• Title/Summary/Keyword: metabolizing enzymes

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Effects of Ginseng on the Drug Metabolizing Enzymes (인삼이 간의 약물 대사 효소에 미치는 영향)

  • 김낙두
    • YAKHAK HOEJI
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    • v.28 no.1
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    • pp.29-33
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    • 1984
  • The paper aimed to review the influences of ginseng on the metabolism of foreign substances and on the activity of hepatic drug metabolizing enzyme system in mouse or rat liver. It has been known that ginseng components reduces the motality rates and the toxic effects induced by foreign materials. Chronic pretreatment of mouse or rat with ginseng extract fractions or saponin caused the increase in the metabolism of foreign materials and the activity of drug metabolizing enzymes, such as cytochrome $P_{450}$, NADPH cytochrome C reductase and glucuronyl S-transferase in liver. Thus, it may be concluded that decrease in toxic effect of foreign substances by ginseng pretreatment may be partly related to the induction of drug metabolizing enzymes in liver.

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Effects of Cigarette Smoke Condensate on the Activities of Xenobiotic Metabolizing Enzymes in Primary Cultured Rat Hepatocytes

  • Park, Mi-Jung;Song, Yeon-Jung;Seo, Kyung-Won
    • Biomolecules & Therapeutics
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    • v.12 no.3
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    • pp.185-188
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    • 2004
  • The purpose of this study is to evaluate the effect of cigarette smoke condensate (CSC) on toxification/detoxification metabolic pathway in primary cultured rat hepatocytes. We measured the activities of cytochrome P450 monooxygenases (CYP450s) and UDP-glucuronyltransferase, sulfotransferase and glutathione-S-transferase in CSC-treated rat hepatocytes. CSC significantly increased the activities of hepatic CYP4501A1 and CYP4501A2 to 7.5 fold and 1.6 fold respectively, compared with control level. However, CSC did not affect the activities of conjugation enzymes. We a1so examined if treatment of CSC could change thc cytotoxicity of acetaminophen (AA) through modulation of metabolizing enzymes. In rat hepatocytes, pretreatment with CSC potentiated the cytotoxicity of AA. This result indicates that potentiation of AA toxicity by CSC pretreatment may be related to induction of CYP4501A1 and CYP4501A2.

(-) 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.

The Effect of Korean Red Ginseng Water-extract on Aging-related Changes in the Xenobiotic Metabolizing Enzyme System in the Liver of Rats (홍삼의 물추출물이 노화에 따른 흰쥐 간의 이물질대사 효소계에 미치는 영향)

  • Lee, Dong-Wook;Lim, Heung-Bin
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.6
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    • pp.329-335
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    • 2006
  • The present study was designed to investigate aging-related effects on the activities of xenobiotic metabolizing enzymes of rat liver by dietary supplementation of Korean red ginseng water-extract. Rat did not show any discernible signs of the rejection symptoms, and blood GOT and GPT levels were not influenced by ginseng water extracts, Cytochrome 450 levels and NADPH cytochrome P45O reductase, p-450 dependent ethoxycoumarin O-deethylase, and benzphetamine N-demethylase activities were decreased with aging, however, these phase I system enzymes activities in the ginseng group of24 months were well maintained compared with normal group. But, Levels of cytochrome bs and NADH-cytochrome b$_5$ reductase activities were also decreased with aging and were not found a clear difference between two groups. Glutathione-s-transferase activity, phase II enzyme system, in liver cytosols was also decreased in old ages, but the degree of decrease was higher in normal group than in giuseng supplemented group. These results indicate that long-term supplementation of red ginseng water extracts from weaning to 24 months do not show any side effects to rats, and retard age-related deteriorations of xenobiotic metabolizing enzymes activities in old ages.

