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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
31

Expressão de microRNAs em células Bcr-Abl1 positivas: associação com a resistência à apoptose e fisiopatologia da Leucemia Mielóide Crônica / MicroRNA expression in Bcr-Abl1 positive cells: association with apoptosis resistance and Chronic Myeloid Leukemia physiopathology

Ferreira, Aline Fernanda 25 May 2012 (has links)
A leucemia mielóide crônica (LMC) é uma doença mieloproliferativa resultante da expansão clonal da célula hematopoética precursora. Sua fisiopatologia está associada ao cromossomo (cr) Philadelphia (Ph) originado da t(9;22) e ao oncogene bcr-abl1 que codifica a proteína Bcr-Abl1 com constitutiva atividade de tirosinoquinase (TK). A expressão de Bcr-Abl determina a leucemogênese por meio da alteração da adesão das células progenitoras leucêmicas ao estroma medular e resistência à apoptose. Os inibidores de TK, o mesilato de imatinibe, dasatinibe e nilotinibe são utilizados no tratamento da LMC, entretanto, casos de resistência têm sido relacionados à presença de mutações em Bcr-Abl1, duplicação do cr Ph e superexpressão do gene bcr-abl1. A resistência ou refratariedade de alguns pacientes ao tratamento com inibidores de TK impulsiona a realização de estudos para melhor conhecimento da fisiopatologia da LMC e descrição de novos alvos terapêuticos. Nesse contexto, o presente estudo investigou a participação de microRNAs na modulação da expressão de genes que regulam a apoptose. O objetivo geral deste trabalho foi investigar o efeito de bcr-abl1 e da atividade tirosinoquinase de Bcr-abl na expressão desses miRNAs em linhagens celulares e pacientes com LMC. O RNA das linhagens celulares, de pacientes e controles foram obtidos por meio da extração com Trizol® e o cDNA sintetizado com o kit High Capacity cDNA reverse transcription. A expressão dos microRNAs e dos genes alvoss foi quantificada por PCR em tempo real utilizando o kit SYBR Green PCR Master Mix® e TaqMan Universal PCR Master Mix®. A inibição de Bcr-Abl1 na linhagem HL-60.Bcr-Abl1 tratada com o mesilato de imatinibe aumentou a expressão de miR-let-7d, miR-15a, miR-130a e miR-145 e diminuiu os níveis de miR-21. O tratamento com dasatinibe aumentou a expressão de miR-let-7e, miR-15a, miR-16, miR-21, miR-30e, miR-130a e miR-142-3p. O nilotinibe aumentou a expressão de miR-let-7e, miR-15a, miR-16, miR-130a e miR-145 e, diminuiu os níveis de miRlet- 7d e miR-21. Os resultados obtidos da análise entre os de pacientes com LMC em diferentes fases da doença mostraram elevados níveis de miR-15a, miR-130b e miR-145 em pacientes na fase crônica versus controles e baixos níveis de miR-16, miR-26a e miR-146a. Pacientes em fases avançadas versus controles apresentaram baixa expressão de miR-let-7d, miR-16, miR-142-3p, miR-145 e miR-146a. Baixos níveis de miR-let-7d, miR-15a, miR-16, miR-29c, miR-142-3p, miR-145 e miR-146a foram observados nas fases avançadas da LMC em relação a fase crônica. Os genes anti-apoptóticos a1, bcl-2, c-flip, ciap-1 e ciap-2 estavam mais elevados na fase crônica do que nos controles. A expressão do gene c-flip estava diminuída e dos genes a1, ciap-1 e mcl-1 aumentada nas fases avançadas em relação aos controles e a fase crônica. Pacientes com LMC resistentes ao MI apresentaram menores níveis de miR-26a, miR-29c, miR-130b, miR-146a e dos genes anti-apoptóticos ciap-1 e mcl-1. Os dados obtidos sugerem que a TK Bcr-Abl modula a expressão de microRNAs que possuem como alvos genes que regulam a apoptose celular / Chronic myeloid leukemia (CML) is a myeloproliferative disease resulting from clonal expasion of hematopoietic precursor cells. Its physiopathology is associated to Philadelphia (Ph) chromosome (cr) originated from the t(9;22) and bcr-abl1 oncogene that encodes the Bcr-Abl protein with constitutive tyrosine kinase activity (TK). The Bcr-Abl1 expression determines leukemogenesis by altering the leukemic progenitor cells´ adhesion by bone marrow stroma and apoptosis resistance. TK inhibitors imatinib mesylate, dasatinib and nilotinib are used to treat CML, however, cases of resistance have been linked to mutation in Bcr-Abl1, duplication of the cr Ph and overexpression of the bcr-abl1. The resistance or refractoriness of some patients to treatment with TK inhibitors drives the studies to better understand the CML physiopathology and description of new therapeutic targets. In this context, this study investigated the participation of microRNAs in modulating expression of the genes that regulate apoptosis. The aim of this study was to investigate the effect of Bcr- Abl1 and its kinase activity in the expression of miRNAs in cell lines and CML patients. The RNA from cell lines, patients and controls were obtained by extraction with Trizol® and cDNA was synthesized with the kit High Capacity cDNA reverse transcription. The expression of miRNAs and target genes was quantified by real time PCR using SYBR Green PCR Master Mix® kit and TaqMan Universal PCR Master Mix®. The Bcr-Abl1 inhibition in the cell line HL-60.Bcr-Abl1 treated with imatinib mesylate increased the expression of miR-let- 7d, miR-15a, miR-130a and miR-145 and decreased miR-21 levels. Treatment with dasatinib increased the expression of miR-let-7e, miR-15a, miR-16, miR-21, miR-30e, miR-130a and miR- 142-3p. Nilotinib increased the expression of miR-let-7e, miR-15a, miR-16, miR-130a and miR- 145 and, decreased miR-let-7d and miR-21 levels. The results of the analysis among patients with CML in different stages of disease showed high levels of miR-15a, miR-130b and miR-145 in chronic phase versus controls and low levels of miR-16, miR-26a and miR-146a. Patients in advanced phases versus controls showed low expression of miR-let-7d, miR-16, miR-142-3p, miR-145 and miR-146a. Low levels of miR-let-7d, miR-15a, miR-16, miR-29c, miR-142-3p, miR-145 and miR-146a were observed in CML advanced phases when compared with chronic phase. The antiapoptotic genes a1, bcl-2, c-flip, ciap-1 and ciap-2 were higher in chronic phase than in controls. The c-flip expression was decreased and a1, ciap-1 and mcl-1 expression was increased in advanced phases when compared to controls and chronic phase. CML patients resistant to imatinib mesylate presented low levels of miR-26a, miR-29c, miR-130b, miR-146a and ciap-1 and mcl-1 antiapoptotic genes. The data obtained suggest that Bcr-Abl1 TK modulates the miRNA expression which has target genes involved in the apoptosis´ regulation.
32

