958 resultados para COX-2 inhibitor
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Durante el proceso oncogénico se desencadenan un sinfín de alteraciones moleculares producto de las características genéticas interindividuales y la exposición a carcinógenos ambientales. Aquellas células “transformadas” son capaces de establecer nuevos vínculos con el entorno, desarrollarse e invadir nuevos tejidos. El proceso inflamatorio es un factor indiscutible en el desarrollo y la progresión tumoral. En un ambiente de inflamación crónica, el daño tisular permanente y la liberación de especies reactivas de oxígeno y nitrógeno generan daños en el material genético y en enzimas de reparación, como ocurre con p53. Además, recientemente se pudo observar que NFkB induce la expresión de citoquinas proinflamatorias (IL-6, TNFa), chemoquinas (IL-8), moléculas de adhesión (MMP), COX2 (ciclooxigenasa-2) e iNOS (Óxido Nítrico Sintasa), generándose un mecanismo de retroalimentación positiva. De estas moléculas, la expresión de COX-2 podría ser una de las promotoras del desarrollo tumoral. STAT3 pertenece a una familia de factores de transcripción latente en el citoplasma y sería indispensable para la activación de numerosas proteínas oncogénicas y en el control de la respuesta del sistema inmune. Más aún, al regular negativamente a p53 sería la responsable de desencadenar el desarrollo tumoral en ausencia de mutaciones de p53. Se realizará un estudio de casos y controles, con el objetivo de conocer qué ocurre con la expresión de COX-2 y STAT3 y evaluar la presencia de las mutaciones de p53 como moléculas clave en el inicio de la transformación tumoral. La población en estudio estará comprendida por tres grupos: pacientes con procesos inflamatorios persistentes en lesiones potencialmente malignas (casos de estudio); pacientes con procesos inflamatorios persistentes en lesiones no potencialmente malignas (control 1) y pacientes con diagnóstico de cáncer bucal (control 2). Se purificarán los ácidos nucleicos de las muestras de biopsia bucal obtenidas de manera rutinaria para confirmar el diagnóstico estomatológico y se analizarán mutaciones de p53 mediante PCR y niveles de expresión de COX2 y STAT3 por PCR semicuantitativa.
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Vascular integrins are essential regulators and mediators of physiological and pathological angiogenesis, including tumor angiogenesis. Integrins provide the physical interaction with the extracellular matrix (ECM) necessary for cell adhesion, migration and positioning, and induce signaling events essential for cell survival, proliferation and differentiation. Integrins preferentially expressed on neovascular endothelial cells, such as alphaVbeta3 and alpha5beta1, are considered as relevant targets for anti-angiogenic therapies. Anti-integrin antibodies and small molecular integrin inhibitors suppress angiogenesis and tumor progression in many animal models, and are currently tested in clinical trials as anti-angiogenic agents. Cyclooxygense-2 (COX-2), a key enzyme in the synthesis of prostaglandins and thromboxans, is highly up-regulated in tumor cells, stromal cells and angiogenic endothelial cells during tumor progression. Recent experiments have demonstrated that COX-2 promotes tumor angiogenesis. Chronic intake of nonsteroidal anti-inflammatory drugs and COX-2 inhibitors significantly reduces the risk of cancer development, and this effect may be due, at least in part, to the inhibition of tumor angiogenesis. Endothelial cell COX-2 promotes integrin alphaVbeta3-mediated endothelial cell adhesion, spreading, migration and angiogenesis through the prostaglandin-cAMP-PKA-dependent activation of the small GTPase Rac. In this article, we review the role of integrins and COX-2 in angiogenesis, their cross talk, and discuss implications relevant to their targeting to suppress tumor angiogenesis.
