31 |
Identification de composé sensibilisant préférentiellement les cellules exprimant les protéines E6 et E7 du VPH à l'irradiationDerdour, Amel A. 01 1900 (has links)
Le cancer du col utérin (CCU) est dans plus de 99% des cas provoqué par une infection avec le virus du papillome humain (VPH), dont le potentiel oncogénique réside dans l'expression des proto-oncogènes viraux E6/E7. Le potentiel carcinogénique de ces protéines virales réside essentiellement dans leurs actions sur les produits des gènes suppresseurs de tumeur p53 et RB. Les produits de ces gènes, p53 et Rb, font parti des voies de signalisation de réponse aux dommages de l'ADN cellulaire (RDA) et leur perte entraine une perte de fonctionnalité qui mène à une instabilité génomique. À long terme et en présence de d'autres facteurs ceux-ci mèneront au développement d'un cancer. Les protéines E6 et E7 sont constitutivement exprimées dans les cellules du CCU ainsi que dans les cellules de tout autre cancer induit par le VPH et seulement dans ces dernières. La prise en charge des cas avancés de ces cancers se fait principalement par radiothérapie et chimiothérapie concomitante. La chimio-radiothérapie utilisée en traitement est efficace mais résulte en un taux élevé de morbidité et un nombre important de patientes récidiveront.
Nous proposons que l'exploitation de l'expression spécifique d’E6 et d’E7 dans les cellules du CCU permette d’envisager une stratégie de létalité synthétique afin d'amplifier l'effet létal de l'irradiation sur les cellules CCU. Ceci permettrait potentiellement d'augmenter l'efficacité du traitement et de diminuer les récidives, ainsi que la morbidité liée au traitement. En s'appuyant sur cette hypothèse, notre objectif est d’identifier des composés dont l'action seule ou couplée à l'irradiation provoquerait préférentiellement la mort des cellules exprimant les protéines E6 et E7 du VPH. Les cellules testées comprennent des cellules isogéniques humaines issues de kératinocytes normaux que nous avons modifiées séquentiellement pour obtenir les modifications associées aux cellules CCU (hTERT, E6 et E7), ainsi que les lignées de cellules de CCU HeLa et CaSki .Nous avons procédé à la mise au point et à la validation du protocole de criblage et des méthodes d’évaluation de la sensibilisation, qui se définit comme une perte de viabilité, un arrêt ou ralentissement de la croissance, par détection d’ATP ainsi que par coloration d’ADN génomique au DRAQ5. Suite à un criblage ciblé impliquant des inhibiteurs connus de la voie de réparation des dommages à l’ADN, nous avons identifié l’inhibiteur de mdm2, Nutlin-3, comme étant un composé sensibilisant et radio-sensibilisant préférentiellement les cellules exprimant E6 et E7 du VPH. La Nutlin-3 a été testée sur des cellules HEKn-hTERT-E6-E7, des cellules CaSki et HeLa. L’effet de sensibilisation et de radio-sensibilisation a été confirmé dans ces trois lignées. Tel que suggéré par son action sur mdmd2, la Nutlin-3 permet la stabilisation de p53 dans les cellules HEKn-hTERT-E6-E7 et CaSki et sa réactivation dans les lignées cellulaires HeLa et CaSki. Malgré cette stabilisation de p53, de façon surprenante, l’effet de la Nutlin-3 sur la sensibilisation et la radio-sensibilisation des cellules HeLa et CaSki semble indépendant de p53, tel qu’observé en utilisant des cellules HeLa-GSE et CaSki-GSE dont le p53 est déficient. In vivo la Nutlin-3a montre dans un essai préliminaire l’inhibition de la croissance tumorale des xénogreffes HeLa chez des souris RAG2γc. Ce résultat reste à confirmer avec un essai impliquant un nombre d’échantillons plus grand. À plus long terme, nous comptons étudier l’implication de mdm2 dans l’effet de sensibilisant de la Nutlin-3 dans les cellules CCUs, ainsi que les autres cibles pouvant être impliquées dans la création de cet effet sensibilisant observé. / More than 99% of uterine cervical cancer (UCC) are caused by human papillomavirus (HPV) infections. The oncogenic potential of this virus lies in the expression of the proto-oncogenes E6/E7. These viral proteins are considered carcinogenic because of their effects on tumor suppressor proteins p53 and Rb. E6 and E7 promote p53 and Rb inactivation resulting in a loss of function in the DNA damage response pathways (DDR), genomic instability, and cancer development. The E6 and E7 proteins are expressed constitutively and specifically in cervical cancer cells and in the cells of other HPV-induced