• 제목/요약/키워드: CYP2R1

검색결과 94건 처리시간 0.025초

Regulation of Cyp 1A1 Gene Expression by Retinoic Acid Receptor, Retinoid X Receptor and Constitutive Androstane Receptor in Rainbow Trout Hepatoma Cells(Rth 149)

  • Kim, Ji-Sun;Yang, So-Yeun;Seo, Mi-Jung;Sheen, Yhun-Yhong
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2003년도 추계학술대회
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    • pp.136-136
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    • 2003
  • Exposure of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) causes a variety of biological and toxicology effects, most of which are mediated by aryl hydrocarbon receptor (AhR). The ligand-bound AhR as a heterodimer with AhR nuclear translocator (ARNT) binds to its specific DNA recognition site, the dioxin-responsive element (DRE), and it results in increased transcription of CVP1A1 gene.(omitted)

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Mechanism of Panax notoginseng saponins modulation of miR-214-3p/NR1I3 affecting the pharmacodynamics and pharmacokinetics of warfarin

  • Yuting Yang;Zhenyu Zhai;Huiming Yao;Ling He;Jun Shao;Zirong Xia;Juxiang Li
    • Journal of Ginseng Research
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    • 제48권5호
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    • pp.494-503
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    • 2024
  • Background: With the prevalence of dietary supplements, the use of combinations of herbs and drugs is gradually increasing, together with the risk of drug interactions. In our clinical work, we unexpectedly found that the combination of Panax notoginseng and warfarin, which are herbs that activate blood circulation and remove blood stasis, showed antagonistic effects instead. The purpose of this study was to evaluate the drug interaction between Panax notoginseng saponins (PNS) and warfarin, the main active ingredient of Panax notoginseng, and to explore the interaction mechanism. Methods: The effects and mechanisms of PNS on the pharmacodynamics and pharmacokinetics of warfarin were explored mainly in Sprague-Dawley rats and HepG2 cells. Elisa was used to detect the concentrations of coagulation factors, HPLC-MS to detect the blood concentrations of warfarin in rats, immunoblotting was employed to examine protein levels, qRT-PCR to detect mRNA levels, cellular immunofluorescence to detect the localization of NR1I3, and dual luciferase to verify the binding of miR-214-3p and NR1I3. Results: PNS significantly accelerated warfarin metabolism and reduced its efficacy, accompanied by increased expression of NR1I3 and CYP2C9. Interference with NR1I3 rescued the accelerated metabolism of warfarin induce by PNS co-administration. In addition, we demonstrated that PNS significantly reduced miR-214-3p expression, whereas miR-214-3p overexpression reduced NR1I3 and CYP2C9 expression, resulting in a weakened antagonistic effect of PNS on warfarin. Additionally, we found that miR-214-3p bound directly to NR1I3 3'-UTR and significantly downregulated NR1I3 expression. Conclusion: Our study demonstrated that PNS accelerates warfarin metabolism and reduces its pharmacodynamics by downregulating miR-214-3p, leading to increased expression of its target gene NR1I3, these findings provide new insights for clinical drug applications to avoid adverse effects.

갈근이 비만 랫드 간조직의 비만관련 유전자 발현에 미치는 영향 (The effects of Pueraria lobata extract on gene expression in liver tissue of rat with estrogen-deficient obesity)

  • 신윤상;황귀서
    • 대한예방한의학회지
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    • 제18권3호
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    • pp.117-128
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    • 2014
  • Objective : It is known that Pueriaria lobata has an anti-osteoporetic effect, anti-cancer effect, anti-pyretic effect, and anti-diabetic effect. The aim of this study was to evaluate anti-obesity effect of Pueriaria lobata extract (PLE), and elucidate the effect of it on gene expression related to lipid metabolism. Method : The experiments were performed with the use of ovariectomized rats as estrogen-deficient obesity model. They were grouped NC (normal control), OC (estrogen-deficient control), PLH (100mg/kg of PLE), PLL (20mg/kg). PLE was orally administered for 6 weeks. Body weights and serum lipid level were estimated, and real-time PCR was performed to investigate the effect of PLE on gene expression in liver. Results : PLE decreased the body weight and serum cholesterol and triglyceride, but increased HDL-cholesterol. And PLE increased leptin, CYP27, CPT1, CYP8B1, ACAT2, LDLR, and SCD1, but reduced $PPAR{\gamma}$, PGC1A, HMG-CoA-R, ACAT1, SCD1, and APoB gene expression in liver tissue of rat with estrogen-deficient obesity. Conclusion : It is concluded that Pueriaria lobata reduced body weight, and its effect was expressed by regulation of gene expression related to lipid metabolism in rats with estrogen-deficient obesity.