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Selective cyclooxygenase-2-inhibitors (COX-2) were developed as an alternative to the non-steroidal anti-inflammatory drugs (NSAID) in order to reduce their known gastrointestinal and renal toxicity. Several recent studies have shown the complex mechanism of the cyclooxygenase-2. The inhibition of the COX-2 has effects on renal hemodynamics, renal salt and water retention and may increase the thromboembolic and therefore the cardiovascular risk. The renal toxicity of the COX-2 inhibitors is similar to that of traditional NSAID. Regarding these data, COX-2 inhibitors should be prescribed with much caution to high risk patients, that is, patients with renal failure and/or cardiovascular diseases.
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Non-steroidal anti-inflammatory drugs (NSAIDs) and specific inhibitors of cyclooxygenase (COX)-2, are therapeutic groups widely used for the treatment of pain, inflammation and fever. There is growing experimental and clinical evidence indicating NSAIDs and COX-2 inhibitors also have anti-cancer activity. Epidemiological studies have shown that regular use of Aspirin and other NSAIDs reduces the risk of developing cancer, in particular of the colon. Molecular pathology studies have revealed that COX-2 is expressed by cancer cells and cells of the tumor stroma during tumor progression and in response to chemotherapy or radiotherapy. Experimental studies have demonstrated that COX-2 over expression promotes tumorigenesis, and that NSAIDs and COX-2 inhibitors suppress tumorigenesis and tumor progression. Clinical trials have shown that NSAIDs and COX-2 inhibitors suppress colon polyp formation and malignant progression in patients with familial adenomatous polyposis (FAP) syndrome. Recent advances in the understanding of the cellular and molecular mechanisms of the anti-cancer effects of NSAIDs and COX-2 inhibitors have demonstrated that these drugs target both tumor cells and the tumor vasculature. The therapeutic benefits of COX-2 inhibitors in the treatment of human cancer in combination with chemotherapy or radiotherapy are currently being tested in clinical trials. In this article we will review recent advances in the understanding of the anti-tumor mechanisms of these drugs and discuss their potential application in clinical oncology.
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Angiogenesis, the development of new blood vessels from preexisting vessels, is a key step in tumor growth, invasion and metastasis formation. Inhibition of tumor angiogenesis is considered as an attractive approach to suppress cancer progression and spreading. Adhesion receptors of the integrin family promote tumor angiogenesis by mediating cell migration, proliferation and survival of angiogenic endothelial cells. Integrins up regulated and highly expressed on neovascular endothelial cells, such as alphaVbeta3 and alpha5beta1, have been considered as relevant targets for anti-angiogenic therapies. Small molecular integrin antagonists or blocking antibodies suppress angiogenesis and tumor progression in many animal models, and some of them are currently being tested in cancer clinical trials as anti-angiogenic agents. COX-2 inhibitors exert anti-cancer effects, at least in part, by inhibiting tumor angiogenesis. We have recently shown that COX-2 inhibitors suppress endothelial cell migration and angiogenesis by preventing alphaVbeta3-mediated and cAMP/PKA-dependent activation of the small GTPases Rac and Cdc42. Here we will review the evidence for the involvement of vascular integrins in mediating angiogenesis and the role of COX-2 metabolites in modulating the cAMP/Protein Kinase A pathway and alphaVbeta3-dependent Rac activation in endothelial cells.