Purple Rice Bran Extract Attenuates the Aflatoxin B1-Induced Initiation Stage of Hepatocarcinogenesis by Alteration of Xenobiotic Metabolizing Enzymes

  • Suwannakul, Nattawan;Punvittayagul, Charatda;Jarukamjorn, Kanokwan;Wongpoomchai, Rawiwan
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.8
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    • pp.3371-3376
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    • 2015
  • Pigmented rice bran has been suggested to be a valuable source of beneficial phytochemicals. We investigated genotoxic and anti-genotoxic effects of purple rice bran extract (PRBE) in rats using a liver micronucleus assay. Purple rice bran was extracted with methanol, obtaining large amounts of phenolic compounds, including anthocyanins and small amounts of gamma-oryzanol. The experimental protocols were divided into two sets. Male rats were divided into three groups. Group 1 was a negative control, while Groups 2 and 3 were fed with 100 and 500 mg/kg bw of PRBE, respectively, for 28 days. PRBE had no effect on micronucleus formation or xenobiotic metabolizing enzymes in rat liver. Experiments concerning the effect of PRBE on $AFB_1$ showed that PRBE significantly lessened the amount of micronucleated hepatocytes in $AFB_1$ treated rats. Furthermore, it modulated metabolic activation of $AFB_1$ metabolism in the liver by suppressing activity and protein expression of CYP1A2, CYP3A and CYP 450 reductase, and enhancing phase II enzymes including GST and UGT. Overall, purple rice bran extract was not genotoxic in rats. It exhibited anti-genotoxicity by modulation some xenobiotic enzymes active in $AFB_1$ metabolism.

Pharmacologic Activities of Saikosaponins (II) -Effects of Saikosaponin on Metabolizing Enzymes and Lipid Peroxide Contents in Liver- (시호(柴胡) 사포닌류(saikosaponins)의 약리작용(II) -Saikosaponin이 간 대사효소계 및 과산화지질 함량에 미치는 영향-)

  • Lee, Jeong-Sik;Lee, Chung-Kyu;Choi, Jong-Won
    • Korean Journal of Pharmacognosy
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    • v.24 no.2
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    • pp.153-158
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    • 1993
  • As a part of pharmacological studies of saikosaponins, which were reported to exhibit diverse biological activities especially concerning with liver function, effects of saikosaponin on metabolizing enzymes and lipid peroxide contents in liver were examined. As the result, UDP-glucose dehydrogenase activity and lipid peroxidation which were due to acetaminophen were inhibited by saikosaponin treatment. But other metabolizing enzyme activities were not modified.

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Clinical Pharmacogenomics of Drug Metabolizing Enzymes and its Clinical Application (약물대사효소의 유전적 다형성 및 임상적 응용)

  • Kim, Kyung-Im;Kim, Seung-Hee;Park, Ji-Eun;Chae, Han-Jung;Choi, Ji-Sun;Shin, Wan-Gyun;Son, In-Ja;Oh, Jung-Mi
    • Korean Journal of Clinical Pharmacy
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    • v.16 no.2
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    • pp.155-164
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    • 2006
  • Great inter-variability in drug response and adverse drug reactions is related to inter-variability of drug bioavailability, drug interaction and patient's disease and physyological state that cause change in absorption, distribution, metabolism and excretion of drugs. However, these alone do not sufficiently predict and explain inter-variability in drug response. In recent studies, it is reported that inter-variability in drug response and adverse drug reactions may largely resulted from genetically determined differences in drug absoption, distribution, metabolism and drug target proteins. Especially, the major human drug-metabolizing enzymes such as CYP450, N-acetyl tranferase, thiopurine S-methyl transferase, glutathione S-transferase are identified as the major gene variants that cause inter-individual variability in drug's response and adverse drug reactions. These variations may have most significant implications for those drugs that have narrow therapeutic index and serious adverse drug reactions. Therefore, the genetic variation such as polymorphisms in drug metabolizing enzymes can affect the response of individuals to drugs that are used in the treatment of depression, psychosis, cancer, cardiovascular disorders, ulcer and gastrointestinal disorders, pain and epilepsy, among others. This review describes the pharmacogenomics of the drug metabolizing enzymes associated with the drug response and its clinical applications.

