• 제목/요약/키워드: Cytochrome P450

검색결과 936건 처리시간 0.036초

Human Liver Microsome을 이용한 수종 이기약의 간대사효소에 미치는 영향 (The Effect to the Hepatic Metabolic Enzume that Uses Human Liver Microsome Caused by a Bariety of Yigiyak)

  • 김현호;신용철;고성규
    • 대한예방한의학회지
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    • 제12권2호
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    • pp.37-49
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    • 2008
  • In this study, we experimented the influence of three herbal medicines, which are Saussurea lappa Clarke, Poncirus trifoliata Rafin, Citrus aurantium Linne, which are called 'Yigiyak(理氣藥)' on drug metabolizing enzyme cytochrome P450 3A4 in Human Liver Microsome. Above all, the reason for this study is that herbal medicines can be assumed that herbs might have interactions with drugs, other herbs, alcohol and chemicals whether those are much better synergy effects than expected effects when the medicine was treated alone or not. As a result, we showed that all of five traditional herbal medicines had no CYP 3A4 inhibition effect on 10, 20, 30, 40, $50{\mu}g/m{\ell}$ doses in Human Liver Microsome even Saussurea lappa Clarke showed a little inhibition as about 93% and 79% inhibition rate of control. However, this result are mostly not enough to prove that SLC has a CYP 3A4 inhibition effect. Moreover, it is not that those rates showed that those herbal medicines have CYP 3A4 induction effect. In conclusion, the result could support that those herbal medicines are more safe than chemical drugs even if this is the basic step to prove that result. Therefore, more specific studies to support this result, which are Kinetic study, cell and animal study then finally until clinical research, are required.

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나린진(Naringin)의 $CCl_4$에 의한 급성 간독성 보호효과 (Protective Effect Naringin on Carbon Tetrachloride Induced Hepatic Injury in Mice)

  • 채수철;고은경;최승현;유근창
    • Environmental Analysis Health and Toxicology
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    • 제23권4호
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    • pp.325-335
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    • 2008
  • The protective effects of the Naringin, on carbon tetrachloride ($CCl_4$)-induced hepatotoxicity and the possible mechanisms involved in this protection were investigated in mice. Pretreatment with Naringin prior to the administration of $CCl_4$ significantly prevented an increase in serum alanine, aspartate aminotransferase activity and hepatic lipid peroxidation in a dose-dependent manner. In addition, pretreatment with Naringin also significantly prevented the depletion of glutathione (GSH) content in the livers of $CCl_4$-induced mice. However, reduced hepatic glutathione levels was unaffected by treatment with Naringin alone. In addition, Naringin prevented $CCl_4$-induced apoptosis and necrosis, as indicated by a liver DNA laddering. To determine whether caspase-8,-3 pathway involved in $CCl_4$-induced acute liver injury, caspase-8, -3 activities were tested by ELISA. Naringin attenuated $CCl_4$induced caspase-8, -3 activities in mouse livers. $CCl_4$-induced hepatotoxicity was also prevented, as indicated by a liver histopathologic study. The effects of Naringin on the cytochrome P450 (CYP) 2E1, the major isozyme involved in $CCl_4$ were also investigated. Treatment of mice with Naringin resulted in a significant decrease of the CYP2E1-dependent hydroxyl at ion and aniline in a dose-dependent manner. These findings suggest that protective effects of Naringin against the $CCl_4$-induced hepatotoxicity may be due to its ability to block CYP2E1-mediated $CCl_4$ bioactivation and that is also protects against caspase-8, -3 pathway mediated apoptosis.

Suppression of Rice Stripe Virus Replication in Laodelphax striatellus Using Vector Insect-Derived Double-Stranded RNAs

  • Fang, Ying;Choi, Jae Young;Park, Dong Hwan;Park, Min Gu;Kim, Jun Young;Wang, Minghui;Kim, Hyun Ji;Kim, Woo Jin;Je, Yeon Ho
    • The Plant Pathology Journal
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    • 제36권3호
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    • pp.280-288
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    • 2020
  • RNA interference (RNAi) has attracted attention as a promising approach to control plant viruses in their insect vectors. In the present study, to suppress replication of the rice stripe virus (RSV) in its vector, Laodelphax striatellus, using RNAi, dsRNAs against L. striatellus genes that are strongly upregulated upon RSV infection were delivered through a rice leaf-mediated method. RNAi-based silencing of peroxiredoxin, cathepsin B, and cytochrome P450 resulted in significant down regulation of the NS3 gene of RSV, achieving a transcriptional reduction greater than 73.6% at a concentration of 100 ng/μl and, possibly compromising viral replication. L. striatellus genes might play crucial roles in the transmission of RSV; transcriptional silencing of these genes could suppress viral replication in L. striatellus. These results suggest effective RNAi-based approaches for controlling RSV and provide insight into RSV-L. striatellus interactions.