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Cyclooxygenase-2 (COX-2), a key enzyme in prostaglandin synthesis, is highly expressed during inflammation and cellular transformation and promotes tumor progression and angiogenesis. We have previously demonstrated that endothelial cell COX-2 is required for integrin alphaVbeta3-dependent activation of Rac-1 and Cdc-42 and for endothelial cell spreading, migration, and angiogenesis (Dormond, O., Foletti, A., Paroz, C., and Ruegg, C. (2001) Nat. Med. 7, 1041-1047; Dormond, O., Bezzi, M., Mariotti, A., and Ruegg, C. (2002) J. Biol. Chem. 277, 45838-45846). In this study, we addressed the question of whether integrin-mediated cell adhesion may regulate COX-2 expression in endothelial cells. We report that cell detachment from the substrate caused rapid degradation of COX-2 protein in human umbilical vein endothelial cells (HUVEC) independent of serum stimulation. This effect was prevented by broad inhibition of cellular proteinases and by neutralizing lysosomal activity but not by inhibiting the proteasome. HUVEC adhesion to laminin, collagen I, fibronectin, or vitronectin induced rapid COX-2 protein expression with peak levels reached within 2 h and increased COX-2-dependent prostaglandin E2 production. In contrast, nonspecific adhesion to poly-L-lysine was ineffective in inducing COX-2 expression. Furthermore, the addition of matrix proteins in solution promoted COX-2 protein expression in suspended or poly-L-lysine-attached HUVEC. Adhesion-induced COX-2 expression was strongly suppressed by pharmacological inhibition of c-Src, phosphatidylinositol 3-kinase, p38, extracellular-regulated kinase 1/2, and, to a lesser extent, protein kinase C and by the inhibition of mRNA or protein synthesis. In conclusion, this work demonstrates that integrin-mediated cell adhesion and soluble integrin ligands contribute to maintaining COX-2 steady-state levels in endothelial cells by the combined prevention of lysosomal-dependent degradation and the stimulation of mRNA synthesis involving multiple signaling pathways.
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Experimental and clinical evidence indicates that non-steroidal anti-inflammatory drugs and cyclooxygenase-2 inhibitors may have anti-cancer activities. Here we report on a patient with a metastatic melanoma of the leg who experienced a complete and sustained regression of skin metastases upon continuous single treatment with the cyclooxygenase-2 inhibitor rofecoxib. Our observations indicate that the inhibition of cyclooxygenase-2 can lead to the regression of disseminated skin melanoma metastases, even after failure of chemotherapy.
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BACKGROUND: Second line endocrine therapy has limited antitumour activity. Fulvestrant inhibits and downregulates the oestrogen receptor. The mitogen-activated protein kinase (MAPK) pathway is one of the major cascades involved in resistance to endocrine therapy. We assessed the efficacy and safety of fulvestrant with selumetinib, a MEK 1/2 inhibitor, in advanced stage breast cancer progressing after aromatase inhibitor (AI). PATIENTS AND METHODS: This randomised phase II trial included postmenopausal patients with endocrine-sensitive breast cancer. They were ramdomised to fulvestrant combined with selumetinib or placebo. The primary endpoint was disease control rate (DCR) in the experimental arm. ClinicalTrials.gov Indentifier: NCT01160718. RESULTS: Following the planned interim efficacy analysis, recruitment was interrupted after the inclusion of 46 patients (23 in each arm), because the selumetinib-fulvestrant arm did not reach the pre-specified DCR. DCR was 23% (95% confidence interval (CI) 8-45%) in the selumetinib arm and 50% (95% CI 27-75%) in the placebo arm. Median progression-free survival was 3.7months (95% CI 1.9-5.8) in the selumetinib arm and 5.6months (95% CI 3.4-13.6) in the placebo arm. Median time to treatment failure was 5.1 (95% CI 2.3-6.7) and 5.6 (95% CI 3.4-10.2) months, respectively. The most frequent treatment-related adverse events observed in the selumetinib-fulvestrant arm were skin disorders, fatigue, nausea/vomiting, oedema, diarrhoea, mouth disorders and muscle disorders. CONCLUSIONS: The addition of selumetinib to fulvestrant did not show improving patients' outcome and was poorly tolerated at the recommended monotherapy dose. Selumetinib may have deteriorated the efficacy of the endocrine therapy in some patients.