Efeitos dos inibidores de tirosina-quinase sobre a maquinaria apoptótica na leucemia mielóide crônica / The effect of tyrosine-kinase inhibitors on the apoptosis machinery in chronic myeloid leukemia

Ferreira, Aline Fernanda 20 December 2007 (has links)
A leucemia mielóide crônica (LMC) é uma doença mieloproliferativa, resultante da expansão clonal da célula-tronco hematopoética pluripotente. A fisiopatologia da LMC está associada a uma translocação entre os braços longos dos cromossomos 9 e 22, o que promove o aparecimento do neogene bcr-abl, cujo gene codifica uma proteína denominada Bcr-Abl. A oncoproteína Bcr-Abl possui atividade tirosina-quinase constitutiva que é a responsável pelo fenótipo maligno da célula, incluindo resistência à apoptose. O tratamento da LMC pode ser realizado com hidroxiuréia, IFN- associado à citarabina, inibidores de TK (mesilato de imatinibe e dasatinibe) e transplante de medula óssea. O tratamento de escolha para pacientes com LMC na fase crônica é o inibidor de tirosina-quinase mesilato de imatinibe e para os refratários utiliza-se o dasatinibe. Apesar do conhecimento acerca do mecanismo de ação dos inibidores de TK, pouco se sabe sobre seu efeito na maquinaria apoptótica. Sendo assim, no presente trabalho foi detectada a expressão dos genes e proteínas anti- (A1, Bcl-2, Bcl-Xl, Bcl-W, C-Flip, Ciap-1, Ciap-2 e Mcl-1) e pró-apoptóticos (Bad, Bak, Bax, Bcl-Xs, Bid, Bik, Bimel, Bmf, Bok, Fas, Fasl, Noxa e Puma) em células mononucleares de 32 indivíduos saudáveis e 26 pacientes com LMC antes e após 12 meses da terapia com mesilato de imatinibe e dasatinibe. Dentre os 26 pacientes avaliados, 13 eram do sexo feminino e 13 do sexo masculino, três eram negros, um amarelo e 22 brancos, com idade média de 48 anos (faixa etária de 25 a 77 anos). O grupo controle foi composto por 32 indivíduos, 16 do sexo feminino e 16 do sexo masculino, 26 eram brancos, quatro negros e dois amarelos, com idade média de 45 anos (idade de 23 a 77 anos). O isolamento das células mononucleares foi realizado pelo método de Ficoll-Hypaque, a determinação da expressão gênica por PCR em tempo real e a protéica por western-blot. Os resultados foram expressos em unidade relativa de expressão (U.R.E.), comparados entre os diferentes grupos (controle e pacientes pré- e pós-tratamento), associados à resposta aos medicamentos e correlacionados ao índice de prognóstico de SOKAL. Na comparação dos dados de expressão gênica entre pacientes e controles, verificou-se que os pacientes apresentaram maior expressão dos genes bcl-xL, c-flip, mcl-1 e fas e níveis reduzidos de bik. O mesilato de imatinibe modulou significativamente a transcrição dos genes bcl-xL, bok, mcl-1 e noxa, enquanto que o dasatinibe agiu sobre a expressão dos genes a1, bmf, c-flip, ciap-1, ciap-2 e mcl-1. Os pacientes refratários ao mesilato de imatinibe apresentaram níveis elevados de expressão de a1 e c-flip e reduzida expressão de bcl-2, ciap-2, bak, bax, bid e fasl em relação aos pacientes em remissão. A expressão protéica refletiu os dados da quantificação do RNAm dos genes. Os dados da presente investigação indicam que as células mononucleares dos pacientes com LMC apresentam desregulação do processo de apoptose celular. Essa alteração pode ser parcialmente associada ao fenótipo de resistência das células leucêmicas Bcr-Abl+ à apoptose e ausência de resposta aos inibidores de TK. Os dados revelam ainda que os inibidores de tirosina-quinase interferem na transcrição e tradução das moléculas envolvidas na regulação do processo de apoptose. / Chronic myeloid leukemia (CML) is a myeloproliferative disease resultant of a clonal expansion of pluripotent hematopoietic stem cells. The CML physiopathology is associated with a translocation between chromosomes 9 and 22 long arms, promoting the formation of a bcr-abl neogene, which codifies the Bcr-Abl protein. The Bcr-Abl oncoprotein presents tyrosine-kinase activity that is responsible for the malign phenotype which includes apoptosis resistance. CML treatment may be performed with hydroxyurea, IFN- plus cytarabine, tyrosine-kinase inhibitors (imatinib mesylate and dasatinib) and bone marrow transplantation. The standard treatment for CML patients in chronic phase is the tyrosine-kinase inhibitor imatinib mesylate (IM) and for IM-refractory patients dasatinibe is employed. Despite of the knowledge related to the mechanism of action of tyrosine-kinase inhibitors, little is known about its effects on the apoptosis machinery. In this work we characterized both the mRNA and protein patterns of expression of the anti- (A1, Bcl-2, Bcl-Xl, Bcl-W, C-Flip, Ciap-1, Ciap-2 e Mcl-1) and pro-apoptotic (Bad, Bak, Bax, Bcl-Xs, Bid, Bik, Bimel, Bmf, Bok, Fas, Fasl, Noxa e Puma) regulators in peripheral blood mononuclear cells (PBMC) from 32 healthy individual and 26 CML patients before and after 12 months of imatinib mesylate and dasatinibe therapy. Thirteen patients were female and thirteen were male, three were black, one was japanese and 22 were white, the mean age was 48 years (varying from 25 to 77 years). The control group was composed of 32 individuals, 16 were female and 16 were male, 26 were white, four black and two japanese, the mean age was 45 years (varying from 23 to 77 years). PBMC isolation was performed by Ficoll-Hypaque, gene expression was assessed by real time PCR and protein expression was carried out by western-blot methodology. Results were given by the relative expression, after comparison between the different groups (control and patients before and after treatment), associated with drug response and related to Sokal index. The comparison of gene expression profiles between patients and controls showed that CML patients present increased levels of bcl-xL, c-flip, mcl-1 and fas expression and reduced levels of bik gene expression. The imatinib mesylate significantly modulated the transcription of bcl-xL, bok, mcl-1 and noxa, whereas dasatinib affected the expression of a1, bmf, c-flip, ciap-1, ciap-2 and mcl-1. MI-refractory patients present higher levels of a1 and c-flip and lower levels of bcl-2, ciap-2, bak, bax, bid and fasl when compared to patients who achieved complete cytogenetic response. Overall, the patterns of protein expression agree with the profiles of mRNA expression. Taken together, the results described in this investigation indicate that PBMC from CML patients present deregulation in cell death pathways. These alterations could partly account for the apoptosis resistance phenotype observed in Bcr-Abl+ leukemic cells and for lack of response to tyrosine kinase inhibitors. Furthermore, our data also reveal that tyrosine kinase inhibitors interfere in the transcription and translation of molecules that regulate the apoptosis process.
33