DC23, a Triazolothione Resorcinol Analogue, Is Extensively Metabolized to Glucuronide Conjugates in Human Liver Microsomes

  • Shon, Jong Cheol;Joo, Jeongmin;Lee, Taeho;Kim, Nam Doo;Liu, Kwang-Hyeon
    • Mass Spectrometry Letters
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    • 제9권1호
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    • pp.24-29
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    • 2018
  • DC23, a triazolothione resorcinol analogue, is known to inhibit heat shock protein 90 and pyruvate dehydrogenase kinase which are up-regulated in cancer and diabetes, respectively. This study was performed to elucidate the metabolism of DC23 in human liver microsomes (HLMs). HLMs incubated with DC23 in the presence of uridine 5'-diphosphoglucuronic acid (UDPGA) and/or ${\beta}$-nicotinamide adenine dinucleotide phosphate (NADPH) resulted in the formation of four metabolites, M1-M4. M1 was identified as DC23-N-Oxide, on the basis of LC-MS/MS analysis. DC23 was further metabolized to its glucuronide conjugates (M2, M3, and M4). In vitro metabolic stability studies conducted with DC23 in HLMs revealed significant glucuronide conjugation with a $t_{1/2}$ value of 1.3 min. The inhibitory potency of DC23 on five human cytochrome P450s was also investigated in HLMs. In these experiments, DC23 inhibited CYP2C9-mediated tolbutamide hydroxylase activity with an $IC_{50}$ value of $8.7{\mu}M$, which could have implications for drug interactions.

소금민감성유전자와 비만 (Salt-sensitive genes and their relation to obesity)

  • 전용필;이명숙
    • Journal of Nutrition and Health
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    • 제50권3호
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    • pp.217-224
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    • 2017
  • Purpose: Although it is well known thatmortality and morbidity due to cardiovascular diseases are higher in salt-sensitive subjects than in salt-resistant subjects, their underlying mechanisms related to obesity remain unclear. Here, we focused on salt-sensitive gene variants unrelated to monogenic obesity that interacted with sodium intake in humans. Methods: This review was written based on the modified $3^rd$ step of Khans' systematic review. Instead of the literature, subject genes were based on candidate genes screened from our preliminary Genome-Wide Association Study (GWAS). Finally, literature related to five genes strongly associated with salt sensitivity were analyzed to elucidate the mechanism of obesity. Results: Salt sensitivity is a measure of how blood pressure responds to salt intake, and people are either salt-sensitive or salt-resistant. Otherwise, dietary sodium restriction may not be beneficial for everyone since salt sensitivity may be associated with inherited susceptibility. According to our previous GWAS studies, 10 candidate genes and 11 single nucleotide polymorphisms (SNPs) associated with salt sensitivity were suggested, including angiotensin converting enzyme (ACE), ${\alpha}$-adducin1 (ADD1), angiotensinogen (AGT), cytochrome P450 family 11-subfamily ${\beta}$-2 ($CYP11{\beta}$-2), epithelial sodium channel (ENaC), G-protein b3 subunit (GNB3), G protein-coupled receptor kinases type 4 (GRK4 A142V, GRK4 A486V), $11{\beta}$-hydroxysteroid dehydrogenase type-2 (HSD $11{\beta}$-2), neural precursor cell-expressed developmentally down regulated 4 like (NEDD4L),and solute carrier family 12(sodium/chloride transporters)-member 3 (SLC 12A3). We found that polymorphisms of salt-sensitive genes such as ACE, $CYP11{\beta}$-2, GRK4, SLC12A3, and GNB3 may be positively associated with human obesity. Conclusion: Despite gender, ethnic, and age differences in genetics studies, hypertensive obese children and adults who are carriers of specific salt-sensitive genes are recommended to reduce their sodium intake. We believe that our findings can contribute to the prevention of early-onset of chronic diseases in obese children by facilitating personalized diet-management of obesity from childhood to adulthood.

