• Title/Summary/Keyword: drug metabolizing function

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The Beneficial Effect of Trolox on Sepsis-Induced Hepatic Drug Metabolizing Dysfunction

  • Park, Sang-Won;Lee, Sun-Mee
    • Archives of Pharmacal Research
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    • v.27 no.2
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    • pp.232-238
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    • 2004
  • Trolox is a hydrophilic analogue of vitamin E. The aim of this study was to investigate its effects on hepatic injury, especially alteration in cytochrome P450 (CYP)-dependent drug metabolism during polymicrobial sepsis. Rats were subjected to polymicrobial sepsis by cecal ligation and puncture (CLP). The rats were treated intravenously with Trolox (2.5 mg/kg) or vehicle, immediately after CLP. Serum aminotransferases and lipid peroxidation levels were markedly increased 24 h after CLP. This increase was attenuated by Trolox. Total CYP content and NADPH-P450 reductase activity decreased significantly 24 h after CLP. This decrease in CYP content was attenuated by Trolox. At 24 h after CLP, there was a significant decrease in the activity of these CYP isozymes: CYP1A1, 1A2, 2B1, and 2E1. However, Trolox differentially inhibited the decrease in CYP isozyme activity. Trolox had little effect on the decrease in CYP1A1 activity but Trolox significantly attenuated decreases in CYP1A2 and 2E1 activities. In fact, Trolox restored CYP2B1 activity to the level of activity found in control rats. Our findings suggest that Trolox reduces hepatocellular damage as indicated by abnormalities in hepatic drug-metabolizing function during sepsis. Our data also indicates that this protection is, in part, caused by decreased lipid peroxidation.

Genetic Polymorphisms in Drug Transporters and Regulatory Xenobiotic Receptors in Korean Population

  • Lee, Sang-Seop;Shin, Jae-Gook
    • Proceedings of the Korea Environmental Mutagen Society Conference
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    • 2004.05a
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    • pp.27-29
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    • 2004
  • Drug transporters play an essential role in the absorption, distribution and elimination of clinical drugs, nutrients and toxicants. The importance of the transporters is exampled by therapeutic failure in cancer chemotherapy that is mainly caused by the overexpression of multidrug resistance (MDR)-related transporters. In addition, the transporters may involve in drug-drug interactions that lead to serious adverse drug responses and some transporters also contribute to inter-individual variation in drug responses. As an effort to understand the mechanism underlying the inter-individual variation of transporters activity, genetic and environmental factors influencing the expression or function of the transporters have extensively explored through last decade. Among them, genetic polymorphism of drug transporter encoding genes has generated much interest since the discovery of functional single nucleotide polymorphisms (SNP) of MDR1 gene. Besides drug transporters, xenobiotic receptors also modulate drug disposition by regulating the transcription of drug metabolizing enzymes and drug transporters. Among many xenobiotic receptors, pregnane X receptor (PXR) and constitutive androstane receptor (CAR) are two most well characterized since these receptors show wide substrate specificities and regulate the expression of various enzymes involved in drug disposition. Recently, several functional genetic polymorphisms were reported in PXR coding gene. In the present study, genetic polymorphisms of two drug transporters, MDR1 and BCRP, and two xenobiotic receptors, PXR and CAR, were investigated in Korean population.

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Genetic Polymorphisms in Drug Transporters and Regulatory Xenobiotic Receptors in Korean Population

  • Lee, Sang-Seop;Shin, Jae-Gook
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2004.05a
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    • pp.27-29
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    • 2004
  • Drug transporters play an essential role in the absorption, distribution and elimination of clinical drugs, nutrients and toxicants. The importance of the transporters is exampled by therapeutic failure in cancer chemotherapy that is mainly caused by the overexpression of multidrug resistance (MDR)-related transporters. In addition, the transporters may involve in drug-drug interactions that lead to serious adverse drug responses and some transporters also contribute to inter-individual variation in drug responses. As an effort to understand the mechanism underlying the inter-individual variation of transporters activity, genetic and environmental factors influencing the expression or function of the transporters have extensively explored through last decade. Among them, genetic polymorphism of drug transporter encoding genes has generated much interest since the discovery of functional single nucleotide polymorphisms (SNP) of MDRl gene. Besides drug transporters, xenobiotic receptors also modulate drug disposition by regulating the transcription of drug metabolizing enzymes and drug transporters. Among many xenobiotic receptors, pregnane X receptor (PXR) and constitutive androstane receptor (CAR) are two most well characterized since these receptors show wide substrate specificities and regulate the expression of various enzymes involved in drug disposition. Recently, several functional genetic polymorphisms were reported in PXR coding gene. In the present study, genetic polymorph isms of two drug transporters, MDR1 and BCRP, and two xenobiotic receptors, PXR and CAR, were investigated in Korean population.

