• 제목/요약/키워드: CYP inhibitor

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인후두역류질환 ( Laryngopharyngeal Reflux Disease. LPRD )에서 Rabeprazole Sodium (Pariet$\circledR$)의 임상효과 (The clinical effects of Rabeprazole sodium (Pariet$\circledR$) in the treatment of Laryngopharyngeal Reflux)

  • 최홍식;김한수;최현승
    • 대한기관식도과학회:학술대회논문집
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    • 대한기관식도과학회 2002년도 제2차 추계학술대회
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    • pp.9-9
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    • 2002
  • 이비인후과 영역에 있어서 위산 역류에 의한 질환의 진단은 쉽지 않고 분명하지 않은 점이 많지만, 병변의 영향은 광범위하며, 실제로 역류에 의한 증상을 가지고 내원하는 환자도 증가하는 추세이다. 인후두역류질환의 치료는 크게 생활습관의 변경, 약물복용, 항역류수술로 나눌 수 있으며, 사용약제는 크게 두 부류로 나누는데, 제산제, H2 수용체 차단제, PPI(Proton Pump Inhibitor) 제제와 같은 산억제 약물군과 Prokinetic 약물군이다. Rabeprazole sodium(Pariet(R))은 PPI 제제에 해당하는 약제로 기존의 omeprazole, lansoprazole, pantoprazole과는 달리 대사 과정 중 CYP2C19에 대한 의존도가 낮아, 개체 간 차이가 적고 빠르고 일정하게 산분비 억제 효과를 나타내는 것으로 알려져 있은 약물이다. 2001년 5월부터 2002년 4월까지 32개 병원에서 Pariet(R) 를 복용한 2166명의 환자를 대상으로 분석하였다. 복용기간에 따라 4군(1군;1-14일, 2군;15-28일, 3군;29-56일, 4군:57일 이상)으로 나누었으며, 8가지 증상(Heart burn, Regurgitation, Chronic cough, Hoarseness, Globus sensation, Chronic throat clearing, Sore throat, Dysphagia)에 대한 호전 여부 및 후두내시경상 개선 정도, 의사에 의한 유용도 평가, 부작용 발생 여부에 대해 연구하였다. 증상개선율 50%이상을 치료 반응군으로 했을때 전체 2166명중 1627명(75.1%)에서 증상의 호전을 보았으며, 이는 복용기간이 길수록 증가하였다. 후두 내시경상 개선 정도는 현저한 개선이 32.9%, 중등도 개선이 38.7%로 대부분 환자에서 객관적인 병변의 호전을 보였으며, 유용도 평가에서는 매우 유용이 37.6%, 유용이 50.3%로 치료효과에 대한 만족도도 높은 것을 알수 있었다. PPI 제제의 부작용으로 보고되고 있는 두통, 오심, 설사, 복통. 변비, 어지럼증. 피곤 중. 소수의 환자가 두통을 호소하였으나, 그다지 심각한 정도는 아니었다. 인후두역류증 치료제로서 Pariet(R) 는 비교적 안전하고 효과가 높은 약물임이 임상 연구 결과 밝혀졌기에 보고하는 바이다.

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Biological Activity and Inhibition of Non-Enzymatic Glycation by Methanolic Extract of Rosa davurica Pall. Roots

  • Hu, Weicheng;Han, Woong;Jiang, Yunyao;Wang, Myeong-Hyeon;Lee, Young-Mee
    • Preventive Nutrition and Food Science
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    • 제16권3호
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    • pp.242-247
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    • 2011
  • The methanolic extract of Rosa davurica Pall. roots exhibited strong antioxidant activity in a 1,1-diphenyl-2-picryl-hydrazyl (DPPH) radical scavenging assay and was found to be a dose-dependent inhibitor of non-enzymatic formation of advanced glycation end products (AGEs), which are relevant to diabetes complications. HPLC-diode array detector (DAD) analysis of the R. davurica Pall. root extract led to the identification of four compounds: hydrocaffeic acid, catechin, epicatechin, and ellagic acid. Catechin was present in the largest amount and exhibited high antiglycation activity. A CYP3A4 assay was used to investigate potential interactions between drugs and the extract, and results suggest that the R. davurica Pall. root extract had moderate potential for interfering with drug metabolism. The R. davurica Pall. extract did not display anti-inflammatory activity on the level of that for tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) in a lipopolysaccharide (LPS)-stimulated macrophage assay; however, the extract did exhibit low to moderate immunostimulatory activity in a pro-inflammatory macrophage assay. Therefore, we conclude that R. davurica Pall. root is a promising anti-AGE agent with low to moderate risks of associated inflammation or drug interaction.

