485 resultados para Aza-Prins
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Ciências Biológicas (Microbiologia Aplicada) - IBRC
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Pós-graduação em Patologia - FMB
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O câncer de mama é o tipo de neoplasia que mostra as maiores taxas de mortalidade entre as mulheres no Brasil, provavelmente pelo fato de que, na maioria dos casos, a doença é diagnosticada em estadios avançados, dificultando o sucesso do tratamento. Dessa forma, essa doença é considerada um problema crítico de saúde pública. O câncer é uma doença que se caracteriza por sucessivas alterações genéticas e epigenéticas que causam um crescimento e multiplicação celular desordenados. A hipermetilação da região promotora de genes específicos pode levar ao silenciamento gênico, um evento importante no processo da carcinogênese. Este estudo analisou o padrão de metilação da isoforma RASSF1A do gene RASSF1 em linhagens celulares derivadas de carcinoma mamário. Esse gene está mapeado na região cromossômica 3p21.3 e, segundo dados da literatura, atua como supressor tumoral. O principal objetivo desse estudo foi investigar a presença de hipermetilação na região promotora desse gene em linhagens celulares de carcinomas mamários. Para a realização dessa análise foi empregada a metodologia de MSP (Methylation-specific Polymerase Chain Reaction) convencional e de qMSP (Methylation-Specific Polymerase Chain Reaction quantitativa em tempo real). Todas as linhagens de carcinomas mamários analisadas no estudo (MCF7, MDA-MB-231, MDA-MB-453, MDA-MB-134 e SKBR3) apresentaram um padrão hipermetilado na região promotora do gene RASSF1 corroborando com dados da literatura que relacionam a inativação desse gene à hipermetilação do promotor. Estes dados, associados aos obtidos em uma análise paralela realizada em nosso laboratório que demonstrou a re-expressão do gene RASSF1 após o tratamento com o agente desmetilante 5 aza 2’desoxicitidina, confirmam a regulação epigenética desse gene supressor tumoral
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Our previous studies have shown that low concentrations (noncytotoxics) of antineoplastic agents modulate positively the dendritic cells, favoring their in vitro maturation and improving their antigen presenting function. The effects on colorectal cancer cells (HCT-116) were also investigated and we have observed an increased immunogenicity and susceptibility to cytotoxic T cells. Thereby, this study aimed to investigate the effect of 5-fluorouracil (5-FU) an azacitidine (AZA), in minimum effective and noncytotoxic concentrations on lymphocytes of healthy donors. In this study we have analyzed the cytotoxic effect of drugs at these concentrations as well as the proliferative ability of lymphocytes. In vitro production of IL-10 and IFN-γ has been also evaluated. We have observed that low concentrations of those chemotherapeutic agents are not cytotoxic for lymphocytes. However, the minimum effective concentrations (5-FU: 0,410±0,088 e AZA: 0,757±0,233; p<0, 05) have reduced the cell number. Proliferative activity of allogeneic lymphocytes in a mixed reaction (MLR) was not affected by the treatment. The cytokine production was not affected by the treatments, either. In conclusion, low concentrations of 5-FU and AZA has no deleterious effects on human peripheral blood lymphocytes and seems to be safe for combinatory administration with DC vaccines
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Pós-graduação em Ciências Biológicas (Genética) - IBB
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The reaction of living anionic polymers with 2,2,5,5-tetramethyl-1-(3-bromopropyl)-1-aza-2,5- disilacyclopentane (1) was investigated using coupled thin layer chromatography and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. Structures of byproducts as well as the major product were determined. The anionic initiator having a protected primary amine functional group, 2,2,5,5-tetramethyl- 1-(3-lithiopropyl)-1-aza-2,5-disilacyclopentane (2), was synthesized using all-glass high-vacuum techniques, which allows the long-term stability of this initiator to be maintained. The use of 2 in the preparation of well-defined aliphatic primary amine R-end-functionalized polystyrene and poly(methyl methacrylate) was investigated. Primary amino R-end-functionalized poly(methyl methacrylate) can be obtained near-quantitatively by reacting 2 with 1,1-diphenylethylene in tetrahydrofuran at room temperature prior to polymerizing methyl methacrylate at -78 °C. When 2 is used to initiate styrene at room temperature in benzene, an additive such as N,N,N',N'- tetramethylethylenediamine is necessary to activate the polymerization. However, although the resulting polymers have narrow molecular weight distributions and well-controlled molecular weights, our mass spectra data suggest that the yield of primary amine α-end-functionalized polystyrene from these syntheses is very low. The majority of the products are methyl α-end-functionalized polystyrene.
