• Title/Summary/Keyword: □COx

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Prostaglandin E Synthase, a Terminal Enzyme for Prostaglandin E2 Biosynthesis

  • Kudo, Ichiro;Murakami, Makoto
    • BMB Reports
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    • v.38 no.6
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    • pp.633-638
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    • 2005
  • Biosynthesis of prostanoids is regulated by three sequential enzymatic steps, namely phospholipase $A_2$ enzymes, cyclooxygenase (COX) enzymes, and various lineage-specific terminal prostanoid synthases. Prostaglandin E synthase (PGES), which isomerizes COX-derived $PGH_2$ specifically to $PGE_2$, occurs in multiple forms with distinct enzymatic properties, expressions, localizations and functions. Two of them are membrane-bound enzymes and have been designated as mPGES-1 and mPGES-2. mPGES-1 is a perinuclear protein that is markedly induced by proinflammatory stimuli, is down-regulated by anti inflammatory glucocorticoids, and is functionally coupled with COX-2 in marked preference to COX-1. Recent gene targeting studies of mPGES-1 have revealed that this enzyme represents a novel target for anti-inflammatory and anti-cancer drugs. mPGES-2 is synthesized as a Golgi membrane-associated protein, and the proteolytic removal of the N-terminal hydrophobic domain leads to the formation of a mature cytosolic enzyme. This enzyme is rather constitutively expressed in various cells and tissues and is functionally coupled with both COX-1 and COX-2. Cytosolic PGES (cPGES) is constitutively expressed in a wide variety of cells and is functionally linked to COX-1 to promote immediate $PGE_2$ production. This review highlights the latest understanding of the expression, regulation and functions of these three PGES enzymes.

Autocrine prostaglandin E2 signaling promotes promonocytic leukemia cell survival via COX-2 expression and MAPK pathway

  • Shehzad, Adeeb;Lee, Jaetae;Lee, Young Sup
    • BMB Reports
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    • v.48 no.2
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    • pp.109-114
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    • 2015
  • The COX-2/$PGE_2$ pathway has been implicated in the occurrence and progression of cancer. The underlying mechanisms facilitating the production of COX-2 and its mediator, $PGE_2$, in cancer survival remain unknown. Herein, we investigated $PGE_2$-induced COX-2 expression and signaling in HL-60 cells following menadione treatment. Treatment with $PGE_2$ activated anti-apoptotic proteins such as Bcl-2 and Bcl-xL while reducing pro-apoptotic proteins, thereby enhancing cell survival. $PGE_2$ not only induced COX-2 expression, but also prevented casapse-3, PARP, and lamin B cleavage. Silencing and inhibition of COX-2 with siRNA transfection or treatment with indomethacin led to a pronounced reduction of the extracellular levels of $PGE_2$, and restored the menadione- induced cell death. In addition, pretreatment of cells with the MEK inhibitor PD98059 and the PKA inhibitor H89 abrogated the $PGE_2$-induced expression of COX-2, suggesting involvement of the MAPK and PKA pathways. These results demonstrate that $PGE_2$ signaling acts in an autocrine manner, and specific inhibition of $PGE_2$ will provide a novel approach for the treatment of leukemia.

Inhibitory effect of Astragali Radix on COX-2 activity (황기의 COX-2 활성 억제 효과)

  • Kim, Eun-Jeong;Oh, O-Jin;Lee, Sang-Kook;Yang, Ki-Sook
    • Korean Journal of Pharmacognosy
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    • v.32 no.4 s.127
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    • pp.311-315
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    • 2001
  • The root of Astragalus membranaceus Bunge (Leguminosae), which has been used for the treatment of hypertension, chronic hepatitis, duodenal ulcers, chronic nephritis and promotion of immunity in folk remedies. Cyclooxygenase (COX-2) is responsible for the production of large amounts of proinflammatory prostaglandins (PGs) at the inflammatory site. Thus, a logical approach to the treatment of inflammatory disease should involve the inhibitors of COX-2. To develop new COX-2 inhibitors from natural products, Astragali Radix was screened by inhibiting prostaglandin $E_2(PGE_2)$ generation in the culture medium using enzyme immunometric assay. Two isoflavone glycosides, $7,2'-dihydroxy-3',4'-dimethoxyisoflavan-7-O-{\beta}-D-glucoside$ and $calycosin-7-O-{\beta}-D-glucoside$ isolated from Astragali Radix inhibited COX-2 activity.

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Expression of Cyclooxygenase-2 (COX-2) in Colorectal Adenocarcinoma: an Immunohistochemical and Histopathological Study

  • Mahmoud, Abla Sayed;Umair, Ayesha;Azzeghaiby, Saleh Nasser;Alqahtani, Fahad Hussain;Hanouneh, Salah;Tarakji, Bassel
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.16
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    • pp.6787-6790
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    • 2014
  • Background: The aim of this study was to evaluate cyclooxygenase-2 (COX-2) immunoreactivity in colorectal adenocarcinomas and to find correlations with different pathological features. Materials and Methods: This study included 35 cases of colorectal carcinoma foir which surgical colectomy specimens were collected. Immunohistochemical staining of COX-2 (cyclooxygenase-2) is done by using the Streptavidin-biotin technique. Results: This work reveals that COX-2 is positive in most cases of colorectal carcinoma and negative in normal colon tissue with statistically non significant relations between COX-2 immunostaining and different pathological features. Conclusions: Our data suggest over expression of COX-2 protein in colorectal carcinoma in contrast to normal mucosa, with a possible role in cell proliferation in carcinogenesis.

