• 제목/요약/키워드: liver microsomes

검색결과 180건 처리시간 0.025초

활성산소종에 의한 알데히드 탈수소 효소의 불활성화 (Inhibition of Aldehyde Dehydrogenase by the Active Oxygen Species)

  • 문전옥;김태완;백기주;김기헌
    • 약학회지
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    • 제37권6호
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    • pp.647-658
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    • 1993
  • The susceptibilities of aldehyde dehydrogenase (AldDH) and alcohol dehydrogenase (ADH) to active oxygen generated by xanthine-xanthine oxidase (XOD) system were studied. Incubation of AldDH with 2$\times$10$^{-3}$ units of XOD for 30 min at $25^{\circ}C$ resulted in the decrease of enzyme activity to 30% and it was inactivated completely when incubated with 5$\times$10$^{-3}$ units of XOD. Whereas 70% of ADH activity was retained after exposure to 5$\times$10$^{-3}$ units of XOD for 30 min, 40% of ADH activity was retained after exposure to 5$\times$10$^{-2}$ unit of XOD for 30 min. This inhibition effect by the active oxygen was preventable by catalase and glutathione, but not by SOD. The rates of the NADPH-dependent oxygen consumption by the liver S-9 mixture and microsomes were also determined in this study. Rate of oxygen consumption is increased in the liver S-9 mix and microsomes from phenobarbital-treated rat, and it was consistent with increased lipid peroxidation. In the presense of ethanol as a substrate, the oxygen consumption rates were increased. It is reported that hepatic AldDH activity is depressed in alcoholic liver diseases, however there is few report that explains the reason of depressed AldDH activity. These results are supportive of the theory that the increase in hepatic ethanol oxidation through the induced ME activity after chronic ethanol feeding generate oxygen radical at elevated rates and it leads to the depression of AldDH activity.

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PHENOTYPING OF PHENYTOIN TREATED RAT LIVER CYTOCHROME P-450 WITH MONOCLONAL ANTIBODIES

  • Jin, Hak-Song;Won, Sun-Me;Park, Sang-Shin;Kim, Nak-Doo
    • Toxicological Research
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    • 제7권1호
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    • pp.1-12
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    • 1991
  • The phenotyping of cytochrome P-450 in hepatic mivrosomes induced by phenytoin in the rats was carried out by using several monoclonal antibodies (MAbs) against specific P-450 isozymes. Phenytoin (180 mg/kg) was administered intrapritoneally for three consecutive days to the male Sprague-Dawley rats(100-120g). Solid phase radio-immunoassay showed higher binding affinity of MAb PB 2-66-3 and PCN 2-13-1 to the microsomes from phenytoin treated rats than those to from untreated rats, which was comparable to the level in phenobarbital induced rat hepatic microsomes.

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흰쥐 간조직의 활성산소 및 제거효소에 미치는 목초액의 영향 (Effect of Pyroligneous Liquor on Oxygen Radicals and Their Scavenger Enzymes in Liver of CD Rats)