Cypermethrin과 Methomyl 저항성 집파리의 교처저항성과 Cypermethrin 저항성에 대한 연관군 분석 (Cross Resistance of Cypermethrin-and Methomyl-Resistance and Linkage Group Analysis on Cypermethrin Resistance in House Fly(Musca domestica L.))

  • 유주;박정규;이시우;최병렬
    • 한국응용곤충학회지
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    • 제40권4호
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    • pp.337-344
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    • 2001
  • The house fly (Musca domestica L.) strains were derived from the Yumenoshima III strain by selecting with cypermethrin and methomyl for 19 and 16 generations, respectively. The resulting strains, cypermethrin resistance strain (Cyp-R19) and methomyl resistance strain (Met-R16), showed high level of resistance by 12906 and 51 times, respectively, comparing with the susceptible SRS strain. The Cyp-R19 strain was resistant to synthetic pyrethroids such as deltamethrin, esfenvalerate, fenpropathrin, $\beta$-cyfluthrin, showing > 11000, 1231, 103, 292 times higher $LD_{50}$ values than the SRS strain, respectively. It was also resistant to 3 organophosphates and 2 carbamates such as fenitrothion, profenofos, pyridaphenthion, benfuracarb, methomyl, showing resistance ratios fo 51, 17, 49, 39 and 62 comparing to SRS strain. The Met-R16 strain was resistant to synthetic carbamate benfuracarb, showing 6 times higher $LD_{50}$ value than SRS strain. It was also resistant to 4 organophosphates such as acephate, fenitrothion, profenofos and pyridaphenthion, showing > 40, 103, 19, 60 times higher $LD_{50}$ value. It was also resistant to 5 pyrethroids and a pyrrole such as cypermethrin, deltamethrin, esfenvalerate, fenpropathrin, $\beta$-cyfluthrin and chlorfenapyr, showing 3030, 249, 4063, 34, 330 and 86 times higher $LD_{50}$ values than the SRS strain. Cyp-R14 strain which was selected for 14 generations by cypermethrin and developed 11014 times higher resistance to the SRS strain was used in the dominance and linkage group analysis. Cypermethrin resistance inheritance was incompletely dominant in house fly as judged by the reciprocal cross between the resistant and susceptible strains. The linkage group analysis for the major factors responsible for this resistance was carried out by the$ F_1$male-backcross method, using susceptible multi-chromosomal marker aabys strain. The major factors for cypermethrin resistance were located on the 1st, the 3rd and the 4th chromosomes, and the effect of the 3rd chromosome was most prominent.

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The Promotive Effects of Antioxidative Apigenin on the Bioavailability of Paclitaxel for Oral Delivery in Rats