Anti-inflammatory Activity of Flavonoids from Populus davidiana

  • Zhang, XinFeng;Hung, Tran Manh;Phuong, Phuong Thien;Ngoc, Tran Minh;Min, Byung-Sun;Song, Kyung-Sik;Seong, Yeon-Hee;Bae, Ki-Hwan
    • Archives of Pharmacal Research
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    • v.29 no.12
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    • pp.1102-1108
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    • 2006
  • An in vitro bioassay-guide revealed that the methanol (MeOH) extract of the stem bark of Populus davidiana showed considerable inhibitory activity against cyclooxygenase (COX-1, COX-2). Continuous phytochemical study of the MeOH extract of this plant led to the isolation of ten flavonoids; sakuranetin (1), rhamnocitrin (2), 7-O-methylaromadendrin (3), naringenin (4), eriodictyol (5), aromadendrin (6), kaempferol (7), neosakuranin (8), sakuranin (9) and sakurenetin-5,4'-di-${\beta}$-D-glucopyranoside (10). Their structures were identified on the basis of their physicochemical and spectroscopic analyses. The isolated compounds, 1-10, were tested for their inhibitory activities against COX-1 and COX-2. Compound 7 was found to have potent inhibitory effect on COX-1 and a moderate effect on COX-2, meanwhile, compounds 1-6 showed moderate inhibition against COX-1 only. Moreover, compounds 5-8 exhibited suppressive effects on xanthine oxidase (XO). These results may explain, in part, the traditional uses of P. davidiana in ethnomedicine.

Ectopic Expression of Caveolin-1 Induces COX-2 Expression in Rabbit Articular Chondrocytes via MAP Kinase Pathway

  • Kim, Song-Ja
    • IMMUNE NETWORK
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    • v.6 no.3
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    • pp.123-127
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    • 2006
  • Background: Caveolin-1 is a principal component of caveolae membranes in vivo. Although expression of caveolae structure and expression of caveolin family, caveolin-1, -2 and -3, was known in chondrocytes, the functional role of caveolae and caveolins in chondrocytes remains unknown. In this study, we investigated the role of caveolin-1 in articular chondrocytes. Methods: Rabbit articular chondrocytes were prepared from cartilage slices of 2-week-old New Zealand white rabbits by enzymatic digestion. Caveolin-1 cDNA was transfected to articular chondrocytes using LipofectaminePLUS. The cyclooxygenase-2 (COX-2) expression levels were determined by immunoblot analysis, immunostaining, immunohistochemistry, and prostaglandin $E_2\;(PGE_2)$ assay was used to measure the COX-2 activity. Results: Ectopic expression of caveolin-1 induced COX-2 expression and activity, as indicated by immunoblot analysis and $PGE_2$ assay. And also, overexpression of caveolin-1 stimulated activation of p38 kinase and ERK-1/-2. Inhibition of p38 kinase and ERK-1/-2 with SB203580 and PD98059, respectively, led to a dose-dependent decrease COX-2 expression and $PGE_2$ production in caveolin-1-transfected cells. Conclusion: Taken together, our data suggest that ectopic expression of caveolin-1 contributes to the expression and activity of COX-2 in articular chondrocytes through MAP kinase pathway.

Bee Venom induces apoptosis and inhibits COX-2 in human osteosarcoma cell line MG-63 (봉독이 골육종세포주에서 세포사멸 및 COX-2 억제에 미치는 영향)

  • Hwang, Dae-yeon;Kim, Ho-hyun;Kim, Chang-ju;Kim, Ee-hwa
    • Journal of Acupuncture Research
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    • v.20 no.3
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    • pp.63-74
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    • 2003
  • 목적 : 한의학에서 관절염이나 진통치료에 사용되어 왔던 봉독약침액이 인간 골육종 세포주인 MG-63 세포에서 항종양효과가 있는지 연구하고자 한다. 특히 본 실험에서는 이러한 봉독의 종양발생 억제작용이 세포사멸과 관련이 있는지, 그리고 프로스타글란딘 합성 효소인 cyclooxygenase(COX)-2의 억제와 관련이 있는지를 연구하고자 한다. 방법 : 인간 골육종 세포주에서 세포사멸의 변화를 관찰하기 위해서 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium brimide(MTT) assay, 4,6-diamidino-2-phenylindole (DAPI), DNA fragmentation assay 및 reverse transcription-polymerase chain reaction(RT-PCR) 방법을 이용하였다. 결과 : 세포독성 검사에서 봉독은 MG-63 세포에서 농도-의존적으로 세포독성을 나타내었다. 이러한 봉독의 세포독성이 세포사멸로 인한 것인지를 여러 가지 형태로 검사한 결과 봉독에 의한 세포독성은 TUNEL 검사와 DAPI 염색시 세포사멸의 특징적인 소견들을 나타내었고, flow cytometric 분석에서도 세포사멸을 의미하는 세포주기의 변화들을 나타내었다. 봉독이 COX-2의 발현에 미치는 영향을 RT-PCR로 실험한 결과 봉독은 COX-2 mRNA의 발현을 선택적으로 억제하였다. 결론 : 본 실험의 결과 봉독은 COX-2 mRNA의 발현을 억제함으로써 골육종 세포에서 세포사멸을 유발하고 그 결과 항종양효과를 나타내는 것으로 보여진다.