  • 최진호;조원기
    • Journal of Nutrition and Health
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    • 제40권2호
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    • pp.111-117
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    • 2007
  • 시판 목초액 A (원액 35%)을 사용하여 음용수에 0%, 1.0%, 25.0%, 50.0%, 75.0%가 되도록 조제한 다음, CD계 수컷 흰쥐 (150 ${\pm}$ 10 g)에 2개월 동안 조제사료와 함께 자유 음용케 하여 간조직 중의 활성산소로서 수퍼옥시드 라디칼(O$_{2}\;^-$), 히디록시 라디칼, 과산화수소 및 제거효소로서 수퍼옥시드 디스무타아제 (SOD), 글루타치온 퍼옥시다아제 (GPx) 및 카탈라아제 (CAT)에 미치는 영향을 평가하였다. 목초액 PL-25 및 PL-50 투여군의 간조직의 미토콘드리아 획분에서는 O$_{2}\;^-$의 생성량은 대조군 대비 12${\sim}$14%의 O$_{2}\;^-$의 생성량 억제효과가 나타났고, 간조직의 마이크로솜획분에서는 대조군 대비 각각 11.0${\sim}$15.0의 O$_{2}\;^-$의 생성량 억제효과가 나타났다. 간조직 미토콘드리아획분에서 ${\cdot}$OH 생성량이 목초액 PL-25 및 PL-50 투여군에서 대조군 대비 12${\sim}$20%의 ${\cdot}$OH 생성 억제효과가 나타났고, 간조직의 마이크로솜획분에서는 대조군 대비 17${\sim}$20%의 ${\cdot}$OH 생성 억제효과가 나타났다. 목초액 PL-25 및 PL-50 투여군의 간조직의 미토콘드리아획분에서는 대조군 대비 12${\sim}$15%의 유의적인 H$_{2}$O$_{2}$의 생성 억제효과가 나타났고, 간조직의 마이크로솜획분에서는 대조군 대비 20${\sim}$22%의 상당히 유의적인 H$_{2}$O$_{2}$의 생성 억제효과가 나타났다. 목초액 PL-25 및 PL-50 투여군의 간조직의 Mn-SOD 활성은 대조군 대비 15${\sim}$25%나 유의적인 활성 증가효과가 인정되었고, 간조직의 Cu/Zn-SOD 활성은 대조군 대비 11${\sim}$16%의 유의적인 SOD활성 증가효과가 인정되었다. 목초액 PL-25 및 PL-50 투여군의 간조직의 미토콘드리아획분의 GPx 활성은 대조군 대비 10${\sim}$17%의 GPx 활성 증가효과가 인정되었고, 간조직의 마이크로솜획분의 GPx 활성 증가효과가 인정되었다. 목초액 PL-25 및 PL-50 투여군의 간조직의 미트콘드리아획분의 CAT 활성은 대조군 대비 12${\sim}$14%의 유의적인 CAT 활성 증가효과가 나타났고, 간조직의 시토졸 1획분에서는 대조군 대비 15${\sim}$27%의 CAT 활성 증가효과가 인정되었다. 이상의 결과에서 목초액의 장기간 투여는 간조직 중의 활성산소의 억제효과뿐만 아니라 방어시스템으로서 활성산소 제거효소의 역할도 충실히 수행하여 노화를 효과적으로 예방하고 억제할 수 있을 것으로 기대된다.

만성 알콜 섭취로 인한 간내 알데히드 탈수소 효소 활성의 변동 (Alteration of the Aldehyde Dehydrogenase Activity by the Chronic Ethanol Administration)

  • 문전옥;양정화
    • 약학회지
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    • 제40권5호
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    • pp.563-573
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    • 1996
  • The system most likely responsible for the accelerated metabolism of alcohol with chronic ingestion or at high blood ethanol levels, is the microsomal ethanol-oxidizing system(M EOS). While the increase in the MEOS with chronic ethanol ingestion is thought to be adaptive, it may also have serious adverse effects on the liver. The rates of the NADPH-dependent oxygen consumption by the liver microsomes from the prolonged ethanol fed rats were 2 times higher than the rates from the non-treated rats. With the alcohol ingestion, the total SH and nonprotein SH contents showed the significant decrease and at the same time, MDA in liver and GOT and GPT levels in blood showed the significant increase, which suggests the occurrence of liver damage due to the oxidative stress caused by chronic alcohol consumption. The mitochondrial aldehyde dehydrogenase(ALDH) activity was decreased by chronic ethanol ingestion, whereas the alcohol dehydrogenase activity and the cytosolic ALDH activity were not altered. These results suggest that the induction of cytochrome P450 by the chronic alcohol ingestion increases the oxidative stress which seems to result in the altered the physiological states of the liver including the ALDH activity, which may in turn to lead to the liver disease.

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인체 간 Microsome에서 우슬 추출물의 Cytochrome P450 약물 대사효소에 대한 억제작용 (The Inhibitory Effect of Achyranthes bidentata radix Extracts on Cytochrome P450-Catalyzed Reactions in Human Liver Microsomes)