  • Choi, Sang-Joon;Choi, Jun-Shik
    • Biomolecules & Therapeutics
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    • 제18권4호
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    • pp.469-476
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    • 2010
  • This study was to investigate the effect of apigenin on the bioavailability of paclitaxel after oral and intravenous administration in rats. The effect of apigenin on P-glycoprotein (P-gp), cytochrome P450 (CYP)3A4 activity was evaluated. The pharmacokinetic parameters of paclitaxel were determined in rats after oral (40 mg/kg) or intravenous (5 mg/kg) administration of paclitaxel with apigenin (0.4, 2 and 8 mg/kg) to rats. Apigenin inhibited CYP3A4 activity with 50% inhibition concentration ($IC_{50}$) of 1.8 ${\mu}M$. In addition, apigenin significantly inhibited P-gp activity. Compared to the control group, apigenin significantly increased the area under the plasma concentration-time curve (AUC, p<0.05 by 2 mg/kg, 59.0% higher; p<0.01 by 8 mg/kg, 87% higher) of oral paclitaxel. Apigenin also significantly (p<0.05 by 2 mg/kg, 37.2% higher; p<0.01 by 8 mg/kg, 59.3% higher) increased the peak plasma concentration ($C_{max}$) of oral paclitaxel. Apigenin significantly increased the terminal half-life ($t_{1/2}$, p<0.05 by 8 mg/kg, 34.5%) of oral paclitaxel. Consequently, the absolute bioavailability (A.B.) of paclitaxel was significantly (p<0.05 by 2 mg/kg, p<0.01 by 8 mg/kg) increased by apigenin compared to that in the control group, and the relative bioavailability (R.B.) of oral paclitaxel was increased by 1.14- to 1.87-fold. The pharmacokinetics of intravenous paclitaxel were not affected by the concurrent use of apigenin in contrast to the oral administration of paclitaxel. Accordingly, the enhanced oral bioavailability by apigenin may be mainly due to increased intestinal absorption caused via P-gp inhibition by apigenin rather than to reduced renal and hepatic elimination of paclitaxel. The increase in the oral bioavailability might be mainly attributed to enhanced absorption in the gastrointestinal tract via the inhibition of P-gp and reduced first-pass metabolism of paclitaxel via the inhibition of the CYP3A subfamily in the small intestine and/or in the liver by apigenin. It appears that the development of oral paclitaxel preparations as a combination therapy is possible, which will be more convenient than the i.v. dosage form.

Differential Metabolism of the Pyrrolizidine Alkaloid, Senecionine, in Fischer 344 and Sprague-Dawley Rats

  • Chung, Woon-Gye;Donald R. Buhler
    • Archives of Pharmacal Research
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    • 제27권5호
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    • pp.547-553
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    • 2004
  • The pyrrolizidine alkaloids (PAs), contained in a number of traditional remedies in Africa and Asia, show wide variations in metabolism between animal species but little work has been done to investigate differences between animal strains. The metabolism of the PA senecionine (SN) in Fischer 344 (F344) rats has been studied in order to compare to that found in the previously investigated Sprague-Dawley (SO) rats (Drug Metab. Dispos. 17: 387, 1989). There was no difference in the formation of ($\pm$) 6,7-dihydro-7-hydroxy-1-hydroxymethyl-5H-pyrrolizine (DHP, bioactivation) by hepatic microsomes from either sex of SO and F344 rats. However, hepatic microsomes from male and female F344 rats had greater activity in the Noxidation (detoxication) of SN by 88% and 180%, respectively, when compared to that of male and female SD rats. Experiments conducted at various pH showed an optimum pH of 8.5, the optimal pH for flavin-containing monooxygenase (FMO), for SN N-oxidation by hepatic microsomes from F344 females. In F344 males, however, a bimodal pattern was obtained with activity peaks at pH 7.6 and 8.5 reflecting the possible involvement of both cytochrome P450 (CYP) and FMO. Use of specific inhibitors (SKF525A, 1-benzylimidazole and methimazole) showed that the N-oxide of SN was primarily produced by FMO in both sexes of F344 rats. In contrast, SN N-oxide formation is known to be catalyzed mainly by CYP2C11 rather than FMO in SD rats. This study, therefore, demonstrated that there were substantial differences in the formation of SN N-oxide by hepatic microsomes from F344 and SD rats and that this detoxification is catalyzed primarily by two different enzymes in the two rat strains. These findings suggest that significant variations in PA biotransformation can exist between different animal strains.

17β-estradiol이 기수산 물벼룩의 Ecdysteroid 경로에 미치는 영향 (Effect of 17β-estradiol on Ecdysteroid Pathway Related Genes in the Brackish Water Flea Diaphanosoma celebensis)