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The Roles of Kupffer Cells in Hepatic Dysfunction Induced by Ischemia/Reperfusion in Rats

  • Jung Joo-Yeon;Lee Sun-Mee
    • Archives of Pharmacal Research
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    • v.28 no.12
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    • pp.1386-1391
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    • 2005
  • This study examined the role of Kupffer cells in altering the hepatic secretory and microsomal function during ischemia and reperfusion (ls/Rp). Rats were subjected to 60 min of hepatic ischemia, followed by 1 and 5 h of reperfusion. Gadolinium chloride ($GdCl_{3}$, 7.5 mg/kg body weight, intravenously) was used to inactivate the Kupffer cells 1 day prior to ischemia. Is/Rp markedly increased the serum aminotransferase level and the extent of lipid peroxidation. $GdCl_{3}$ significantly attenuated these increases. Is/Rp markedly decreased the bile. flow and cholate output, and $GdCl_{3}$ restored their secretion. The cytochrome P450 content was decreased by Is/Rp. However, these decreases were not prevented by $GdCl_{3}$. The aminopyrine N-demethylase activity was decreased by Is/Rp, while the aniline p-hydroxylase activity was increased. $GdCl_{3}$ prevented the increase in the aniline p-hydroxylase activity. Overall, Is/Rp diminishes the hepatic secretory and microsomal drug-metabolizing functions, and Kupffer cells are involved in this hepatobiliary dysfunction.

The Effects of Meliae toosendan Fructus on Liver Function. III. -Effects of Melianone and 28-Deacetyl Sendanin on Drug Metabolism and Bile Juice Secretion- (천련자(川煉子) 성분(成分)이 간기능(肝機能)에 미치는 영향(影響)에 관한 연구(硏究) III. -Melianone과 28-deacetyl sendanin의 약물 대사효소계 및 담즙분비에 미치는 영향-)

  • Kim, Bu-Saeng;Kim, Hye-Kyung;Choi, Jong-Won;Lee, Chung-Kyu
    • Korean Journal of Pharmacognosy
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    • v.27 no.1
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    • pp.47-52
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    • 1996
  • A triterpenoid(melianone) and a limonoid(28-deacetyl sendanin) were isolated from the chloroform fraction of Meliae toosendan Fructus, the rippen fruits of Melia toosendan SIEB. et ZUCC.(Meliaceae) and were applied to serial experiments to clarify the liver protective activities. We found that the compounds promoted slightly the drug metabolizing enzyme activities and decreased serum transaminase activities which was elevated by carbon tetrachloride intoxication. And also they slightly increased the secretion of bile juice in rat.

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The Effects of Meliae toosendan Fructus on Liver Function (I) -Effects of Each Fractions from Meliae toosendan Fructus on Drug Metabolism Enzyme System and Bile Secretion- (천련자 추출물이 간기능(肝機能)에 미치는 영향(影響)(I) -천련자의 분획이 약물대사효소계 및 담즙분비에 미치는 영향-)

  • Kim, Bu-Saeng;Choi, Jong-Won;Lee, Chung-Kyu
    • Korean Journal of Pharmacognosy
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    • v.24 no.1
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    • pp.63-68
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    • 1993
  • Meliae toosendan Fructus is the fruit of Melia toosendan $S_{IEB}$. et $Z_{UCC}$. (Meliaceae), which is written in oriental terminology as clearing heat and drying dampness, and also explained using liver, stomach and small intestine for channels entered. Among the five fractions prepared from methanol whole extractive of the herb, the chloroform fraction which suggests the presence of triterpenoid, flavonoid and alkaloid stimulated the activities of drug metabolizing enzymes and bile secretion and lowered the serum transaminase activities of liver damaged by carbon tetrachloride.