더덕 물추출물이 사염화탄소를 투여한 흰쥐의 항산화계 효소활성도에 미치는 영향 (Effect of Codonopsis lanceolata Water Extract on the Activities of Antioxidative Enzymes in Carbon Tetrachloride Treated Rats)

  • 조수열;한은경
    • 한국식품영양과학회지
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    • 제26권6호
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    • pp.1181-1186
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    • 1997
  • This study was performed to investigate the effects of Codonopsis lanceolata extract on the activities of antioxidative enzymes in carbon tetrachloride treated rats. Male Sprague-Dawley rats were fed until they reached about 110$\pm$10g body weight. Thereafter they were divided into normal group(N), carbon tetrachloride treated group(T), carbon tetrachloride and Codonopsis lanceolata water extract treated group(TW). Normal group were fed standard diet and carbon tetrachloride treated group were fed carbon tetrachloride once a week at the level of 0.12ml/100g body weight. Carbon tetrachloride and Codonopsis lanceolata water extract treated group were fed carbon tetrachloride once a week at the level of 0.12ml/100g body weight and Codonopsis lanceolata water extract at the level of 0.1ml/100g body weight once a day. The rats were sacrificed after 6weeks of feeding period. Content of hepatic cytochrome P-450 diminished by carbon tetrachloride was significantly increased by Codonopsis lanceolata water extract. Significant decrease in hepatic xanthine oxidase activity was found in rats treated with Codonopsis lanceolata water extract. The activity of superoxide dismutase was decreased by carbon tetrachloride, but it was significantly increased by Codonopsis lanceolata water exract. The activity of glutathione peroxidase increased by carbon tetrachloride was significantly decreased by Codonopsis lanceolata water extract. The activities of catalase and glutathione S-transferase were significantly influenced by Codonopsis lanceolata water extract. Contents of glutathione and lipid peroxide were increased by carbon tetrachloride, but they were significantly diminished by Codonopsis lanceolata water extract.

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Administration of antibiotics contributes to cholestasis in pediatric patients with intestinal failure via the alteration of FXR signaling

  • Xiao, Yongtao;Zhou, Kejun;Lu, Ying;Yan, Weihui;Cai, Wei;Wang, Ying
    • Experimental and Molecular Medicine
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    • 제50권11호
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    • pp.14.1-14.14
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    • 2018
  • The link between antibiotic treatment and IF-associated liver disease (IFALD) is unclear. Here, we study the effect of antibiotic treatment on bile acid (BA) metabolism and investigate the involved mechanisms. The results showed that pediatric IF patients with cholestasis had a significantly lower abundance of BA-biotransforming bacteria than patients without cholestasis. In addition, the BA composition was altered in the serum, feces, and liver of pediatric IF patients with cholestasis, as reflected by the increased proportion of primary BAs. In the ileum, farnesoid X receptor (FXR) expression was reduced in patients with cholestasis. Correspondingly, the serum FGF19 levels decreased significantly in patients with cholestasis. In the liver, the expression of the rate-limiting enzyme in bile salt synthesis, cytochrome P450 7a1 (CYP7A1), increased noticeably in IF patients with cholestasis. In mice, we showed that oral antibiotics (gentamicin, GM or vancomycin, VCM) reduced colonic microbial diversity, with a decrease in both Gram-negative bacteria (GM affected Eubacterium and Bacteroides) and Gram-positive bacteria (VCM affected Clostridium, Bifidobacterium and Lactobacillus). Concomitantly, treatment with GM or VCM decreased secondary BAs in the colonic contents, with a simultaneous increase in primary BAs in plasma. Moreover, the changes in the colonic BA profile especially that of tauro-beta-muricholic acid ($T{\beta}MCA$), were predominantly associated with the inhibition of the FXR and further altered BA synthesis and transport. In conclusion, the administration of antibiotics significantly decreased the intestinal microbiota diversity and subsequently altered the BA composition. The alterations in BA composition contributed to cholestasis in IF patients by regulating FXR signaling.

Heterologous Expression of Rhizopus Oryzae CYP509C12 Gene in Rhizopus Nigricans Enhances Reactive Oxygen Species Production and 11α-Hydroxylation Rate of 16α, 17-Epoxyprogesterone