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Cytochrome P4501A1 and Glutathione S-transferase M1 Polymorphism and Individual Genetic Susceptibility to the Korean head and neck Cancer patients (한국인 두경부암 환자에서 CYP1A1 및 GSTM1 유전자 다형성 분석에 의한 유전적 감수성에 대한 연구)

  • 김현준;채현기;태경;공구
    • Environmental Mutagens and Carcinogens
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    • v.20 no.1
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    • pp.26-33
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    • 2000
  • Genetic polymorphisms of metabolizing enzymes to chemical carcinogens have been recognized as a major important host factors in human cancers. To datermine the frequencies of genotypes of CYP1A1 and GSTM1 metabolizing enzymes in healthy controls and head and neck cancer patients in Korean and to identify the relative high risk genotypes of these metabolizing enzymes to head and neck cancer, we have analyzed 133 head and neck cancer patients and corresponding healthy controls matched in age and sex using polymerase chain reaction-restriction fragment length polymorphism (PCR-RELP). In analysis of CYP1A1, the Val/Val genotype of exon 7 polymorphism and m2/m2 genotype of Msp 1 polymorphism were associated with higher relative risks to head and neck cancers (Odds ratio : 2.34, 95% CI : 0.79-6.96 and 1.27, 95% CI : 0.59-2.73, respectively). In combined genotyping of CYP1A1 and GSTMI enzymes polymorphisms, the patients with Val/Val ad GSTM1(-), and m1/m21 and GSTM1(-) combined genotypes had higher relative risks than the patients with each base genotype of combined genotypes (Odds ratio : 4.57, 95% CI : 0.5-41.25 and 1.65, 95% CI L 0.73-3.77, respectively). These results sugget the combined genotyping of metabolizing enzymes could be useful for predicting individual genetic susceptibility and screening the high risk subpopulation to head and neck cancer in Korea.

Effects of Vitamins C and E on Hepatic Drug Metabolizing Function in Nypoxia/Reoxygenation (저산소 및 산소재도입시 vitamin C와 E가 간장 약물대사 기능에 미치는 영향)

  • 윤기욱;이상호;이선미
    • YAKHAK HOEJI
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    • v.44 no.3
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    • pp.237-244
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    • 2000
  • Liver isolated from 18 hours fasted rats was subjected to $N_2$hypoxia (for 45 min) followed by reoxygenation (for 30 min). The perfusion medium used was Krebs-Henseleit bicarbonate buffer (pH 7.4, $37^{\circ}C$). Vitamin C (0.5 mM) and trolox C (0.5 mM), soluble vitamin E analog, were added to perfusate. Lactate dehydrogenase (LDH), total glutathione, oxidized glutathione, lipid peroxide and drug-metabolizing enzymes were measured. After hypoxia LDH significantly increased but this increase was attenuated by vitamin C and combination of vitamin C and E. Total glutathione and oxidized glutathione in perfusate markedly increased during hypoxia and this increase was inhibited by vitamins C, E and its combination. Similarly; oxidized glutathione and lipid peroxide in liver tissue increased after hypoxia and reoxygenation and this increase was inhibited by vitamin I and combination of vitamin C and E. Hepatic drug metabolizing function (phase I, II) were suppressed during hypoxia but improved during reoxygenation. While vitamins C and E only increased glucuronidation, the combination of vitamin C and E increased the oxidation, glucuronidation and sulfation. Our findings suggest that vitamins C and E synergistically ameliorates hepatocellular damage as indicated by abnormalities in drug metabolizing function during hypoxia/reoxygenation and that this protection is in major part, caused by decreased oxidative stress.

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Pharmacogenomics in Relation to Tailor-made Drugs

  • Satoh, Tetsuo
    • Biomolecules & Therapeutics
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    • v.14 no.4
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    • pp.183-188
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    • 2006
  • The field of cytochrome P450 pharmacogenomics has progressed rapidly during the past 25 years. Recently, conjugating enzymes including sulfotransferase, acetyltransferase, glucuronosyltransferase and glutathione transferase have been also extensively studied. All the major human drug-metabolizing P450 enzymes and some conjugating enzymes have been identified and cloned, and the major gene variants that cause inter-individual variability in drug response and are related to adverse drug reactions have been identified. This information now provides the basis for the use of predictive pharmacogenomics to yield drug therapies that are more efficient and safer. Today, we understand which drugs warrant dosing based on pharmacogenomics to improve drug treatment. It is anticipated that genotyping could be used to personalize drug treatment for vast numbers of subjects, decreasing the cost of drug treatment and increasing the efficacy of drugs and health in general. It is assumed that such personalized P450 gene-based treatment which is so-called tailor(order)-made drug therapy would be relevant for 10-20% of all drug therapy in the future.