Expressão de DIDO em células Bcr-Abl+: associação com resistência a apoptose e fisiopatologia da leucemia mielóide crônica / DIDO gene expression in Bcr-Abl+ cells: association to apoptosis resistance and pathophysiology of chronic myeloid leukemia

Coelho, Maria Gabriela Berzoti 06 August 2015 (has links)
Na leucemia mielóide crônica (LMC) a proteína Bcr-Abl possui atividade tirosina-quinase constitutivamente ativada, induzindo a mieloproliferação e a resistência das células à apoptose. A maioria dos pacientes na fase crônica da LMC tratados com inibidores de tirosina-quinase (TKIs), como o mesilato de imatinibe, apresenta remissão citogenética completa da doença, mas uma parcela desses pacientes tem se mostrado resistente à terapia. A fisiopatologia da LMC e os mecanismos celulares e moleculares envolvidos na resistência à terapia com TKIs são diversos e precisam ser melhor estudados. Nesse contexto, o objetivo do presente estudo foi quantificar os níveis de expressão do gene DIDO, incluindo suas diferentes isoformas (DIDO 1, 2 e 3) e promotores (DIDO PP e PD) em controles e em pacientes com LMC nas diferentes fases da doença, tratados ou não com TKIs, bem como em linhagens celulares BCR-ABL1+ sensíveis (S) e resistentes (R) ao mesilato de imatinibe (MI). A literatura relata que DIDO 1 participa do processo de apoptose e que alterações na expressão de DIDO 2 e DIDO 3 podem estar associadas com o desenvolvimento de neoplasias mielóides. Dessa forma, foram estudados 60 pacientes com LMC e 57 controles, assim como as linhagens celulares HL-60, HL-60.Bcr-Abl+, LAMA 84 S, LAMA 84 R, KCL 22 S e KCL 22 R. Foram separadas as células mononucleares de sangue periférico dos pacientes e controles, com posterior extração de RNA e síntese de cDNA, que foi então empregado nas reações de PCR em tempo real (qPCR) para quantificação das expressões gênicas de DIDO 1, 2, 3, PP, PD e ORF. As linhagens celulares foram tratadas por 4h com TKIs e então a expressão das diferentes isoformas de DIDO foi também quantificada por qPCR. A avaliação da expressão proteica de Bcr-Abl, c-Abl e proteínas fosforiladas nas linhagens foi realizada por Western-blotting. A expressão de DIDO 1 e 2 foi maior nos pacientes nas fases avançadas da LMC e nos pacientes na fase crônica da doença tratados com TKIs (mesilato de imatinibe ou dasatinibe) do que nos controles. Os pacientes na fase crônica da LMC tratados com MI expressaram mais DIDO 1 e 3 do que os pacientes na fase crônica sem tratamento. Houve uma correlação positiva entre expressão de BCR-ABL1 e de DIDO 2 e entre índice de Sokal dos pacientes e expressão de DIDO 2. Na linhagem HL60.Bcr-Abl+, a expressão de proteínas fosforiladas reduziu após tratamento de 4h com TKIs, mas não houve alteração na expressão gênica de DIDO. Nas linhagens celulares S e R, houve aumento da expressão de DIDO 1 após o tratamento de 4h com MI. Conclui-se, portanto, que as diferentes isoformas de DIDO parecem exercer funções distintas na leucemia mielóide crônica; que o tratamento de pacientes e linhagens BCR-ABL1 positivas com inibidores de tirosina-quinase aumenta expressão de DIDO 1; e que a expressão de DIDO 2 correlaciona-se positivamente à expressão de BCR-ABL1 e ao índice de Sokal dos pacientes. / In chronic myeloid leukemia (CML) the Bcr-Abl protein has constitutively activated tyrosine kinase activity, that induces to myeloproliferation and apoptosis resistance of the cells. Most patients in chronic phase of CML treated with the tyrosine kinase inhibitor (TKI) imatinib mesylate have a complete cytogenetic remission, but a portion of these patients have been shown to be resistant to therapy. The pathophysiology of CML and the cellular and molecular mechanisms involved in resistance to TKIs therapy are diverse and require further study. In this sense, the aim of this study was to quantify the expression levels of the DIDO gene, including its isoforms (DIDO 1, 2 and 3) and promoters (DIDO PP and PD) in controls and in patients with CML in different phases of the disease treated or not treated with TKIs, as well as in cell lines BCR-ABL1+ sensitive (S) and resistant (R) to imatinib mesylate (IM). The literature reports that DIDO 1 is involved in apoptosis process and that alterations of DIDO 2 and DIDO 3 expression may be associated with the development of myeloid neoplasms. Thus, 60 CML patients, 57 control individuals and the cell lines HL-60, HL-60.Bcr-Abl+, LAMA 84 S, LAMA 84 R, KCL 22 S and KCL 22 R were studied. Peripheral blood mononuclear cells of patients and controls were isolated and RNA extraction and cDNA synthesis were performed. The cDNA samples were used in Real-Time PCR reactions (qPCR) to quantify the DIDO 1, 2, 3, PP, PD and ORF gene expression. The cell lines were treated during 4h with TKIs and then the expression of DIDO different isoforms was also quantified by qPCR. The assessment of protein expression of Bcr-Abl, c-Abl and phosphorylated proteins in this cell lines was performed by Western blotting. The DIDO 1 and 2 expression was higher in advanced phases patients and in chronic phase patients CML treated with TKIs (imatinib mesylate and dasatinib) than in controls. Chronic phase CML Patients treated with IM expressed more DIDO 1 and 3 than chronic phase untreated patients. There was a positive correlation between BCR-ABL1 expression and DIDO 2 expression and between Sokal score prognostic and DIDO 2 expression. In HL60.Bcr-Abl+ cells the expression of phosphorylated proteins was lower after treatment during 4h with TKIs, but there was no change in DIDO gene expression. There were an increase of DIDO 1 expression in all S and R cell lines after treatment during 4h with IM. Therefore we conclude that the DIDO different isoforms may have different functions in chronic myeloid leukemia; the treatment of patients and BCR-ABL1+ cell lines with TKIs increases DIDO 1 expression; and that the DIDO 2 expression is positively correlated to the BCR-ABL1 expression and Sokal score prognostic of CML patients.
34