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OBJETIVO: Avaliar em pacientes com câncer de mama a expressão imunoistoquímica da cox-2 antes da quimioterapia primária com 5-fluorouracil, epirrubicina e ciclofosfamida (FEC) e a associação desta com tamanho inicial do tumor, estado linfonodal, receptores hormonais, expressão da Her-2 e com a resposta clínica e anatomopatológica. MÉTODOS: Estudo retrospectivo com 41 mulheres portadoras do diagnóstico histopatológico de carcinoma ductal de mama. Foram submetidas à quimioterapia primária com esquema FEC (5-fluorouracil, epirrubicina e ciclofosfamida) na dosagem de 500mg/m2, 75mg/m2 e 500 mg/m2, respectivamente. Os critérios de inclusão foram intervalo etário entre 30 e 70 anos, estadiamento II a IIIA, após comprovação da ausência de metástase, tumor primário de mama, único e unilateral, tipo histológico ductal invasivo e ausência de cardiopatia e gestação. Para avaliação da expressão da proteína Her 2 neuutilizaram-se anticorpos monoclonais de coelho. Para visibilizar a expressão da proteína cox-2 utilizaram-se anticorpos policlonais obtidos do soro de cabras. A avaliação da resposta clínica ao tratamento foi realizada por exame físico mensurando-se o maior eixo tumoral por paquímetro. As medidas foram realizadas à admissão e após os ciclos de quimioterapia primária. Após três sessões quimioterápicas com intervalos de 21 dias realizou-se o procedimento cirúrgico. Adotaram-se os critérios do RECIST. Após a operação foi avaliada a resposta anatomopatológica local, sendo considerada completa quando da ausência de neoplasia invasiva e do componente in situ. Na avaliação imumoistoquímica para os receptores de estrogênio utilizaram-se estrogen receptor NCL-ER6F11 e para progesterona, progesterone receptor, NCL-PGR-312 considerando positiva quando da coloração em 10% ou mais das células tumorais. RESULTADOS: A distribuição segundo estadiamento clínico UICC verificaram-se seis no estádio IIA (14,6%), 22 no estádio IIB (53,6%) e 13 estádio IIIA (31,8%). A avaliação clínica inicial do maior eixo tumoral variou de 2,5 a 15 cm e mediana de 5 cm. Foram identificadas 14 pacientes (34,1%) com estado linfonodal negativo e 27 positivo (65,9%). Observou-se que 19 (46,3%) apresentavam-se no menacme e 22 (53,6%) na menopausa. CONCLUSÃO: Houve associação da expressão da cox-2 à fatores de pior prognóstico no câncer de mama como estado linfonodal positivo, receptores hormonais negativos e expressão da Her-2.
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The objective of this study was to evaluate the effect of medroxy-progesterone acetate (MAP) with or without estradiol benzoate (EB) on follicular growth during the estrous cycle in cattle. In the first experiment, Hereford cows were synchronized with a synthetic analogue of PGF2 alpha and were treated with two different doses of MAP (250 or 500 mg) with or without EB for 7 days starting on day 8 of the estrous cycle. Follicular growth was inhibited (P<0.05) in all cows except controls and those receiving 250mg MAP without EB. Seventy-five percent of the animals (15/20) showed estrus on days 21 and 22 of the cycle rather than at MAP withdrawal, demonstrating that these treatments did not induce estrus. To determine whether the EB treatment altered endometrial sensitivity to oxytocin and thus the luteolytic cascade, multiparous pre-synchronized cows received 5 mg of EB followed 6 hours later with 50 IU of oxytocin (OT; n=9). Eight hours after EB injection, endometrial fragments were collected from the cows on days 4, 13 and 17 of the estrous cycle and COX-2 gene expression was measured by PCR. EB increased COX-2 mRNA levels only on day 17 of the estrous cycle (P<0.05). In conclusion, MAP alone or associated with EB is able to suppress bovine follicular growth. However, EB in the presence of MAP is not efficient to induce luteolysis in cows when injected on day 8 of the estrous cycle.
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Tesis (Maestría en Ciencias con Especialidad en Biología Molecular e Ingeniería Genética) UANL, 2013.
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Affiliation: Faculté de pharmacie, Université de Montréal
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Tesis (Doctor en Ciencias con Especialidad en Biotecnología) UANL, 2012.
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Thèse numérisée par la Division de la gestion de documents et des archives de l'Université de Montréal.