• Title/Summary/Keyword: P-450 inhibitor

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Inhibitory Effect of Licorice Ethanol Extracts and Glycyrrhizin on Cytochrome P450 Drug-Metabolizing Enzymes in Human Liver Microsomes (감초 물 추출물 및 Glycyrrhizin이 인체 간 Microsome에서 Cytochrome P450 약물대사효소에 미치는 영향)

  • Park Jong-Hoon;Park Ji-Young;Ju Young-Sung
    • Journal of Society of Preventive Korean Medicine
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    • v.7 no.2
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    • pp.65-74
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    • 2003
  • Objective : The aim of present study is to evaluate the inhibitory potential of licorice extract and glycyrrhizin on cytochrome P450(CYP) in human liver microsomes. Methods : Using human liver microsomes, water extract of licorice and glycyrrhizin as an inhibitor were co-incubated with each probe drug representing selective CYP isoform activity. We measured relative metabolic activity in incubation condition compared to that with no extract of licorice using HPLC system. Results : Both water extracts of licorice and glycyrrhizin showed inhibitory effect on CYP-catalyzed reactions. CYP2C19 $(IC_{50}=126.7{\mu}g/ml)$ is most potently inhibited by water extract than other tested CYP isoforms$(IC_{50}>450{\mu}g/ml)$, but glycyrrhizin exhibited potent inhibition on CYP1A2$(IC_{50}=106.9{\mu}g/ml)$ followed by CYP2C9 and CYP2D6. Conclusion: These results indicate that water extract of licorice and glycyrrhizin have inhibitory potential on CYP-catalyzed reaction in human liver microsomes. But the mechanism of inhibition was slightly different between them Water extract of licorice mainly inhibited CYP2C19, and glycyrrhizin primarily inhibited CYP1A2. The inhibition by water extract of licorice and glycyrrhizin on CYP isoforms may cause drug interaction with co-administered drug leading to toxicity or treatment failure.

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Breast Cancer Chemopreventive Activity of Polysaccharides from Starfish In Vitro

  • Nam Kyung-Soo;Kim Cheorl-Ho;Shon Yun-Hee
    • Journal of Microbiology and Biotechnology
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    • v.16 no.9
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    • pp.1405-1409
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    • 2006
  • Polysaccharides from the starfish Asterina pectinifera were assessed in vitro for their chemopreventive potential in human breast cancer. The polysaccharides from A. pectinifera inhibited cell proliferation in the estrogen receptor-positive (MCF-7) and estrogen receptor-negative (MDA-MB-231) human breast carcinoma cell lines. In addition, the polysaccharides were found to be an inhibitor of cytochrome P450 1A1-mediated ethoxyresorufin O-deethylase activity, and caused a dose-dependent inhibition of aromatase activity in microsomes isolated from a human placenta. There was a significant reduction in the ornithine decarboxylase activity to 30.7% of the control in the polysaccharide-treated MCF-7 breast cancer cells. Therefore, the polysaccharides from A. pectinifera merit further investigation with respect to breast cancer chemoprevention.

Heterogeneous Natures of the Microbial Steroid $9{\alpha}$-Hydroxylase in Nocardioforms

  • Kang, Hee-Kyoung;Lee, Sang-Sup
    • Archives of Pharmacal Research
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    • v.20 no.6
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    • pp.519-524
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    • 1997
  • Steroid $9{\alpha}$-hydroxylase is an enzyme found in nocardioform microorganisms which can utilize steroids as a sole carbon source. After fractional centrifugation of the cell homogenates, the enzyme activity in Nocardia and Rhodococcus was found in cytoplasmic membrane fraction. On the contrary, Mycobacterium had its 9.alpha.-hydroxylation activity in cytosolic fraction. To characterize the enzyme in these microorganisms, several potential inhibitors of 9.alpha.-hydroxylase were tested and the cofactor requirement for the same enzyme was also examined. The inhibitory effect of ferrous ion chelators indicated involvement of iron containing proteins in the 9.alpha.-hydroxylase system. On the other hand, metyrapone, an inhibitor known to be specific for cytochrome P450 interfered with the enzyme in Mycobacterium, but didn't inhibit the enzyme activity in Nocardia and Rhodococcus. While the $9{\alpha}$-hydroxylase system in Nocardia and Rhodococcus required NADPH, NADH was required as an election donor in Mycobacterium.

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Cytochrome P-450 3A4 proximal promoter activity by histone deacetylase inhibitor in HepG2 cell.