Targeting epithelial-to-mesenchymal transition (EMT) in feline oral squamous cell carcinoma (FOSCC)

Hamilton, Julie Anne January 2018 (has links)
Squamous cell carcinoma of the head and neck (HNSCC) is an extremely common and devastating disease with a bleak prognosis. Despite intensive research, survival rates have not improved over the past 30 years principally due to untreatable recurrent/metastasising disease. Feline oral squamous cell carcinoma (FOSCC) is an equally common disease in cats with an even less favourable prognosis than humans. Human and feline squamous cell carcinomas share similar etiopathogenesis, molecular markers, tumour biology and treatment thus making FOSCC an excellent model for HNSCC. Epithelial to mesenchymal transition (EMT), under the direction microRNAs (miRNAs/mirs) could be a key driver in oncogenic transformation and chemoresistance. The aim of this study was to induce resistance to characterise the EMT/resistance phenotype and to investigate whether common miRNA-mediated pathways are present in HNSCC and FOSCC that drive this phenomenon. We used epidermal growth factor (EGFR)-inhibitor gefitinib to induce resistance in HNSCC and FOSCC and investigated the associated EMT-related molecular changes. In vitro and in vivo invasive and migratory properties of both species were explored to determine whether resistance and/or EMT status conferred a functional advantage. We determined the miRNA expression pattern during acquisition of resistance to gefitinib in both species by next generation sequencing and screened candidate miRNAs as potential therapeutics. We found that gefitinib-resistance produced a previously unrecognised biphasic response that consisted of two distinct phenotypes, a highly invasive mesenchymal phenotype during early resistance, and a more epithelial phenotype associated with established resistance. The biphasic nature of this transition may prove critical in establishing effective therapeutic targets and the timing of treatment to overcome resistance or in preventing local invasion or metastatic spread of squamous cell carcinoma. We found that the major anti-apoptotic PI3K/AKT pathway was activated in transitioning and resistant cells of both species as demonstrated upregulation of AKT, pAKT and c-FLIP together with inactivation of PTEN by phosphorylation. This indicates that avoidance of apoptosis may be a major pathway in resistance that could be targeted therapeutically. We showed that three miRNAs were differentially expressed in both gefitinib-resistant human and feline cell lines: miR-107 was downregulated, and miR-551b and miR-574 were upregulated. These microRNAs provide potential therapeutic targets in the fight against drug resistance in head and neck cancer although much further research needs to be conducted to elucidate the complex network of interactions that may be affected by targeting these powerful regulatory molecules.
35

Efeitos dos inibidores de tirosina-quinase sobre a maquinaria apoptótica na leucemia mielóide crônica / The effect of tyrosine-kinase inhibitors on the apoptosis machinery in chronic myeloid leukemia