Analysis of Genes Regulated by HSP90 Inhibitor Geldanamycin in Neurons

  • ;;권오유
    • 대한의생명과학회지
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    • 제15권1호
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    • pp.97-99
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    • 2009
  • Geldanamycin is a benzoquinone ansamycin antibiotic that binds to cytosol HSP90 (Heat Shock Protein 90) and changes its biological function. HSP90 is involved in the intracellular important roles for the regulation of the cell cycle, cell growth, cell survival, apoptosis, angiogenesis and oncogenesis. To identify genes expressed during geldanamycin treatment against neurons of rats (PC12 cells), DNA microarray method was used. We have isolated 2 gene groups (up-or down-regulated genes) which are geldanamycin differentially expressed in neurons. Granzyme B is the gene most significantly increased among 204 up-regulated genes (more than 2 fold over-expression) and Chemokine (C-C motif) ligand 20 is the gene most dramatically decreased among 491 down-regulated genes (more than 2 fold down-expression). The gene increased expression of Cxc110, Cyp11a1, Gadd45a, Gja1, Gpx2, Ifua4, Inpp5e, Sox4, and Stip1 are involved stress-response gene, and Cryab, Dnaja1, Hspa1a, Hspa8, Hspca, Hspcb, Hspd1, Hspd1, and Hsph1 are strongly associated with protein folding. Cell cycle associated genes (Bc13, Brca2, Ccnf, Cdk2, Ddit3, Dusp6, E2f1, Illa, and Junb) and inflammatory response associated genes (Cc12, Cc120, Cxc12, Il23a, Nos2, Nppb, Tgfb1, Tlr2, and Tnt) are down-regulated more than 2 times by geldanamycin treatment. We found that geldanamycin is related to expression of many genes associated with stress response, protein folding, cell cycle, and inflammation by DNA microarray analysis. Further experimental molecular studies will be needed to figure out the exact biological function of various genes described above and the physiological change of neuronal cells by geldanamycin. The resulting data will give the one of the good clues for understanding of geldanamycin under molecular level in the neurons.

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Particulate Matter-Induced Aryl Hydrocarbon Receptor Regulates Autophagy in Keratinocytes

  • Jang, Hye sung;Lee, Ji eun;Myung, Cheol hwan;Park, Jong il;Jo, Chan song;Hwang, Jae Sung
    • Biomolecules & Therapeutics
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    • 제27권6호
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    • pp.570-576
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    • 2019
  • Particulate matter (PM), which refers to the mixture of particles present in the air, can have harmful effects. Damage to cells by PM, including disruption of organelles and proteins, can trigger autophagy, and the relationship between autophagy and PM has been well studied. However, the cellular regulators of PM-induced autophagy have not been well characterized, especially in keratinocytes. The Aryl Hydrocarbon Receptor (AhR) is expressed in the epidermis and is activated by PM. In this study, we investigated the role of the AhR in PM-induced autophagy in HaCaT cells. Our results showed that PM led to AhR activation in keratinocytes. Activation of the AhR-target gene CYP1A1 by PM was reduced by co-treatment with ${\alpha}$-naphthoflavone (${\alpha}-NF$), an AhR inhibitor. We also evaluated activation of the autophagy pathway in PM-treated keratinocytes. In HaCaT cells, treatment with PM treatment led to the induction of microtubules-associated proteins light chain 3 (LC3) and p62/SQSTM1, which are essential components of the autophagy pathway. To study the role of the AhR in mediating PM-induced autophagy, we treated cells with ${\alpha}-NF$ or used an siRNA against AhR. Expression of LC3-II induced by PM was decreased in a dose dependent manner by ${\alpha}-NF$. Furthermore, knockdown of AhR with siAhR diminished PM-induced expression of LC3-II and p62. Together, these results suggest that inhibition of the AhR decreases PM-induced autophagy. We confirmed these results using the autophagy-inhibitors BAF and 3-MA. Taken together, our results indicate that exposure to PM induces autophagy via the AhR in HaCaT keratinocytes.