  • Shen, Chaohui;Gao, Xiyang;Li, Tao;Zhang, Jun;Gao, Yuqian;Qiu, Liyou;Zhang, Guang
    • Mycobiology
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    • 제47권3호
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    • pp.301-307
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    • 2019
  • The $11{\alpha}$-hydroxylation of $16{\alpha}$, 17-epoxyprogesterone (EP) catalyzed by Rhizopus nigricans is crucial for the steroid industry. However, lower conversion rate of the biohydroxylation restricts its potential industrial application. The $11{\alpha}$-steroid hydroxylase CYP509C12 from R. oryzae were reported to play a crucial role in the $11{\alpha}$-hydroxylation in recombinant fission yeast. In the present study, the CYP509C12 of R. oryzae (RoCYP) was introduced into R. nigricans using the liposome-mediated mycelial transformation. Heterologous expression of RoCYP resulted in increased fungal growth and improved intracellular reactive oxygen species content in R. nigricans. The $H_2O_2$ levels in RoCYP transformants were approximately 2-folder that of the R. nigricans wild type (RnWT) strain, with the superoxide dismutase activities increased approximately 45% and catalase activities decreased approximately 68%. Furthermore, the $11{\alpha}$-hydroxylation rates of EP in RoCYP transformants (C4, C6 and C9) were 39.7%, 38.3% and 38.7%, which were 12.1%, 8.2% and 9.4% higher than the rate of the RnWT strain, respectively. This paper investigated the effect of heterologous expression of RoCYP in R. nigricans, providing an effective genetic method to construct the engineered strains for steroid industry.

새로운 11β-HSD1 저해제인 KR-67500의 약물동태 (Pharmacokinetic Characterization of KR-67500, a Novel 11β-HSD1 Inhibitor)

  • 임소희;안진희;김기영;배명애;김상겸;안성훈
    • 약학회지
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    • 제59권2호
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    • pp.59-65
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    • 2015
  • KR-67500, trans-4-(2-(4-methyl-1,1-dioxido-6-(2,4,6-trichlorophenyl)-1,2,6-thiadiazinan-2-yl)acetamido)adamantane-1-carboxamide, is a novel $11{\beta}$-HSD1 inhibitor with its therapeutic effects of its anti-diabetic, anti-adipogenic and anti-osteoporotic activity. This study was performed to evaluate in vitro and in vivo pharmacokinetic properties of KR-67500 as a new drug candidate. KR-67500 was stable and highly bound to proteins in rat plasma. The microsomal stabilities of KR-67500 in human and rat liver were high. The inhibitory effect of KR-67500 for five cytochrome P450 enzymes was low. Preclinical pharmacokinetic studies have been carried out with intravenous or oral administrations of KR-67500 (10 mg/kg) to male rats and monkey. KR-67500 showed low clearance (0.68 l/h/kg) and high oral bioavailability (102%) in male rats. These results suggest that KR-67500 has good drug-like pharmacokinetic properties with a low first-pass effect and high bioavailability for an oral therapeutic agent of diabetes and osteoporosis.

6-O-Galloylsalidroside, an Active Ingredient from Acer tegmentosum, Ameliorates Alcoholic Steatosis and Liver Injury in a Mouse Model of Chronic Ethanol Consumption

  • Kim, Young Han;Woo, Dong-Cheol;Ra, Moonjin;Jung, Sangmi;Kim, Ki Hyun;Lee, Yongjun
    • Natural Product Sciences
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    • 제27권3호
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    • pp.201-207
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    • 2021
  • We have previously reported that Acer tegmentosum extract, which is traditionally used in Korea to reduce alcohol-related liver injury, suppresses liver inflammation caused by excessive alcohol consumption and might improve metabolism. The active ingredient, 6-O-galloylsalidroside (GAL), was isolated from A. tegmentosum, and we hypothesized that GAL could provide desirable pharmacological benefits by ameliorating physiological conditions caused by alcohol abuse. Therefore, this study focused on whether GAL could ameliorate alcoholic fat accumulation and repair liver injury in mice. During chronic alcohol consumption plus binge feeding in mice, GAL was administered orally once per day for 11 days. Intrahepatic lipid accumulation was measured in vivo using a noninvasive method, 1H magnetic resonance imaging, and confirmed by staining with hematoxylin and eosin and Oil Red O. The serum levels of alanine aminotransferase (ALT) and aspartate aminotransferase (AST) were measured using a Konelab system, and the triglyceride content was measured in liver homogenates using an enzymatic peroxide assay. The results suggested that GAL alleviated alcohol-induced steatosis,e as indicated by decreased hepatic and serum triglyceride levels in ethanol-fed mice. GAL treatment also correlated with a decrease in the Cd36 mRNA expression, thus potentially inhibiting the development of alcoholic steatosis via the hepatic de novo lipogenesis pathway. Furthermore, treatment with GAL inhibited the expression of cytochrome P450 2E1 and attenuated hepatocellular damage, as reflected by a reduction in ALT and AST levels. These findings suggest that GAL extracted from A. tegmentosum has the potential to serve as a bioactive agent for the treatment of alcoholic fatty liver and liver damage.