  • 인소연;유제원;조하영;이영미
    • 한국해양생명과학회지
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    • 제5권2호
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    • pp.35-42
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    • 2020
  • 17β-estradiol (E2)는 난소로부터 방출되는 호르몬으로 가정 및 축산 오폐수에 포함되어 환경으로 지속적으로 유출된다. E2는 높은 에스트로겐 활성을 가지고 있어 갑각류의 발달과 생식에 영향을 미치는 내분비계교란물질로 알려져 있다. 갑각류의 발달은 탈피호르몬(ecdysteroid)의 신호 전달 과정에 의해 이루어지지만 E2가 소형 갑각류의 탈피호르몬 경로 유전자를 어떻게 조절하는지에 대한 연구는 매우 미흡하다. 본 연구에서는 기수산 물벼룩 Diaphanosoma celebensis에서 E2에 대한 급성 독성 시험을 통해 24-h LCx 값을 도출하였고, E2 노출에 따른 탈피호르몬 경로에 관여하는 7개의 유전자(CYP314a1, EcRA, EcRB, USP, ERR, Vtg, VtgR)의 시간별 발현 변화를 quantitative real time polymerase chain reaction (qRT-PCR)을 이용하여 분석하였다. D. celebensis의 24-h LC50 값은 9.581 mg/l (95% C.I.: 7.697~11.927 mg/l), 24 h-LC10 값은 4.842 mg/l(95% C.I.: 3.683~6.366 mg/l)로 나타났다. CYP314a1, EcRA, USP, VtgR 유전자의 발현이 12시간 또는 24시간에 유의하게 증가하는 양상을 보였다. 이러한 결과는 E2가 D. celebensis의 탈피호르몬 경로에 관련하는 유전자의 발현을 조절함으로써 탈피와 생식에 영향을 미칠 수 있을 것임을 시사한다. 본 연구는 소형 갑각류에서 내분비계교란물질이 탈피 경로에 미치는 영향에 대한 분자 기전을 이해하는데 도움이 될 것이다.

Maternal Low-protein Diet Alters Ovarian Expression of Folliculogenic and Steroidogenic Genes and Their Regulatory MicroRNAs in Neonatal Piglets

  • Sui, Shiyan;Jia, Yimin;He, Bin;Li, Runsheng;Li, Xian;Cai, Demin;Song, Haogang;Zhang, Rongkui;Zhao, Ruqian
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권12호
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    • pp.1695-1704
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    • 2014
  • Maternal malnutrition during pregnancy may give rise to female offspring with disrupted ovary functions in adult age. Neonatal ovary development predisposes adult ovary function, yet the effect of maternal nutrition on the neonatal ovary has not been described. Therefore, here we show the impact of maternal protein restriction on the expression of folliculogenic and steroidogenic genes, their regulatory microRNAs and promoter DNA methylation in the ovary of neonatal piglets. Sows were fed either standard-protein (SP, 15% crude protein) or low-protein (LP, 7.5% crude protein) diets throughout gestation. Female piglets born to LP sows showed significantly decreased ovary weight relative to body weight (p<0.05) at birth, which was accompanied with an increased serum estradiol level (p<0.05). The LP piglets demonstrated higher ratio of bcl-2 associated X protein/B cell lymphoma/leukemia-2 mRNA (p<0.01), which was associated with up-regulated mRNA expression of bone morphogenic protein 4 (BMP4) (p<0.05) and proliferating cell nuclear antigen (PCNA) (p<0.05). The steroidogenic gene, cytochrome P450 aromatase (CYP19A1) was significantly down-regulated (p<0.05) in LP piglets. The alterations in ovarian gene expression were associated with a significant down-regulation of follicle-stimulating hormone receptor mRNA expression (p<0.05) in LP piglets. Moreover, three microRNAs, including miR-423-5p targeting both CYP19A1 and PCNA, miR-378 targeting CYP19A1 and miR-210 targeting BMP4, were significantly down-regulated (p<0.05) in the ovary of LP piglets. These results suggest that microRNAs are involved in mediating the effect of maternal protein restriction on ovarian function through regulating the expression of folliculogenic and steroidogenic genes in newborn piglets.

Metabolic Activation of Marijuana Constituents, Cannabinoids, in Relation to Their Toxicity for Human and Its Oxidation Mechanism