  • Kim, Ja-Young;Ahn, Mee-Ryung;Sheen, Yhun-Yhong
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.120.2-120.2
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    • 2003
  • Cytochrome P-450 3A4 (CYP3A4) is major enzyme in human liver, the role of this is detoxification and metabolizing more than 50% clinical drugs in use. Expression of CYP3A4 is transciptionally regulated by the Pregnenolone X receptor (PXR), of which human form is Steroid and Xenobiotics receptor (SXR). SXR is activated by wide range of endogenous and exogenous compounds, and then induces CYP3A4 gene expression. In the previous study, it has been known that proximal promoter (-864 to +64) does not response to chemical inducers such as pregnenolone 16a-carbonitrile (PCN), Rifampicin, Estrogen in terms of transcription of CYP 3A4 in cultured cells. (omitted)

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Comparison of CYP 3A4 metabolism between DA-8159 and Sildenafil in vitro and in vivo

  • Park, Kyung-Jin;Youn, Hae-Sun;Shim, Hyun-Joo;Kim, Soon-Hoe;Yoo, Moo-Hi;Kim, Won-Bae
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.253.1-253.1
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    • 2002
  • DA-8159 is a new PDEV inhibitor, synthesized by Dong-A Pharm, as an oral agent to treat male erectile dysfunction. DA-8159 and sildenafil are mainly metabolized by cytochrome P450 enzyme CYP 3A4. In this study. we compared the metabolism of DA-8159 with sildenafil in vitro and in vivo. First, we quantified the remaining gatio of original compound, DA-8159 and sidenafil., after we incubated drugs for 30 minutes with human liver microsome cytochrome P 450 3A4. (omitted)

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Toxic action of N-dimethylphosphinothioyl carbofuran by oxidative activation process (산화적 활성화 과정을 통한 N-dimethoxyphosphinothioyl carbofuran의 독성발현)

  • Yang, Kyew-Wan;Lee, Seog-Jong;Kim, Song-Mun;Han, Dae-Sung;Hur, Jang-Hyun
    • The Korean Journal of Pesticide Science
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    • v.2 no.2
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    • pp.10-15
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    • 1998
  • The bimolecular inhibition rate constants of carbofuran and N-dimethylphosphinothioyl carbofuran(PSC) to acetylcholinesterase(AChE) were $7.7{\times}10^{5}\;M^{-1}{\cdot}min^{-1}$ and $1.2{\times}10^{3}\;M^{-1}{\cdot}min^{-1}$, respectively. These results showed that PSC required a bioactivation process for its toxic action because it didn't inhibit the target enzyme effectively. The potency of PSC as an inhibitor of AChE increased when PSC and AChE were incubated with microsomes fortified with NADPH compared with microsome alone. Piperonyl butoxide(PBO) addition to these coupled systems greatly reduced the inhibition of the target enzyme by blocking the bioactivation process. In vivo inhibition study of mouse brain AChE, $I_{50}$ value for AChE was 28 mg/kg for PSC and the value increased to 57 mg/kg when PBO was pretreated. This result showed that cytochrome $P_{450}$ would also play a role in the bioactivation process of PSC in vivo. And conversioin of carbofuran from PSC was 55 % in a chemical oxidation system using meta-chloroperoxybenzoic acid. The oxidative activation of PSC to carbofuran was shown to be essential for showing its toxicological action and cytochrome $P_{450}$ was identified as an important enzyme which participated in this process.

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Influence of Five Herbal Medicines on Cytochrome P450 3A4 Drug-Metabolizing Enzymes in Human Liver Microsomes (수종 지혈 한약물이 Cytochrome P450 3A4 활성에 미치는 영향)

  • Hwang, Jin-Woo;Go, Jae-Eon;Go, Ho-Yeon;Choi, You-Kyung;Park, Jong-Hyung;Jun, Chan-Yong
    • The Journal of Internal Korean Medicine
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    • v.29 no.4
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    • pp.846-855
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    • 2008
  • Objects : The aim of this study was to investigate the influence of five herbal medicines on cytochrome P450 3A4 drug-metabolizing enzymes in human liver microsomes. Methods : To use human liver microsomes, an extract of five herbal medicines, which are Artemisia princeps Pampan, Sophora jeponica Linne, Panax notoginseng F. H. Chen, Lithospermum Erythrorhizon Sieb., and Cirsium maackii Maxim, which together are called Jihyulyak(止血藥, drugs for arresting bleeding, hemostatics), was co-incubated and measured for relative enzyme activity in incubation condition compared to ketoconazole, a representative inhibitor of CYP 3A4. Results : We showed that all five of the traditional herbal medicines had no inhibition effect of CYP 3A4 at 10, 20, 30, 40, and $50{\mu}g/ml$ doses in human liver microsomes, although Sophora japonica Linne(SJL) showed a little inhibition at about 81% inhibition rate of control. However, this result is not enough to prove that SJL has a CYP 3A4 inhibition effect. Moreover, we can't make sure that those rates had significant induction effect on CYP 3A4. Conclusions : The result of this study could support that those herbal medicines are safer than chemical drugs, even if this is the basic step to prove that result.