cancers. The treatment of advanced UCC is based on simultaneous radiotherapy and chemotherapy. Although these strategies are somewhat efficacious, there are still significant co-morbidities and cancer relapses. We hypothesized that the specific expression of E6 and E7 in cervical cancer cells can be exploited in a synthetic lethality strategy to amplify the lethal effect of irradiation. Thus, the efficacy of treatment could be increased, while reducing the cancer recurrence and treatment-related morbidities. Our objective is to identify chemical compounds that if used alone or coupled with irradiation, would preferentially induce the death of cells expressing proteins E6 and E7 of HPV. We used a cellular model of human keratinocytes that were modified to obtain the genetic signature associated with cervical cancer cells (the expression of E6 and E7). We then proceeded to the optimization and validation of the methods used to evaluate the sensitization of the tested cells. To measure sensitization, we evaluated the quantity of cellular ATP by ATPlite assay and the cellular DNA content with the DNA stain DRAQ5. After establishing a screening protocol, we proceeded to a low-density screening to identify a compound that can sensitize or radio-sensitize cervical cancer cells expressing the HPV proteins E6 and E7. We identified Nutlin-3 a mdm2, inhibitor, as a radio-sensitizing component for cells expressing E6 and E7 of HPV. Nutlin-3 was tested and sensitization confirmed in HEKn-hTERT-E6-E7 and in the cervical cancer cell lines HeLa and CaSki. We confirmed by Western-Blot the stabilisation of p53 in HEKn-hTERT-E6-E7 and CaSki cells treated with Nutlin-3. Moreover, Nutlin-3 promotes p53 reactivation in the HeLa and CaSki cell lines. Surprisingly, the effect of Nutlin-3 on the sensitization and radio-sensitization of the HeLa and CaSki cell lines appears to be p53-independent. This is based on the observations made using p53-deficient HeLa-GSE and CaSki-GSE cell lines, which were also sensitized by Nutlin-3. In addition, preliminary experiments showed that Nutlin-3a inhibits in vivo tumor growth, as seen using xenografts of HeLa in mice with a RAG2γc genetic background. This remains to be confirmed using an extended cohort of mice. In the future, it will be important to examine the implication of mdm2 in the sensitization effect of Nutlin-3 in cervical cancer cells and to find others possible targets that may play a role in the sensitization effect of Nutlin-3 observed in cervical cancer cells.
|
32 |
Desenvolvimento de vacina terapêutica contra HPV16 / Development of a therapeutic vaccine against HPV16Morale, Mirian Galliote 24 February 2010 (has links)
O câncer cervical é o segundo câncer mais comum entre mulheres no mundo. A maioria dos casos (83%) ocorre em países em desenvolvimento, onde são encontrados em estágios relativamente avançados e, conseqüentemente, a sobrevida média é de cerca de 49% após cinco anos. Portanto, uma vacina eficaz contra as infecções pelo HPV pode levar ao controle do câncer do colo do útero. Apesar de prevenir, a vacina profilática não é acessível em função do alto custo, além de não eliminar o vírus em mulheres já infectadas pelo HPV. Assim, propusemos o desenvolvimento de uma vacina terapêutica eficaz utilizando duas abordagens: VLPs (virus-like particles) quiméricas, que poderiam apresentar propriedades profiláticas e terapêuticas, obtidas da fusão das proteína L1 e E7; proteínas quiméricas obtidas a partir da fusão de epítopos das proteínas E6 e E7 do HPV16, com e sem ubiquitina. Após subclonagens, com a obtenção dos vetores pPICHOLI-L1ΔCE71-50 e pPICHOLI-L1ΔCE743-77, partiu-se para a indução da expressão das VLPs quiméricas em Pichia pastoris, das quais não foram detectadas expressão protéica. Realizaram-se inúmeras modificações no protocolo de indução. Mesmo após essas alterações não foi detectada nenhuma expressão das fusões L1ΔCE71-50 ou L1ΔCE743-77. Como alternativa de uma vacina terapêutica, nos propusemos a expressar em E. coli proteínas sintéticas originadas da fusão entre epítopos das proteínas E6 e E7 do HPV16, com ou sem Ubiquitina, visando aumentar a apresentação de peptídeos via MHC de classe I de modo a estimular a eliminação de células infectadas com HPV16, evitando e regredindo o desenvolvimento dessas células cancerosas. Com a proteína E6E7 solúvel e purificada, realizou-se um ensaio de imunização. Nesse experimento, 20% dos animais imunizados com a