Aline Fernanda Ferreira 20 December 2007 (has links)
A leucemia mielóide crônica (LMC) é uma doença mieloproliferativa, resultante da expansão clonal da célula-tronco hematopoética pluripotente. A fisiopatologia da LMC está associada a uma translocação entre os braços longos dos cromossomos 9 e 22, o que promove o aparecimento do neogene bcr-abl, cujo gene codifica uma proteína denominada Bcr-Abl. A oncoproteína Bcr-Abl possui atividade tirosina-quinase constitutiva que é a responsável pelo fenótipo maligno da célula, incluindo resistência à apoptose. O tratamento da LMC pode ser realizado com hidroxiuréia, IFN- associado à citarabina, inibidores de TK (mesilato de imatinibe e dasatinibe) e transplante de medula óssea. O tratamento de escolha para pacientes com LMC na fase crônica é o inibidor de tirosina-quinase mesilato de imatinibe e para os refratários utiliza-se o dasatinibe. Apesar do conhecimento acerca do mecanismo de ação dos inibidores de TK, pouco se sabe sobre seu efeito na maquinaria apoptótica. Sendo assim, no presente trabalho foi detectada a expressão dos genes e proteínas anti- (A1, Bcl-2, Bcl-Xl, Bcl-W, C-Flip, Ciap-1, Ciap-2 e Mcl-1) e pró-apoptóticos (Bad, Bak, Bax, Bcl-Xs, Bid, Bik, Bimel, Bmf, Bok, Fas, Fasl, Noxa e Puma) em células mononucleares de 32 indivíduos saudáveis e 26 pacientes com LMC antes e após 12 meses da terapia com mesilato de imatinibe e dasatinibe. Dentre os 26 pacientes avaliados, 13 eram do sexo feminino e 13 do sexo masculino, três eram negros, um amarelo e 22 brancos, com idade média de 48 anos (faixa etária de 25 a 77 anos). O grupo controle foi composto por 32 indivíduos, 16 do sexo feminino e 16 do sexo masculino, 26 eram brancos, quatro negros e dois amarelos, com idade média de 45 anos (idade de 23 a 77 anos). O isolamento das células mononucleares foi realizado pelo método de Ficoll-Hypaque, a determinação da expressão gênica por PCR em tempo real e a protéica por western-blot. Os resultados foram expressos em unidade relativa de expressão (U.R.E.), comparados entre os diferentes grupos (controle e pacientes pré- e pós-tratamento), associados à resposta aos medicamentos e correlacionados ao índice de prognóstico de SOKAL. Na comparação dos dados de expressão gênica entre pacientes e controles, verificou-se que os pacientes apresentaram maior expressão dos genes bcl-xL, c-flip, mcl-1 e fas e níveis reduzidos de bik. O mesilato de imatinibe modulou significativamente a transcrição dos genes bcl-xL, bok, mcl-1 e noxa, enquanto que o dasatinibe agiu sobre a expressão dos genes a1, bmf, c-flip, ciap-1, ciap-2 e mcl-1. Os pacientes refratários ao mesilato de imatinibe apresentaram níveis elevados de expressão de a1 e c-flip e reduzida expressão de bcl-2, ciap-2, bak, bax, bid e fasl em relação aos pacientes em remissão. A expressão protéica refletiu os dados da quantificação do RNAm dos genes. Os dados da presente investigação indicam que as células mononucleares dos pacientes com LMC apresentam desregulação do processo de apoptose celular. Essa alteração pode ser parcialmente associada ao fenótipo de resistência das células leucêmicas Bcr-Abl+ à apoptose e ausência de resposta aos inibidores de TK. Os dados revelam ainda que os inibidores de tirosina-quinase interferem na transcrição e tradução das moléculas envolvidas na regulação do processo de apoptose. / Chronic myeloid leukemia (CML) is a myeloproliferative disease resultant of a clonal expansion of pluripotent hematopoietic stem cells. The CML physiopathology is associated with a translocation between chromosomes 9 and 22 long arms, promoting the formation of a bcr-abl neogene, which codifies the Bcr-Abl protein. The Bcr-Abl oncoprotein presents tyrosine-kinase activity that is responsible for the malign phenotype which includes apoptosis resistance. CML treatment may be performed with hydroxyurea, IFN- plus cytarabine, tyrosine-kinase inhibitors (imatinib mesylate and dasatinib) and bone marrow transplantation. The standard treatment for CML patients in chronic phase is the tyrosine-kinase inhibitor imatinib mesylate (IM) and for IM-refractory patients dasatinibe is employed. Despite of the knowledge related to the mechanism of action of tyrosine-kinase inhibitors, little is known about its effects on the apoptosis machinery. In this work we characterized both the mRNA and protein patterns of expression of the anti- (A1, Bcl-2, Bcl-Xl, Bcl-W, C-Flip, Ciap-1, Ciap-2 e Mcl-1) and pro-apoptotic (Bad, Bak, Bax, Bcl-Xs, Bid, Bik, Bimel, Bmf, Bok, Fas, Fasl, Noxa e Puma) regulators in peripheral blood mononuclear cells (PBMC) from 32 healthy individual and 26 CML patients before and after 12 months of imatinib mesylate and dasatinibe therapy. Thirteen patients were female and thirteen were male, three were black, one was japanese and 22 were white, the mean age was 48 years (varying from 25 to 77 years). The control group was composed of 32 individuals, 16 were female and 16 were male, 26 were white, four black and two japanese, the mean age was 45 years (varying from 23 to 77 years). PBMC isolation was performed by Ficoll-Hypaque, gene expression was assessed by real time PCR and protein expression was carried out by western-blot methodology. Results were given by the relative expression, after comparison between the different groups (control and patients before and after treatment), associated with drug response and related to Sokal index. The comparison of gene expression profiles between patients and controls showed that CML patients present increased levels of bcl-xL, c-flip, mcl-1 and fas expression and reduced levels of bik gene expression. The imatinib mesylate significantly modulated the transcription of bcl-xL, bok, mcl-1 and noxa, whereas dasatinib affected the expression of a1, bmf, c-flip, ciap-1, ciap-2 and mcl-1. MI-refractory patients present higher levels of a1 and c-flip and lower levels of bcl-2, ciap-2, bak, bax, bid and fasl when compared to patients who achieved complete cytogenetic response. Overall, the patterns of protein expression agree with the profiles of mRNA expression. Taken together, the results described in this investigation indicate that PBMC from CML patients present deregulation in cell death pathways. These alterations could partly account for the apoptosis resistance phenotype observed in Bcr-Abl+ leukemic cells and for lack of response to tyrosine kinase inhibitors. Furthermore, our data also reveal that tyrosine kinase inhibitors interfere in the transcription and translation of molecules that regulate the apoptosis process.
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Expressão de DIDO em células Bcr-Abl+: associação com resistência a apoptose e fisiopatologia da leucemia mielóide crônica / DIDO gene expression in Bcr-Abl+ cells: association to apoptosis resistance and pathophysiology of chronic myeloid leukemia

