxylase 활성변동은 관찰할 수 없었다. 곰피 성분 투여군은 glutathione S-transferase의 활성에서는 대조군의 수준에는 미치지 않으나 효소의 활성이 acetaminophen 단독 투여군보다 현저히 증가되었다. 그리고 간조직중 glutathione의 함량은 phlorglucionl을 전처리군에서 acetaminophen 단독 투여군보다 증가되었다. Glutathione reductase 활성에서는 acetaminophen 투여군은 대조군보다 활성이 감소되었으며, 성분으로 전처리한 군은 acetaminophen 단독 투여군보다 증가 되었다. 따라서 곰피에서 분리한 페놀성화합물인 phloroglucinol은 acetaminophen 투여로 증가되던 지질과 산화함량을 감소시키며, acetaminophen 대사효소활성에서는 glutathione S-transferase의 활성이 증가되어 acetaminophen 의 대사를 촉진시키는 것으로 추정된다.

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