  • Ikuo, Yamamoto
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.194-199
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    • 2002
  • Many oxidative metabolites of tetrahydrocannabinols (THCs), active components of marijuana, were pharmacologically active, and 11-hydroxy-THCs, 11-oxo-${\Delta}^8$-THC, 7-oxo-${\Delta}^8$-THC, 8$\beta$, 9$\beta$-epoxyhexahydrocannabinol (EHHC), 9$\alpha$, l0$\alpha$-EHHC and 3'-hydroxy-${\Delta}^9$-THC were more active than THC in pharmacological effects such as catalepsy, hypothermia and barbiturate synergism in mice. Cannabidiol (CBD), another major component, was biotransfomred to two novel metabolites, 6-hydroxymethyl-${\Delta}^9$-THC and 3-pentyl-6, 7, 7a, 8, 9, lla-hexahydro-I, 7-dihydroxy-7, 1O-dimethyldibenzo[b, d]oxepin (PHDO) through 8R, 9-epoxy-CBD and 85, 9-epoxy-CBD, respectively. Both metabolites exhibited some pharmacological effects comparable to d9 - THe. Cannabinol (CBN), the other major component, was mainly metabolized to ll-hydroxy-CBN by hepatic microsomes of animals including humans. The pharmacological effects of the metabolite were higher than those of CBN demonstrating that II-hydroxylation of CBN is metabolic activation pathway of the cannabinoid as is the case in THCs. Tolerance and reciprocal cross-tolerance developed to pharmacological effects d8 - THC and ll-hydroxy-d8-THC , and the magnitude of tolerance development produced by the metabolite was significantly higher than that by d8-THC. The results indicate that ll-hydroxy-d8-THC has an important role not only in the pharmacological effects but also its tolerance development of d8 - THe. THCs and their metabolites competed to the specific binding of CP-55, 940, an agonist of cannabinoid receptor, to synaptic membrane from bovine cerebral cortex. The Ki value of THCs and their metabolites were closely paralleled to their pharmacological effects in mice. A novel cytochrome P450 (cyp2c29) was purified and identified as a major enzyme responsible for the metabolic activation of d8-THC at the II-position in the mouse liver. cDNA of CYP2C29 was cloned from a mouse cDNA library and its sequence was determined. The oxidation mechanism of THC by cyp2c29 was proposed.

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누룩곰팡이 분리균의 다양성 및 당화능 분석과 독소생산능 조사 (Diversity, Saccharification Capacity, and Toxigenicity Analyses of Fungal Isolates in Nuruk)

  • 김민식;김신일;하병석;박혜영;백성열;여수환;노현수
    • 한국균학회지
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    • 제42권3호
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    • pp.191-200
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    • 2014
  • 다양한 경로를 통하여 수집된 누룩 11종에 들어 있는 효모와 곰팡이의 함량 및 다양성을 조사하였다. 누룩 현탁액을 DRBC 고체배지에서 배양한 후 고체배지상 곰팡이균들의 수를 콜로니형성단위(CFU)로 측정한 결과, MS4, MS8, MS10등 3종의 누룩에서 각각 $1,278.9{\pm}21.6$ (${\times}10^4$), $1,868.0{\pm}27.7$ (${\times}10^4$), $775.1{\pm}19.2$ (${\times}10^4$) CFU (20 mg 누룩당)로 가장 높은 곰팡이 밀도를 보였으며, 이들의 대부분은 Pichia anomala, P. kudriavzevii, Kluyveromyces marxianus 및 Saccharomycopsis fibuligera 등 효모가 차지하고 있었다. MS2, MS5, MS11등 3종의 누룩에서만 곰팡이인 Aspergillus oryzae, A. niger와 Rhizopus oryzae들이 우점균이었다. 각 곰팡이의 누룩에서의 역할을 알기 위하여, 곰팡이의 배양상등액을 취하여 amylase 및 ${\beta}$-glucanase 활성을 조사였다. Amylase 활성은 A. niger와 A. luchuensis 등 A. niger clade에 속하는 균이 가장 높았으며, 특이하게도 효모균인 S. fibuligera가 A. niger에 근접하는 amylase 활성을 보였다. A. oryzae와 R. oryzae는 당화능면에서 위 세가지 곰팡이에 비하여 뒤쳐지는 것으로 평가되었다. 한편 ${\beta}$-glucanase 활성은 주로 R. oryzae에서만 나타나서 R. oryzae가 전분의 당화 외에 곡류의 주성분 중 하나인 ${\beta}$-glucan의 분해하는 역할을 하는 것으로 추정되었다. 누룩의 안전성 평가를 위하여 분리된 Aspergillus 균들의 aflatoxin 생산능을 norB-cypA, aflR 및 omtA 유전자마커로 조사한 결과, 모든 A. oryzae 분리균들은 aflatoxin 생산능이 없는 균주들로 예측되었으며, 이는 배양액의 TLC 분석을 통해서 확인되었다.