Maria Gabriela Berzoti Coelho 06 August 2015 (has links)
Na leucemia mielóide crônica (LMC) a proteína Bcr-Abl possui atividade tirosina-quinase constitutivamente ativada, induzindo a mieloproliferação e a resistência das células à apoptose. A maioria dos pacientes na fase crônica da LMC tratados com inibidores de tirosina-quinase (TKIs), como o mesilato de imatinibe, apresenta remissão citogenética completa da doença, mas uma parcela desses pacientes tem se mostrado resistente à terapia. A fisiopatologia da LMC e os mecanismos celulares e moleculares envolvidos na resistência à terapia com TKIs são diversos e precisam ser melhor estudados. Nesse contexto, o objetivo do presente estudo foi quantificar os níveis de expressão do gene DIDO, incluindo suas diferentes isoformas (DIDO 1, 2 e 3) e promotores (DIDO PP e PD) em controles e em pacientes com LMC nas diferentes fases da doença, tratados ou não com TKIs, bem como em linhagens celulares BCR-ABL1+ sensíveis (S) e resistentes (R) ao mesilato de imatinibe (MI). A literatura relata que DIDO 1 participa do processo de apoptose e que alterações na expressão de DIDO 2 e DIDO 3 podem estar associadas com o desenvolvimento de neoplasias mielóides. Dessa forma, foram estudados 60 pacientes com LMC e 57 controles, assim como as linhagens celulares HL-60, HL-60.Bcr-Abl+, LAMA 84 S, LAMA 84 R, KCL 22 S e KCL 22 R. Foram separadas as células mononucleares de sangue periférico dos pacientes e controles, com posterior extração de RNA e síntese de cDNA, que foi então empregado nas reações de PCR em tempo real (qPCR) para quantificação das expressões gênicas de DIDO 1, 2, 3, PP, PD e ORF. As linhagens celulares foram tratadas por 4h com TKIs e então a expressão das diferentes isoformas de DIDO foi também quantificada por qPCR. A avaliação da expressão proteica de Bcr-Abl, c-Abl e proteínas fosforiladas nas linhagens foi realizada por Western-blotting. A expressão de DIDO 1 e 2 foi maior nos pacientes nas fases avançadas da LMC e nos pacientes na fase crônica da doença tratados com TKIs (mesilato de imatinibe ou dasatinibe) do que nos controles. Os pacientes na fase crônica da LMC tratados com MI expressaram mais DIDO 1 e 3 do que os pacientes na fase crônica sem tratamento. Houve uma correlação positiva entre expressão de BCR-ABL1 e de DIDO 2 e entre índice de Sokal dos pacientes e expressão de DIDO 2. Na linhagem HL60.Bcr-Abl+, a expressão de proteínas fosforiladas reduziu após tratamento de 4h com TKIs, mas não houve alteração na expressão gênica de DIDO. Nas linhagens celulares S e R, houve aumento da expressão de DIDO 1 após o tratamento de 4h com MI. Conclui-se, portanto, que as diferentes isoformas de DIDO parecem exercer funções distintas na leucemia mielóide crônica; que o tratamento de pacientes e linhagens BCR-ABL1 positivas com inibidores de tirosina-quinase aumenta expressão de DIDO 1; e que a expressão de DIDO 2 correlaciona-se positivamente à expressão de BCR-ABL1 e ao índice de Sokal dos pacientes. / In chronic myeloid leukemia (CML) the Bcr-Abl protein has constitutively activated tyrosine kinase activity, that induces to myeloproliferation and apoptosis resistance of the cells. Most patients in chronic phase of CML treated with the tyrosine kinase inhibitor (TKI) imatinib mesylate have a complete cytogenetic remission, but a portion of these patients have been shown to be resistant to therapy. The pathophysiology of CML and the cellular and molecular mechanisms involved in resistance to TKIs therapy are diverse and require further study. In this sense, the aim of this study was to quantify the expression levels of the DIDO gene, including its isoforms (DIDO 1, 2 and 3) and promoters (DIDO PP and PD) in controls and in patients with CML in different phases of the disease treated or not treated with TKIs, as well as in cell lines BCR-ABL1+ sensitive (S) and resistant (R) to imatinib mesylate (IM). The literature reports that DIDO 1 is involved in apoptosis process and that alterations of DIDO 2 and DIDO 3 expression may be associated with the development of myeloid neoplasms. Thus, 60 CML patients, 57 control individuals and the cell lines HL-60, HL-60.Bcr-Abl+, LAMA 84 S, LAMA 84 R, KCL 22 S and KCL 22 R were studied. Peripheral blood mononuclear cells of patients and controls were isolated and RNA extraction and cDNA synthesis were performed. The cDNA samples were used in Real-Time PCR reactions (qPCR) to quantify the DIDO 1, 2, 3, PP, PD and ORF gene expression. The cell lines were treated during 4h with TKIs and then the expression of DIDO different isoforms was also quantified by qPCR. The assessment of protein expression of Bcr-Abl, c-Abl and phosphorylated proteins in this cell lines was performed by Western blotting. The DIDO 1 and 2 expression was higher in advanced phases patients and in chronic phase patients CML treated with TKIs (imatinib mesylate and dasatinib) than in controls. Chronic phase CML Patients treated with IM expressed more DIDO 1 and 3 than chronic phase untreated patients. There was a positive correlation between BCR-ABL1 expression and DIDO 2 expression and between Sokal score prognostic and DIDO 2 expression. In HL60.Bcr-Abl+ cells the expression of phosphorylated proteins was lower after treatment during 4h with TKIs, but there was no change in DIDO gene expression. There were an increase of DIDO 1 expression in all S and R cell lines after treatment during 4h with IM. Therefore we conclude that the DIDO different isoforms may have different functions in chronic myeloid leukemia; the treatment of patients and BCR-ABL1+ cell lines with TKIs increases DIDO 1 expression; and that the DIDO 2 expression is positively correlated to the BCR-ABL1 expression and Sokal score prognostic of CML patients.
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A synthesis and biological screening of predicted inhibitors of Tyrosine Kinases, e.g. KDR, designed in silico / Synthèse et screening biologique d'inhibiteurs de tyrosine kinase, KDR, conçus in silico