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Effect of Spices on hepatic microsomal enzyme function in mice

  • Han, Yong-Bong;Shin, Kuk-Hyun;Woo, Won-Sick
    • Archives of Pharmacal Research
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    • v.7 no.1
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    • pp.53-56
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    • 1984
  • The effect of twenty two spices on liver microsomal monooxygense activity was tested as measured by alteration of hexobarbital (HB) narcosis and strychnine mortality in mice. Oral administration of seven spices for 7 consecutive days caused a significant shortening of the duration of HB-induced sleeping time. The treatment of mice with a single i. p. injection of 9 spices resulted in a significant prolongation of the sleeping time. White pepper, dill and fennel reduced the toxicity of strychnine. These results strongly indicated that some spices might affect the activity of liver microsomal drug metabolizing enzyme (DME) function.

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THE EFFECTS OF ALTERING THE HEPATIC DRUG METABOLIZING ENZYME ACTIVITY ON THE ACUTE TOXICITY OF DIETHYL-4-NITROPHENYL PHOSPHOROTHIOATE (PARATHION) IN FEMALE RATS1.

  • Kim, Young-Chul;Park, Jae-Hwa;Lim, Hye-Kyung
    • Toxicological Research
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    • v.4 no.2
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    • pp.107-115
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    • 1988
  • The effects of altering the hepatic mixed-function oxidase(MFO) activities on the acute toxicity of parathion were examined in female rats. Phenobarbital sodium pretreatment (50mg/kg/day, i.p.) for 4 consecutive days has resulted in significant decreases in the toxicity of parathion (2 or 4 mg/kg, i.p.) as determined by lethality and cholinesterase activities wheras the toxicity arising from a single dose of CCl4(2 mmol/kg, i.p.) 24 hr prior to parathion challenge was potentiated.

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The Roles of Kupffer Cells in Hepatocellular Dysfunction after Femur Fracture Trauma in Rats

  • Lee, Woo-Yong;Lee, Sun-Mee
    • Archives of Pharmacal Research
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    • v.26 no.1
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    • pp.47-52
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    • 2003
  • The aim of this study was to investigate the effects of trauma on alterations in cytochrome P450 (CYP 450)-dependent drug metabolizing function and to determine the role of Kupffer cells in hepatocellular dysfunction. Rats underwent closed femur fracture (FFx) with associated soft-tissue injury under anesthesia, while control animals received only anesthesia. To deplete Kupffer cells in vivo, gadolinium chloride (GdCl$_3$) was injected intravenously via the tail vein at 7.5 mg/kg body wt., 1 and 2 days prior to FFx surgery. At 72 h after FFx, serum alanine aminotransferase (ALT) activity was increased, and this increase was attenuated by GdCl$_3$ pretreatment. Serum aspartate aminotransferase (AST) and lipid peroxidation levels were not changed by FFx. Hepatic microsomal CYP 450 content and aniline p-hydroxylase (CYP 2E1) activity were significantly decreased; decreases that were not prevented by GdC1$_3$. The level of CYP 2B1 activity was decreased by Kupffer cell inactivation, but not by FFx. There were no significant differences in the activities of CYP 1A1, CYP 1A2 and NADPH-CYP 450 reductase among any of the experimental groups. Our findings suggest that FFx trauma causes mild alterations of hepatic CYP 450-dependent drug metabolism, and that Kupffer cells are not essential for the initiation of such injury.

Biological Activities of Acidic Polysaccharide of Korean Red Ginseng.111.-Effects on Metabolizing Activities in Acetaminophen- treated Rats (홍삼 산성다당체의 생리활성 연구(111)-아세트아미노펜 처리 흰쥐의 대사기능에 미치는 영향)

  • 이정규;최종원
    • Journal of Ginseng Research
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    • v.22 no.4
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    • pp.267-273
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    • 1998
  • Pretreatment of acidic polysaccharide of Korean red ginseng (AcPS) for two weeks remarkably lowered the elevated content of lipid peroxide and levels of aminotransferases, sorbitol dehydrogenase, ${\gamma}$-glutamyltransferase, alkaline phosphatase and lactate dehydrogenase in liver intoxicated by acetaminophen (AA) . Pretreatments of AcPS also strengthen the liver function of glutathione related detoxication system indicated by glutathione contents and activities of glutathione S-transferase and glutathione reeducates which were affected by AA treatments. Activity of ${\gamma}$-glutamylcysteine syntheses was not changed by AcPS pretreatment whereas the activity of flu tathione reeducates was increased significantly. These results collectively indicate that the treatments of AcPS can promote the metabolism of lipid and reduce the production of peroxide in acetaminophen-intoxicated animals.

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