proteína E6E7 não apresentaram desenvolvimento de tumor após a inoculação de células TC1. Assim isso nos leva a crer que com o aumento da concentração de proteína e utilização de adjuvantes seria possível aumentar o número de animais resistentes ao desenvolvimento do tumor. Em um segundo experimento de imunização, comparamos as proteínas E6E7 e E6E7Ub, em duas concentrações, 15 e 40 µg, e também com ou sem o adjuvante whole cell pertussis (WCP). Independentemente da concentração e presença ou ausência de WCP, os grupos imunizados com E6E7Ub apresentaram proteção contra o tumor entre 80% e 100% dos camundongos, enquanto os grupos imunizados com E6E7 apresentaram proteção entre 0% e 25%. Esses resultados são promissores, ainda que preliminares, indicando um potencial de uso da proteína E6E7Ub como imunógeno para vacina terapêutica contra o câncer cervical induzido por HPV16 / Cervical cancer is the second most common cancer among women worldwide. Most cases (83%) occur in developing countries, where they are found in relatively advanced stages and, consequently, the median survival is about 49% after five years. Therefore, an effective vaccine against HPV infections can lead to control of cancer of the cervix. Although preventable, the prophylactic HPV vaccine is not accessible to all due to their high cost and in addition the vaccine does not eliminate the HPV in infected women. We have therefore proposed the development of effective therapeutic vaccines using two approaches: chimeric VLPs (virus-like particles), endowed with prophylactic and therapeutic properties, obtained from the fusion protein L1 and E7; chimeric proteins derived from the fusion of epitopes of proteins E6 and E7 of HPV16 with and without ubiquitin. After subcloning, we obtained the vectors pPICHOLI-L1ΔCE71-50 and L1 pPICHOLI- L1ΔCE743-77. After transformation of yeast Pichia pastoris with these constructions, the cells were induced, but it was not possible to detect any recombinant protein expression. As an alternative, we proposed the expression of synthetic proteins in E. coli derived from the fusion between epitopes of E6 and E7 proteins of HPV16 with or without Ubiquitin, in order to enhance the presentation of peptides through MHC class I to stimulate the elimination of HPV16-infected cells, preventing and regressing the development of cancer cells. Soluble E6E7 protein was purified and, 20% of the animals immunized with this protein did not develop tumor after inoculation of TC1 cells. In a second immunization experiment we compared the proteins E6E7 and E6E7Ub, in two concentrations, 15 and 40µg, with or without the adjuvant whole cell pertussis (WCP). Regardless of concentration and presence or absence of WCP, all the groups immunized with E6E7Ub showed protection against tumor between 80% and 100%, while the groups immunized with E6E7 showed protection from 0% to 25%. These results are promising and although preliminary, indicate the potential of E6E7Ub protein as an immunogen, for a therapeutic vaccine against cervical cancer induced by HPV16
|
33 |
Human Papillomavirus 16 E7 Inhibits the ability of IFN-γ in Enhancement of MHC Class I Antigen Presentation and CTL Lysis by Affecting IRF-1 Expression in KeratinocytesFang Zhou Unknown Date (has links)
The results of experiments aimed at determining whether cytotoxic T lymphocytes (CTLs) can kill keratinocytes (KCs) expressing endogenously loaded antigen indicated that antigen specific cytotoxic T lymphocytes could recognize and kill keratinocytes expressing ovalbumin (OVA) or SIINFEKL peptide. Exposure of the KCs to interferon-gamma (IFN-γ) enhanced this CTL-mediated KC lysis and increased CTL epitope presentation on the surface of target cells. Expression of HPV 16 E7 protein in KCs affected CTL-mediated lysis. Expression of HPV 16 E7 inhibited IFN-γ-mediated up-regulation of SIINFEKL/H-2Kb complexes on keratinocytes, and also inhibited IFN-γ-mediated up-regulation of IRF-1 expression, and consequent up-regulation of TAP1 transcription. Further, overexpression of IRF-1 partially corrected the HPV 16 E7-mediated inhibition of enhanced susceptibility of KC lysis induced by IFN-γ. Thus, the effects of HPV 16 E7 on CTL-mediated lysis of IFN-γ exposed KCs are likely mediated by inhibition of MHC class I antigen presentation by IFN-γ. These findings may help explain why HPV-infected epithelial cells can escape from immune surveillance mediated by CTLs in vivo and in vitro.