Šramel, Peter 30 November 2017 (has links)
Les protéines kinases représentent le groupe d'enzymes qui servent d'intermédiaire pour la phosphorylation de protéines - le transfert d'un groupe phosphate de l'adénosine triphosphate(ATP) sur des chaînes latérales correspondantes de tyrosine, de serine ou de thréonine des acides aminées. La phosphorylation de protéines est un des outils les plus importants pour la régulation de l'activité cellulaire. La « signalisation » cellulaire par le récepteur de tyrosine kinase VEGFR2 (KDR) appartient aux réactions biochimiques clés influençant la croissance de tumeurs. L'inhibition thérapeutique de cette réaction à l'aide des composés de faible poids moléculaire spécifiques est devenue une stratégie utile dans le cadre des thérapies anticancéreuses. Ce travail a amené à la découverte de 16 substances biologiquement actives sur la base N,5-diaryloxazol-2-amine (IC50, VEGFR2 TK). D'excellents résultats ont été atteints notamment dans le cas des substances 189, 191, 211, 214, 220, 221, 223 et 4 qui montrent une activité inhibitrice inférieure à 500 nM. / Protein kinases represent a group of enzymes responsible for phosphorylation - transfer of aphosphate group from adenosine triphosphate (ATP) to tyrosine or serine/threonine residues. Protein phosphorylation is one of the most important tools regulating a cell activity. A cell "signalization" through an endothelial receptor tyrosine kinase VEGFR2 TK (KDR) is the important pathway influencing growth of a tumor. Small-molecule inhibitors of VEGFR2 TK (VEGFR2 TKls) have become an important tool for the treatment of various types of cancer. This dissertation thesis resulted in a discovery of 16 biologically active N,5-diaryloxazol-2-amines (IC50, VEGFR2 TK). Very good results were achieved especially with compounds 189, 191, 211, 214, 220, 221, 223 and 4 exhibiting the activity under 500 nM.
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La surexpression et l'activation des récepteurs aux facteurs de croissance par des régulations autocrines ou paracrines à la neurotensine, conférant aux cellules une sensibilité aux inhibiteurs de tyrosine kinase / The overexpression and activation of growth factor receptor by neurotensin autocrine and paracrine regulation, confer on cells a sensitivity to tyrosine kinase inhibitors

Wu, Zherui 03 June 2015 (has links)
Les cancers hépatiques, bronchiques et mammaires sont responsables de 35 % de décès par le cancer en 2012. Les études sur des facteurs contribuant à la progression tumorale devraient approfondir nos connaissances sur la biologie de ces cancers et ouvrir de nouvelles voies pour le développement de stratégies thérapeutiques. Dans ce contexte, nous avons étudié l'impact de la neurotensine (NTS) et de son récepteur NTSR1 sur la progression tumorale et son rôle potentiel pour de futures applications cliniques. J’ai initié ce projet dans le carcinome hépatocellulaire (CHC) et participé aux projets dans le cancer du poumon et du sein qui avaient été initiés par les anciens doctorants de l’équipe. Dans le CHC, sur une série de 73 patients, la NTS et le NTSR1 ont été détectés dans respectivement 56 % et 64 % des cas. En utilisant deux modèles cellulaires nous avons montré que l’expression du NTSR1 est une cible de la voie wnt/β-caténine. Le couple NTS/NTSR1 augmente l’expression et l’activation de l’EGFR et favorise la croissance des tumeurs expérimentales et la capacité de migration et d’invasion des cellules. La régulation entre le complexe NTS/NTSR1 et les récepteurs des HERs a également été observée dans les cancers bronchiques et mammaires, la NTS induit l'expression et l'activation constitutive des récepteurs EGFR, HER2 et HER3, par l'intermédiaire de l'activation des métalloprotéinases qui libèrent les ligands “EGF-like” spécifiques d'EGFR et d’HER3. L’activation constitutive des HER par le couple NTS/NTSR1 mime les mutations activatrices des HERs, ainsi la réponse des tumeurs aux inhibiteurs de tyrosine kinase est potentialisée dans le cancer du poumon, du sein et du foie. / In 2012, Liver, lung and breast cancers represented 30% of new cancer cases, and 35% of cancer related deaths. Identification of factors contributing to tumor progression can strengthen our understanding of the cancer biology and suggest new therapeutic strategies. In this context, we studied the impact of neurotensin (NTS) and its receptor NTSR1 on tumor progression and its potential clinical application. I have initiated the project in hepatocellular carcinoma (HCC) and participated in the projects on lung and breast cancers initiated by former PhD students. In HCC, on a series of 73 patients, NTS and NTSR1 were detected in 56% and 64% of the cases, respectively. Meanwhile, I showed that NTSR1 expression is the target of the Wnt/¦Â-catenin pathway. The NTS / NTSR1 complex increases the expression and activation of EGFR and promotes the growth of experimental tumors and the ability of the cell for migration and invasion. The regulation between the NTS/NTSR1 complex and EGF receptors were also thoroughly studied in lung and mammary cancers. Indeed, NTS induced the expression and the constitutive activation of EGFR, HER2, and HER3, through the activation of metalloproteinases which released specific "EGF-like" ligands for EGFR and HER3. Constitutive activation of HERs by the NTS/NTSR1 complex mimics the activating mutations of HERs and therefore potentiates the tumor response to tyrosine kinase inhibitors treatment in liver, lung and breast cancers.
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Impact of a Specialty Pharmacy-Based Oral Chemotherapy Adherence Program on Patient Adherence