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Although somatic cell nuclear transfer (SCNT) is a promising tool, its potential use is hampered by the high mortality rates during the development to term of cloned offspring. Abnormal epigenetic reprogramming of donor nuclei after SCNT is thought to be the main cause of this low efficiency. We hypothesized that chromatin-modifying agents (CMAs) targeting chromatin acetylation and DNA methylation could alter the chromatin configuration and turn them more amenable to reprogramming. Thus, bovine fibroblasts were treated with 5-aza-2'-deoxycytidine (AZA) plus trichostatin (TSA) or hydralazine (HH) plus valproic acid (VPA) whereas, in another trial, cloned bovine zygotes were treated with TSA. The treatment of fibroblasts with either AZA + TSA or HH + VPA increased histone acetylation, but did not affect the level of DNA methylation. However, treatment with HH + VPA decreased cellular viability and proliferation. The use of these cells as nuclear donors showed no positive effect on pre- and postimplantation development. Regarding the treatment of cloned zygotes with TSA, treated one-cell embryos showed an increase in the acetylation patterns, but not in the level of DNA methylation. Moreover, this treatment revealed no positive effect on pre- and postimplantation development. This work provides evidence the treatment of either nuclear donor cells or cloned zygotes with CMAs has no positive effect on pre- and postimplantation development of cloned cattle.
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The DOK1 gene is a putative tumour suppressor gene located on the human chromosome 2p13 which is frequently rearranged in leukaemia and other human tumours. We previously reported that the DOK1 gene can be mutated and its expression down-regulated in human malignancies. However, the mechanism underlying DOK1 silencing remains largely unknown. We show here that unscheduled silencing of DOK1 expression through aberrant hypermethylation is a frequent event in a variety of human malignancies. DOK1 was found to be silenced in nine head and neck cancer (HNC) cell lines studied and DOK1 CpG hypermethylation correlated with loss of gene expression in these cells. DOK1 expression could be restored via demethylating treatment using 5-aza-2'deoxycytidine. In addition, transduction of cancer cell lines with DOK1 impaired their proliferation, consistent with the critical role of epigenetic silencing of DOK1 in the development and maintenance of malignant cells. We further observed that DOK1 hypermethylation occurs frequently in a variety of primary human neoplasm including solid tumours (93% in HNC, 81% in lung cancer) and haematopoietic malignancy (64% in Burkitt's lymphoma). Control blood samples and exfoliated mouth epithelial cells from healthy individuals showed a low level of DOK1 methylation, suggesting that DOK1 hypermethylation is a tumour specific event. Finally, an inverse correlation was observed between the level of DOK1 gene methylation and its expression in tumour and adjacent non tumour tissues. Thus, hypermethylation of DOK1 is a potentially critical event in human carcinogenesis, and may be a potential cancer biomarker and an attractive target for epigenetic-based therapy.
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An efficient and concise synthesis of nine populene D analogues was performed using an iodine-catalyzed Prins cyclization as the key transformation. The antiproliferative activity of these new pyrans against several cancer cell lines was then investigated. Among them, an isochromene with moderate activity (mean logGI(50) = 0.91) was found. Additionally, compounds with selectivity toward the tumor cell lines NCI-ADR/RES, OVCAR-3, and HT29 were discovered.