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The Potential Roles of Cyclooxygenase-2 and Matrix Metalloproteinase-9 in Cytomegalovirus-Infected Atherosclerotic Aorta and Coronary Artery

  • Eom, Yong-Bin
    • Biomedical Science Letters
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    • v.9 no.3
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    • pp.123-131
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    • 2003
  • Inflammation appears to have a major role in the development of atherosclerosis. Cyclooxygenase-2 (COX-2) is involved in the inflammatory response via the generation of prostanoids that, in turn, are involved in the production of matrix metalloproteinases (MMPs). This study hypothesized that a vascular infection with cytomegalovirus (CMV) may induce a chronic inflammatory reaction and activated inflammatory cells may express inflammatory mediators such as cyclooxygenase-2 (COX-2) and matrix metalloproteinases-9 (MMP-9). To confirm the hypothesis, the immunohistochemical stains for CMV late antigen, COX-2, MMP-9, macrophage, and T-lymphocyte were performed on CMV-infected atherosclerotic lesions. The immunoreactivity for COX-2 and MMP-9 was evident in all cases of atherosclerosis along with plaques, mainly in macrophages/foamy cells, intimal and medial smooth muscle cells, and endothelial cells of the intima. Within the intima, the increased immunoreactivity for COX-2 and MMP-9 was colocalized to the area stained with CMV late antigen. Sections from control specimens showed no immunoreactivity for CMV late antigen, COX-2 and MMP-9. These data seem to support the hypothesis that CMV may participate in a pathogenetic mechanism for atherogenesis or progression of atherosclerosis.

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Inhibition of COX-2 gene expression via $NF-{\kappa}B$ pathway by Ichungwhan (이정환의 $NF-{\kappa}B$ 활성화 기전을 통한 COX-2 저해 기전)

  • Son Myung-yong;Jeong Ji-Cheon
    • The Journal of Korean Medicine
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    • v.25 no.3
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    • pp.90-98
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    • 2004
  • Objectives : The present study was undertaken to investigate the molecular mechanisms of Ichungwhan for inhibition of cyclooxygenase-2 (COX-2) gene expression via suppression of NF-κB (nuclear factor κB) using aged rats. NF-κB is the most important modulator of inflammation and NF-κB regulates the gene expression of several pro-inflammatory cytokines, such as COX-2. Methods : In the experiment, we investigated the scavenging property of Ichungwhan on reactive species (RS) including nitrogen-derived species (RNS), measured by DCF-DA (2,7-dichlorodihydrofluorexcein diacetate) / DHR 123 (dihydrorhodamine 123) assay. Protein expression levels of COX-2, NF-κB, p-ERK and p-p38 were assayed by western blot. Results : We showed that Ichungwhan inhibits RS including RNS and inhibits NF-κB activation by blocking the dissociation of inhibitory IκB-β via suppression of IKK pathway. Also, Ichungwhan inhibits COX-2 gene expression. Conclusions : These findings suggest that Ichungwhan modulates COX-2 gene expression via suppression of the NF-κB pathway.

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Screening of Cyclooxygenase-2 (COX-2) Inhibitors from Natural Products (천연물로부터 사이클로옥시게나제-2 저해제 검색)

  • Moon, Tae-Chul;Chung, Kyu-Charn;Son, Kun-Ho;Kim, Hyun-Pyo;Kang, Sam-Sik;Chang, Hyeun-Wook
    • YAKHAK HOEJI
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    • v.42 no.2
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    • pp.214-219
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    • 1998
  • Tissue distributions and association of cyclooxygenase-2 (COX-2) with inflammatory have led us to search for COX-2 selective inhibitors from natural products. Conceptually, COX- 2 selective inhibitors should be expected to retain anti-inflammatory efficacy by inhibition of PGs production while reducing or eliminating the gastric, renal and hemostatic side effects commonly associated with NSAIDs use. Thus, a logical approach to the treatment of inflammatory diseases should involve the inhibitors of COX-2. To develop new COX-2 inhibitors from natural products, two hundred crude drugs were screened by inhibiting PGD2 generation in bone marrow derived mast cells (BMMC). Among them, 6 methanol extracts of crude drugs such as, Bletillae rhizoma, Aconiti kgreani rhizoma, Belamcandae rhizoma, Nelumbinis semen, Gleniae radix, Aurantii immatri pericarpium inhibited more than 85% of BMMC COX-2 activity at a concentration 2.5${\mu}$g/ml.

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