Russell, Kathy, Slack, Marion, Cooley, Janet, Mathews, Kelly January 2016 (has links)
Class of 2016 Abstract / Objectives: Patient medication adherence is a basic requirement for treating chronic myelogenous leukemia (CML) with oral tyrosine kinase inhibitors (TKIs). When imatinib adherence rates are less than 80 or 90 percent, major and complete molecular responses, respectively, do not happen. The purpose of this study was to determine the effect of a real-time medication monitoring (RTMM) reminder system adherence program on the medication possession ratio (MPR). Methods: This analytic study was a retrospective cohort study and used data extracted from chart reviews for patients who received services from 2011 to 2015. It was approved by the Institutional Review Board. The study consisted of an intervention group and a control group (50 patients each). MPRs, demographic, descriptive, and categorical variables were summarized using means, standard deviations (SD), and frequencies/percentages. Results: The study population consisted of adult patients (mean age=62.2, SD=2.7, 50% male) treated by Avella Specialty Pharmacy who received imatinib or nilotinib as treatment for CML, gastrointestinal stromal tumors (GIST), or a similar positive Philadelphia chromosome cancer. Only 4% of patients in the intervention group had an < 85% MPR, compared to 46% in the control group (p < 0.001). Conclusions: In those patients who had an MPR of ≥ 85%, the difference between the groups was statistically significant. As past studies have shown, adherence rates greater than 90% have a higher likelihood of a major or complete molecular response and a greatly reduced risk of disease progression.
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Utilisation de la stratégie iPSC pour la modélisation et l'étude des mécaniques de résistance des cellules souches cancéreuses : exemple de la leucémie myéloïde chronique / Use of iPSC for modelling and study cancer stem cells mechanisms in chronic myeloid leukemia

Charaf, Lucie 30 November 2016 (has links)
La technologie iPSC (induced pluripotent stem cells) permet l’obtention d’une source cellulaire illimitée pour la modélisation et la thérapie de maladies génétiques, la médecine régénérative, l’étude pharmacologique et récemment la modélisation et l’étude du cancer. La leucémie myéloïde chronique (LMC) est la pathologie modèle du concept de « cellule souche cancéreuse » : des cellules souches LMC (CS-LMC) s’avèrent résistantes aux inhibiteurs de tyrosine kinases (ITK), traitement conventionnel de ce syndrome myéloprolifératif. Elles sont responsables de la persistance d’une maladie résiduelle et de rechutes lors de l’interruption du traitement. Malheureusement, leur isolement est difficile. Nous proposons dans ce travail de modéliser les CS-LMC par les iPSC LMC. Nous montrons pour la première fois dans les iPSC LMC que BCR-ABL1 réprime l’expression des facteurs clés de la pluripotence (OCT4,NANOG, le cluster miR302-367) via les kinases ERK1/2. Les ITK, en bloquant l’activité deBCR-ABL1, entraîne une hausse des niveaux d’expression de ces marqueurs. L’effet « prosouche» des ITK, découvert dans les iPSC LMC, est également observé lors du traitement de CS-LMC primaires. L’agent thérapeutique pourrait ainsi, en maintenant ou renforçant le compartiment LMC immature, participer paradoxalement à la persistance de la maladie résiduelle. Étonnamment, les ITK augmentent également l’expression des marqueurs« souches » dans les iPSC et CS hématopoïétiques normales. Ce résultat suggère un effet« pro-souche » généralisé à plusieurs types cellulaires. / IPSC (induced pluripotent stem cells) offer renewable source of biologically relevant human cells for genetic diseases modelling and therapy, regenerative medicine, pharmacological study and, recently, cancer research. The proof of « cancer stem cell concept » was established in chronic myeloid leukemia (CML) : CML stem cells (CML-SC) are resistant to treatment (tyrosine kinase inhibitors (TKI)). They are involved in residual disease persistence and relapse when treatment is discontinued in the majority of patients. We modelled CML-SC with CML iPSC. We showed, for the first time, that BCR-ABL1 acts as a repressor of key stemness markers (OCT4, NANOG, miR302-367 cluster) via ERK1/2 in human CML iPSC. By blocking BCR–ABL1 activity, TKI increase pluripotency gene expression. Interestingly, a similar pro-stemness effect was observed during CML-SC treatment. By inducing a more primitive stemness phenotype, TKI could promote residual disease and relapse. Interestingly, an increase of stemness gene expression was also observed during TKI treatment of healthy cells (iPSC and hematopoietic stem cells). These data suggest a global TKI pro-stemness effect in other stem cell types.

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