|
34 |
Desenvolvimento de vacina terapêutica contra HPV16 / Development of a therapeutic vaccine against HPV16Mirian Galliote Morale 24 February 2010 (has links)
O câncer cervical é o segundo câncer mais comum entre mulheres no mundo. A maioria dos casos (83%) ocorre em países em desenvolvimento, onde são encontrados em estágios relativamente avançados e, conseqüentemente, a sobrevida média é de cerca de 49% após cinco anos. Portanto, uma vacina eficaz contra as infecções pelo HPV pode levar ao controle do câncer do colo do útero. Apesar de prevenir, a vacina profilática não é acessível em função do alto custo, além de não eliminar o vírus em mulheres já infectadas pelo HPV. Assim, propusemos o desenvolvimento de uma vacina terapêutica eficaz utilizando duas abordagens: VLPs (virus-like particles) quiméricas, que poderiam apresentar propriedades profiláticas e terapêuticas, obtidas da fusão das proteína L1 e E7; proteínas quiméricas obtidas a partir da fusão de epítopos das proteínas E6 e E7 do HPV16, com e sem ubiquitina. Após subclonagens, com a obtenção dos vetores pPICHOLI-L1ΔCE71-50 e pPICHOLI-L1ΔCE743-77, partiu-se para a indução da expressão das VLPs quiméricas em Pichia pastoris, das quais não foram detectadas expressão protéica. Realizaram-se inúmeras modificações no protocolo de indução. Mesmo após essas alterações não foi detectada nenhuma expressão das fusões L1ΔCE71-50 ou L1ΔCE743-77. Como alternativa de uma vacina terapêutica, nos propusemos a expressar em E. coli proteínas sintéticas originadas da fusão entre epítopos das proteínas E6 e E7 do HPV16, com ou sem Ubiquitina, visando aumentar a apresentação de peptídeos via MHC de classe I de modo a estimular a eliminação de células infectadas com HPV16, evitando e regredindo o desenvolvimento dessas células cancerosas. Com a proteína E6E7 solúvel e purificada, realizou-se um ensaio de imunização. Nesse experimento, 20% dos animais imunizados com a proteína E6E7 não apresentaram desenvolvimento de tumor após a inoculação de células TC1. Assim isso nos leva a crer que com o aumento da concentração de proteína e utilização de adjuvantes seria possível aumentar o número de animais resistentes ao desenvolvimento do tumor. Em um segundo experimento de imunização, comparamos as proteínas E6E7 e E6E7Ub, em duas concentrações, 15 e 40 µg, e também com ou sem o adjuvante whole cell pertussis (WCP). Independentemente da concentração e presença ou ausência de WCP, os grupos imunizados com E6E7Ub apresentaram proteção contra o tumor entre 80% e 100% dos camundongos, enquanto os grupos imunizados com E6E7 apresentaram proteção entre 0% e 25%. Esses resultados são promissores, ainda que preliminares, indicando um potencial de uso da proteína E6E7Ub como imunógeno para vacina terapêutica contra o câncer cervical induzido por HPV16 / Cervical cancer is the second most common cancer among women worldwide. Most cases (83%) occur in developing countries, where they are found in relatively advanced stages and, consequently, the median survival is about 49% after five years. Therefore, an effective vaccine against HPV infections can lead to control of cancer of the cervix. Although preventable, the prophylactic HPV vaccine is not accessible to all due to their high cost and in addition the vaccine does not eliminate the HPV in infected women. We have therefore proposed the development of effective therapeutic vaccines using two approaches: chimeric VLPs (virus-like particles), endowed with prophylactic and therapeutic properties, obtained from the fusion protein L1 and E7; chimeric proteins derived from the fusion of epitopes of proteins E6 and E7 of HPV16 with and without ubiquitin. After subcloning, we obtained the vectors pPICHOLI-L1ΔCE71-50 and L1 pPICHOLI- L1ΔCE743-77. After transformation of yeast Pichia pastoris with these constructions, the cells were induced, but it was not possible to detect any recombinant protein expression. As an alternative, we proposed the expression of synthetic proteins in E. coli derived from the fusion between epitopes of E6 and E7 proteins of HPV16 with or without Ubiquitin, in order to enhance the presentation of peptides through MHC class I to stimulate the elimination of HPV16-infected cells, preventing and regressing the development of cancer cells. Soluble E6E7 protein was purified and, 20% of the animals immunized with this protein did not develop tumor after inoculation of TC1 cells. In a second immunization experiment we compared the proteins E6E7 and E6E7Ub, in two concentrations, 15 and 40µg, with or without the adjuvant whole cell pertussis (WCP). Regardless of concentration and presence or absence of WCP, all the groups immunized with E6E7Ub showed protection against tumor between 80% and 100%, while the groups immunized with E6E7 showed protection from 0% to 25%. These results are promising and although preliminary, indicate the potential of E6E7Ub protein as an immunogen, for a therapeutic vaccine against cervical cancer induced by HPV16