  • 김경아;이지숙;박히준;김진우;김창주;심인섭;한승무;임사비나
    • 대한한의학회지
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    • 제24권2호
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    • pp.40-46
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    • 2003
  • Objectives : Achyranthes bidentata radix (Usul) has been used as anti-arthritic, antiallergic, antidiuretic, and so on. Recently extracts of Achyranthes bidentata radix have shown anti-inflammatory and cancer preventive effects in vitro and in vivo. Methods : We therefore evaluated the inhibitory potential of ethanol extracts of Achyranthes bidentata radix on cytochrome P450 (CYP) isoforms-catalyzed reactions, which relate to causes of cancer and inflammation, including CYP1A2, CYP2C9, CYP2C19, CYP2E1, CYP2D6, CYP2C8, and CYP3A4, using human liver microsomal preparations. Results : The extracts showed weak or negligible inhibitory effects on CYP2C9-catalyzed (S)-warfarin 7-hydroxylation, CYP2C19-catalyzed S-mephenytoin 4-hydroxylation, and CYP2D6-catalyzed dextromethorphan O-demethylation with each IC50 over 1750 g/ml, respectively. However, it showed relatively significant inhibitory effect on CYP1A2-catalyzed phenacetin O-deethylation and CYP2E1-catalyzed chlorzoxazone 6-hydroxylation with IC50s of 970.5 g/ml and 821.4 g/ml, respectively. Conclusions : These results suggest that extracts of Achyranthes bidentata radix have inhibitory effects on CYP-catalyzed reactions, especiallyCYP1A2 and CYP2E1, in human liver microsomes. These effects appear to relate to anti-inflammatory and cancer prevention following decrease of reactive oxygen species formed by CYP, especially CYP1A2 and CYP2E1, by Achyranthes bidentata radix. However, further evaluation is necessary to demonstrate and to confirm its effects in human.

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Riboflavin Tetrabutylate가 약물대사 효소 및 지질 과산화효소에 미치는 영향 (Effect of Riboflavin Tetrabutylate on the Activity of Drug Metabolizing Enzyme and Lipid Peroxidation in Liver Microsomes of Rats)

  • 이향우;김원준;홍사석;곽창열;홍사오
    • 대한약리학회지
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    • 제16권2호
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    • pp.45-53
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    • 1980
  • Lipid peroxidation in vitro has been identified as a basic deteriorative reaction in cellular mechanism of aging processes, such as air pollution oxidant damage to cell and to the lung, chlorinated hydrocarbon hepatotoxicity. Many experimental evidences were reported by several investigators that lipid peroxidation could be one of the principle causes for the hepatotoxicity produced by $CCl_4$. It is now reasonably established that $CCl_4$ is activated to a free radical in vivo, that lipid peroxidation occurs very quickly in microsomes prepared from damaged livers, that the peroxidation is associated with loss of enzyme activity of microsomes, and that various antioxidants can protect animals against the hepatotoxic effect of $CCl_4$. Recent studies have drawn attention to some other feature of microsomal lipid peroxidation. Incubation of liver microsomes in the presence of NADPH has led to a loss of cytochrome $P_{450}$. However, the presence of an antioxidant prevented lipid peroxidation and preserved cytochrome $P_{450}$. Decrease of cytochrome $P_{450}$ in microsomes under in vitro incubation can be enhanced by $CCl_4 and these changes were parallel to a loss of microsomal polyunsaturated fatty acid and formation of malonaldehyde. The primary purpose of this experiment was to study the effect of riboflavin tetrabutylate on lipid peroxidation, specially, the relationship between lipid peroxidation and drug metabolizing enzyme system which is located in smooth endoplasmic recticulum as well as the effect of ritoflavin tetrabutylate on drug metabolizing enzyme system of animal treated with $CCl_4$. Albino rats were used for experimental animal. In order to induce drug metabolizing enzyme system, phenobarbital was injected intraperitoneally. $CCl_$ and riboflavin tetrabutylate were given intraperitoneally as solution in olive oil. Microsomal fraction was isolated from liver of animals and TBA value as well as the activity of drug metabolizing enzyme were measured in the microsomal fractions. The results are summerized as following. 1) The secobarbital induced sleeping time of $CCl_4$ treated rat was about 2 times longer than that of the control group. However, the pretreatment with riboflavin tetrabutylate inhibited completely the lengthened sleeping time due to $CCl_4$ treatment. Furthermore TBA value was significantly increased in $CCl_4$ treated rat in comparison to control group tut the increase of TBA value was prevented by the pretreatment with riboflavin tetrabutylate. On the other hand, the activity of hepatic drug metabolizing enzyme was decreased in $CCl_4$ group, however, the pretreatment with riboflavin tetrabutylate also prevented the decrease of the enzyme activity caused by $CCl_4$. 2) The effect of riboflavin tetrabutylate on TBA value and the activity of drug metabolizing enzyme in vitro was similar to in vivo results. Incubation of liver microsome from rat in the presence of $CCl_4$, $Fe^{++}$, or ascorbic acid has led to the marked increase of TBA value, however, the addition of riboflavin tetrabutylate in incubation mixture prevented significantly the increase of TBA value, suggesting the inhibition of lipid peroxidation. In accordance with TBA value, the activity of drug metabolizing enzyme was inhibited in the presence of $CCl_4$, $Fe^{++}$, ascorbic acid but the addition of riboflavin tetrabutylate protected the loss of the enzyme activity in microsome under in vitro incubation.