인후두위산역류증(Laryngopharyngeal Reflux: LPR)의 치료에 대한 RabeprazoleSodium(Parietd)의 임상효과와 안전성 검토 (Clinical Study for Efficacy and Safety of Rabeprazole Sodium(Pariet) in the Treatment of Laryngopharyngeal Reflex(LPR) Disease)

  • 정광윤;전병선;고상현;권기환;권순영;권중근;김동영;김상철;김성완;김영모;김영호;김윤환;김장묵
    • 대한기관식도과학회지
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    • 제10권2호
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    • pp.35-42
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    • 2004
  • Background and objective : Rabeprazole is a new generation proton pump inhibitor, which has a rapid onset after first dose, predictable efficacy in all patients regardless of CYP2C19 genotype status, and less nocturnal acid breakthrough. The aim of the study is to investigate clinical efficacy and safety of rabeprazole sodium (Pariet 10mg qd)when administered once daily to patients with laryngopharyngeal reflux(LPR) disease. Methods : Among the patients who had visited the Department of Otolaryngology, those with LPR symptoms, had undergone laryngoscopy. Symptoms and endoscopic laryngeal sings were recorded initially, at 1 month, 2 months, 3 months, and more than 3 months, All patients were evaluated for clinical efficacy on the basis of symptom scores, reflux finding score(RFS), and side effects. Results : In general, most symptom scores and RFS improved over the time. Efficacy of the Pariet on LPR-related symptoms were $63.2\%,\;77.5\%,\;78.7\%,\;and\;90.9\%$ before 4 weeks, 4 to 8 weeks, 8 to 12 weeks, and after 12 weeks respectively. Efficacy on the RFS were $61.8\%,\;78.4\%,\;82.9\%,\;and\;85.5\%$ before 4 weeks, 4 to 8 weeks, 8 to 12 weeks, and after 12 weeks respectively. Pariet was well tolerated and was associated with few drug-related side effects. Conclusion Because of its efficacy and safety, Pariet may prove to be an alternative to currently available proton pump inhibitors.

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Inhibitory Role of TRIP-Br1/XIAP in Necroptosis under Nutrient/Serum Starvation

  • Sandag, Zolzaya;Jung, Samil;Quynh, Nguyen Thi Ngoc;Myagmarjav, Davaajargal;Anh, Nguyen Hai;Le, Dan-Diem Thi;Lee, Beom Suk;Mongre, Raj Kumar;Jo, Taeyeon;Lee, MyeongSok
    • Molecules and Cells
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    • 제43권3호
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    • pp.236-250
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    • 2020
  • Currently, many available anti-cancer therapies are targeting apoptosis. However, many cancer cells have acquired resistance to apoptosis. To overcome this problem, simultaneous induction of other types of programmed cell death in addition to apoptosis of cancer cells might be an attractive strategy. For this purpose, we initially investigated the inhibitory role of TRIP-Br1/XIAP in necroptosis, a regulated form of necrosis, under nutrient/serum starvation. Our data showed that necroptosis was significantly induced in all tested 9 different types of cancer cell lines in response to prolonged serum starvation. Among them, necroptosis was induced at a relatively lower level in MCF-7 breast cancer line that was highly resistant to apoptosis than that in other cancer cell lines. Interestingly, TRIP-Br1 oncogenic protein level was found to be very high in this cell line. Up-regulated TRIP-Br1 suppressed necroptosis by repressing reactive oxygen species generation. Such suppression of necroptosis was greatly enhanced by XIAP, a potent inhibitor of apoptosis. Our data also showed that TRIP-Br1 increased XIAP phosphorylation at serine87, an active form of XIAP. Our mitochondrial fractionation data revealed that TRIP-Br1 protein level was greatly increased in the mitochondria upon serum starvation. It suppressed the export of CypD, a vital regulator in mitochondria-mediated necroptosis, from mitochondria to cytosol. TRIP-Br1 also suppressed shikonin-mediated necroptosis, but not TNF-α-mediated necroptosis, implying possible presence of another signaling pathway in necroptosis. Taken together, our results suggest that TRIP-Br1/XIAP can function as onco-proteins by suppressing necroptosis of cancer cells under nutrient/serum starvation.