|
35 |
Détection moléculaire des métastases des ganglions lymphatique dans le cancer du col de l'utérusMechtouf, Nawel 12 1900 (has links)
Le Cancer du Col Utérin (CCU) chez la femme est provoqué par le virus oncogénique VPH. La métastase lymphatique ganglionnaire est un facteur pronostique majeur pour l’évolution de ce cancer et sa présence influence la décision thérapeutique. En général, l’envahissement ganglionnaire est diagnostiqué par histologie, mais cette méthode est laborieuse et parfois prise en défaut pour détecter les micrométastases et les cellules cancéreuses isolées et pour donner des résultats rapides en per opératoire. L’outil moléculaire que nous désirons développer pour combler cette lacune est basé sur une analyse d’ARN des gènes du VPH exprimés par les cellules du CCU. Ceci sera fait par transcription réverse de l’ARN cellulaire couplé à une réaction quantitative en chaine par polymérase en temps réel (RT-qPCR). Cette technique devrait nous permettre une détection et une évaluation rapide des micrométastases pour aider à déterminer immédiatement un pronostic fiable et la thérapie associée. C’est un test précis, sensible et rapide pour détecter un envahissement ganglionnaire dans le CCU visant à améliorer la gestion thérapeutique. Le projet est basé sur trois objectifs. En premier lieu, valider les marqueurs moléculaires E6 et E7 de VPH16 et 18 à partir des échantillons frais et des échantillons fixés dans des blocs de paraffine. En deuxième lieu, déterminer la fiabilité et la sensibilité des marqueurs pour la détection des macrométastases, des micrométastases et les cellules tumorales isolées en utilisant la technique de RT-qPCR. En troisième lieu et parallèlement au travail présenté dans ce mémoire, il est nécessaire de constituer une base de données des patientes qui ont le virus VPH16 et 18 intégré dans leur génome, qui ont été traitées et dont nous connaissons déjà le diagnostic final afin de valider la méthode (biobanque). Nous avons réussi à extraire de l’ARNm de haute qualité à partir d’échantillons complexes, à détecter les gènes E6 et E7 de VPH16 et 18 en RT-qPCR, et à déterminer précisément la limite de détection de E6 et E7 dans les échantillons frais qui est une proportion de 0,008% de cellules cancéreuses. Dans les échantillons fixés dans la paraffine, cette limite est de 0,02% et 0,05% pour E6-E7-VPH16 et E6-E7-VPH18 respectivement. Ceci comparativement à une limite de détection histologique de 1% qui est déterminée par immunohistochimie de CK19. Enfin, notre protocole est validé pour VPH18 dans les ganglions lymphatiques du CCU. / The presence of lymph nodes metastasis in uterine cervical carcinoma influences therapeutic management and patient survival. The gold standard for metastasis detection is histology. However, histology lacks sensitivity to detect micrometastasis or isolated cancer cells and is not an efficient method for immediate diagnosis during surgery. The molecular tool that we want to develop to fill this gap is based on an analysis of expressed RNA transcripts derived from the HPV genome in cells of uterine cervical carcinoma (UCC). This will be done by reverse transcription of cellular RNA coupled to a quantitative polymerase chain reaction in real-time (RT-qPCR). This technique could allow detection and rapid assessment of micrometastasis to help determine prognosis and an immediate reliable combination therapy. The proposed technique would be a specific test, sensitive and rapid to detect lymph node involvement in the UCC to improve therapy management. Our objective is to constitute a patient bank containing genetic and clinical information. This genetic information will be used to test and improve new molecular markers for UCC metastasis. These markers will be validated using comparisons to traditional histological results and evaluated for their capacity to detect lymph nodes micrometastasis. Ultimately, we wish to develop a reliable molecular diagnosis method useful during surgery and improve our knowledge about the clinical evolution of metastatic UCC. Currently, we are able to extract high quality mRNA from formalin-fixed cells mounted in paraffin blocks and to detect E6 and E7 from HPV16 and HPV18 using RT-qPCR. We have specifically determined the detection limit of E6 and E7, which is 0.008% in the fresh samples and 0.02% and 0.05% for HPV16-E6-E7 and HPV18- E6-E7 respectively in the samples fixed in paraffin blocks. Comparatively, the histological detection limit was determined to be around 1% using immunohistochemistry for CK19 expression. Finally, our protocol has been validated for HPV18 in UCC patient lymph nodes
|
Page generated in 0.0203 seconds