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방아 추출물의 항산화 효과 (Antioxidative Activity of Extract from Bangah Herb)

  • 지옥화;양차범
    • 한국식품과학회지
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    • 제28권6호
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    • pp.1157-1163
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    • 1996
  • 방아의 ether추출물을 중성, 페놀성, 산성 및 염기성 획분으로 분획한 다음 그들의 항산화 활성을 수소 공여능, 과산화물가, TBA가 및 흰쥐 간 microsome을 이용한 비효소적 지질 과산화 억제 활성 등으로 측정하고, 항산화 활성이 비교적 높게 나타나는 페놀성 획분과 중성 획분을 다시 소획분으로 분획한 다음 그중에서 항산화 활성이 강한 소획분성분을 GC/MS 및 NMR로 분석, 동정하였다. 페놀성 획분은 DPPH에 의한 수소 공여능, POV, TBA가 및 흰쥐 간 microsome의 지질 과산화 억제 활성 등 모두에서 높게 나타났으며, 중성 획분은 흰쥐 간 microsome의 지질 과산화 억제 활성에서 높게 나타났다. 페놀성 획분을 소획분으로 분획하였을 때 소획분 P-1, P-2 및 P-3에서 항산화 활성이 강하였으며, 특히 P-2는 합성 항산화제인 BHT나 천연 항산화물질로 알려져 있는 caffeic acid보다도 강하였다. 소획분 P-2를 TMS 유도체로 만들어 GC로 분석하였을 때 major peak 성분인 Peak I, II, III 및 IV 모두 TMS m/z 73를 base peak로 가지고 있어 4개의 peak 모두 -OH, -COOH기를 가지고 있는 것으로 확인할 수 있었다. 중성 획분의 소획분 중에는 N-2에서 강한 활성을 나타내었고 소획분 N-2의 주성분을GC/MS 및 NMR로 분석 한 결과 estragole로 확인되었다. Estragole의 흰쥐 간 microsome의 지질 과산화 50% 억제 농도는 $20{\sim}50\;{\mu}g/ml$로서 BHT보다는 약하였으니 caffeic acid, gallic acid와는 비슷한 수준의 항산화 활성을 나타내었다.

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비타민 E 수준을 달리한 어유 또는 대두유를 먹인 흰쥐 조직의 지질과산화와 비타임 E 및 A 상태 (Lipid Peroxidation and Vitamins E and A Levels in Tissues of Rats Fed Fish Oil or Soybean Oil Supplemented with Vitamin E)

  • Choi Yong-Sun
    • Journal of Nutrition and Health
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    • 제28권10호
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    • pp.967-975
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    • 1995
  • To investigate effects of dietary fish oil and vitamin E level on the tissue levels of vitamin E and vitamin A and to see which tissue is sensitive to lipid peroxidizability, male Sprague-Dawley rats were fed experimental diets composed of either menhaden oil or soybean oil nad either low(equivalent to 17 mg $\alpha$-tocopherol) or high (equivalent to 140mg $\alpha$-tocopherol) vitamin E level for 4 weeks. Palsma TBARS per mg lipid was significantly elevated in rats fed fish oil with low vitamin E level compared to soybean oil-fed rats. TBARS levels of liver, heart, kidney and liver microsomes were also increased by feeding fish oil with low vitamin E level. Plasma TBARS level was significantly correlated with TBARS levels of liver, heart, kidney and liver microsome. Plasma vitamin E level of groups with vitamin E supplementation was elevated significantly as compared to the those without vitamin E supplementation, whereas vitamin E levels of liver, heart and kidney were not changed significantly. Plasma TBARS was negatively correlated with plasma vitamin E(r=0.5763, P<0.001) and A(r=-0.4523, P<0.01) and seems to be a good indicator of in vivo lipid peroxidative stress.

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Effects of brazilin and haematoxylin on the lipidperoxidation in the rat liver mitochondria

  • Moon, Chang-Kiu;Ha, Bae-Jin;Lee, Chong-Chul
    • Archives of Pharmacal Research
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    • 제7권1호
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    • pp.63-64
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    • 1984
  • This major sites of liquidperoxidation-damage within the cell are at biomembrances, especially those of subcellular organells such as mitochondria and microsomes whose membranes contain relatively large amount of polyunsaturated fatty acids. Mitochondria are the power plants of eukaryotic cells. Hence their damage by liquid peroxidation can profoundly affect cellular function.

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