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Influence of Five Herbal Medicines on Cytochrome P450 3A4 Drug-Metabolizing Enzyme Activity (활혈거어약의 Cytochrome P450 3A4 효소활성에 미치는 영향)

  • Go, Jae-Eon;Hwang, Jin-Woo;Go, Ho-Yeon;Choi, You-Kyung;Park, Jong-Hyung;Ko, Seong-Gyu;Jun, Chan-Yong
    • The Journal of Korean Medicine
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    • v.29 no.4
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    • pp.104-113
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    • 2008
  • Objectives: The aim of this study was to investigate the influence of five herbal medicines on cytochrome P450 (CYP) 3A4 drug-metabolizing enzymes in human liver microsomes. Methods: By using of human liver microsomes, we extracted Cnidium officinale Makino, Rhus verniciflua Stokes, Prunus persica Batsch, Corydalis remota Fisch, Carthamus tinctorius Linne, which are called Hwalhyulgeoouhyak(活血祛瘀藥). Then they were incubated and measured for relative enzyme activity under incubation conditions compared to ketoconazole, which is known as a representative inhibitor of CYP 3A4. Results: We showed that all of five traditional herbal medicines had no inhibition effect of CYP 3A4 at 10, 20, 30, 40, and 50${\mu}g/m{\ell}$ doses in human liver microsomes, although Rhus verniciflua Stokes (RVS) showed a little inhibition as about 95% enzyme activity of control. However, this result was not enough to prove that RVS has a CYP 3A4 inhibition effect. Moreover, we can't confirm that those rates have significant induction effect on CYP 3A4. Conclusions: The result of this study could support that those herbal medicines are more reliable than chemical drugs, even if this is a basic step to prove that result.

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Effects of 6-Shogaol, A Major Component of Zingiber officinale Roscoe, on Human Cytochrome P450 Enzymes in vitro (생강의 주성분인 6-Shogaol이 인체 약물대사효소인 Cytochrome P450에 미치는 영향)

  • Kim, Jin
    • Korean Journal of Medicinal Crop Science
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    • v.24 no.1
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    • pp.7-13
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    • 2016
  • Background : Ginger has been extensively used in foods and traditional medicines in Asian countries. Despite its frequent consumption in daily life, the mechanism of potential interactions between ginger components-drug has not been examined. To elucidate the mechanism of governing the effects of 6-shogaol, a primary constituent of dried ginger, on human cytochrome P450 (CYP) isoenzymes an incubation studies were carried out using pooled human liver microsome (HLM). Methods and Results : CYP isoenzyme specific substrate was incubated with multiple concentrations of inhibitor, HLM and cofactors. 6-shogaol showed a potent inhibitory effect on CYP2C9, CYP1A2 and CYP2C19 with half maximal inhibitory concentration ($IC_{50}$) values of 29.20, 20.68 and $18.78{\mu}M$ respectively. To estimate the value of the inhibition constant ($K_i$) and the mode of inhibition, an incubation study with varying concentrations of each CYP isoenzyme-specific probe was performed. 6-shogaol inhibited CYP2C9 and CYP2C19 noncompetitively ($K_i=29.02$ and $19.26{\mu}M$ respectively), in contrast, the inhibition of CYP1A2 was best explained by competitive inhibition ($K_i=6.33{\mu}M$). Conclusions : These findings suggest that 6-shogaol may possess inhibitory effects on metabolic activities mediated by CYP1A2, CYP2C9 and CYP2C19 in humans.

The Effect of Dehydronifedipine on the Oxidation of Aflatoxin $B_1$ by Cytochrome P450 3A4 (Cytochrome P450 3A4에 의한 Aflatoxin $B_1$의 산화에 대한 Dehydronifedipine의 영향)

  • 김복량;권강범;김동현
    • Toxicological Research
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    • v.15 no.1
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    • pp.95-101
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    • 1999
  • Cytochrome P450 (CYP) 3A4 metabolizes aflatoxin B1 (AFB1) to AFB1-exo-8,9-epoxide (8,9-epoxidation) and aflatoxin Q1 (AFQ1; 3$\alpha$-hydroxylation) simultaneously. We investigated whether each metabolite was formed via its own binding site of CAP3A4 active site. Kinetics of the formation of the two metabolites were sigmoidal and consistent with the kinetics of substrate activation. The HIll model predicted that two substrate binding wites are involved in the oxidationof AFB1 by CYP3A4. Dehydronifedipine, a metabolite of nifedipine generated by CYP3A4, inhibited the formation of AFQ1 without any inhibition in the formation of AFB1-exo-8,9-epoxidation. Dehydronifedipine was found to act as a reversible competitive inhibitor against 3$\alpha$-hydroxylation of AFB1. Vmax and S0.5 of the 8,9-epoxidation were not changed in the presence of 0, 50, or 100 $\mu\textrm{M}$ dehydronifedipine. S0.5 of 3$\alpha$-hydroxylation was increased from 58$\pm$4 $\mu\textrm{M}$ to 111$\pm$8 $\mu\textrm{M}$ in the presence of 100 $\mu\textrm{M}$ nifedipine whereas Vmax was not changed. These results suggest that there exist two independent binding sites in the active site of CAP3A4 . One binding site is responsible for AFB1-exo-8,9-epoxidation and the other is involved in 3$\alpha$-hydroxylation of AFB1. Dehydronifedipine might selectively bind to the site which is responsible for the formation of AFQ1 in the active site of CYP3A4.

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