• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 2
  • 2
  • 1
  • 1
  • Tagged with
  • 6
  • 5
  • 4
  • 3
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 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.
1

INVESTIGATION OF AXIN2 IN ZEBRAFISH (DANIO RERIO) DEVELOPMENT AND ITS ROLE IN CANONICAL WNT SIGNALING

Lum, Whitney 25 August 2011 (has links)
Canonical Wnt signaling is involved in many aspects of development including axis specification and anterior-posterior neuroectoderm formation during vertebrate embryogenesis. Axin2, a homologue of Axin1, is thought to have a similar regulatory role within the cell, but differences in their expression and binding partners suggest Axin2 is not completely redundant with Axin1. To better understand Axin2 in canonical Wnt signaling, I utilized several approaches to explore its expression and function. In the zebrafish embryo, I found Axin2 is expressed in known active domains of Wnt signaling, suggesting an inducible regulatory role. Additionally, canonical Wnt signaling was sufficient and necessary to induce Axin2 expression and Axin2 was sufficient and necessary to inhibit Wnt signaling. As Wnt signaling is important in development and its dysregulation has been implicated in diseases such as colorectal cancer, this study helps advance our understanding of how Wnt signaling regulates itself through the use of negative feedback inhibitors, such as Axin2.
2

Maternal Hepatic Adaptations to Pregnancy

Nambiar, Shashank Manohar 08 1900 (has links)
Indiana University-Purdue University Indianapolis (IUPUI) / During gestation, the maternal liver undergoes various adaptive changes to cope with the in-creasing physiological and metabolic demands from both maternal and fetal compartments. Among these changes are robust growth and changes in transcriptome profile. However, how these events happen, and other aspects of this physiological phenomenon remains unexplored. Therefore, we aimed at further understanding how maternal liver responds to pregnancy. We used BrdU labeling combined with a virus-based tracing approach to quantify the percentage of maternal hepatocytes undergoing DNA synthesis and division over the course of gestation in mice. We found that ~50% maternal hepatocytes entered S-phase but, unexpectedly, did not undergo cytokinesis. This strongly suggests that maternal hepatocytes in fact undergo endoreplication instead of hyperplasia, as believed previously. Pericentral Axin2+ hepatocytes were reported to behave as liver stem cells responsible for liver homeostasis and turnover. We generated an in vivo fate-tracing mouse model to monitor the behavior of these cells in the maternal liver. Our results showed that they did not proliferate during pregnancy, homeostasis, and following par-tial hepatectomy. Curiously, we uncovered that, hepatocytes exhibit developmental phenotypes at mRNA level pre-pregnancy and at both mRNA and protein level during pregnancy. In the non-pregnant state, hepatocytes reserved mRNA expression of liver progenitor marker genes Cd133 and Afp, which are localized in the nuclei, without protein translation. During gestation, maternal hepatocytes displayed cytoplasmic translocation of Cd133 and Afp transcripts, con-comitant with corresponding protein expression. Overall, all maternal hepatocytes became CD133+, and a subset of them express AFP. Addi-tionally, in non-pregnant livers, mRNA of Epcam, another liver progenitor marker, was ex-pressed within majority of hepatocytes, whereas its protein was solely translated in the pericen-tral region. In contrast, by end-gestation, EPCAM protein expression switched to the periportal region. These observations indicate that maternal hepatocytes exhibit heterogeneous develop-mental phenotypes, partially resembling fetal hepatocytes. It is intriguing why mature hepato-cytes dedifferentiate into a progenitor state in response to pregnancy. AFP is considered to be produced primarily from fetal liver and thus is used to evaluate fetal development health. A potential clinical relevance of our data is that we identified maternal liver as a new source of AFP. The hippo signaling pathway has been shown to potently control liver growth and hepato-cyte heterogenicity. Surprisingly, we found that pregnancy neither altered the expression nor activities of the components of this pathway and its effector YAP1/TAZ. This finding indicates that pregnancy-induced maternal liver growth is not driven by hippo-YAP1 pathway. However, we demonstrate that the presence of YAP1 is essential for CD133 protein expression in mater-nal hepatocytes. Collectively, we revealed that, as pregnancy advances, maternal hepatocytes likely undergo endoreplication and display developmental phenotypes. Mechanistically, YAP1 dictates the expression of CD133, contributing to the pregnancy-dependent phenotypic changes of maternal hepatocytes.
3

Implications d'AXIN2 et de l'instabilité microsatellite dans le développement des tumeurs du cortex-surrénalien

Chapman, Audrey 12 1900 (has links)
Les lésions tumorales cortico-surrénaliennes sont majoritairement des adénomes bénins et très rarement des carcinomes. Les altérations génétiques impliquées dans le développement des tumeurs cortico-surrénaliennes sporadiques, plus particulièrement au stade malin, demeurent à ce jour très peu connues. Lors de travaux récents menant à l’identification d’altérations génétiques de β-CATÉNINE nous avons constaté que plusieurs tumeurs présentaient une accumulation nucléo/cytoplasmique de la protéine β-CATÉNINE sans toutefois contenir de mutations pour ce gène. Nous avons donc émis l’hypothèse que, comme pour d’autres types de cancers, d’autres composants de la voie de signalisation Wnt/β-CATÉNINE, tel qu’AXIN2, pourrait être impliqués dans le développement des tumeurs du cortex surrénalien. De plus, plusieurs aberrations dans l’expression d’AXIN2 et de β-CATÉNINE sont associées à des tumeurs présentant de l’instabilité microsatellite dans d’autres types de cancer, notamment le cancer gastrique et colorectal. Nous avons donc étudié une cohorte de 30 adénomes, 6 carcinomes, 5 AIMAH, 3 hyperplasies ACTH-dépendante et 5 PPNAD ainsi que les lignées cellulaires de carcinomes cortico-surrénaliens humains H295R et SW13. Une étude préliminaire du statut MSI a également été réalisée sur 10 tumeurs contenant une mutation pour AXIN2 et/ou β-CATÉNINE. Nous avons trouvé des mutations d’AXIN2 dans 7% des adénomes (2/30) et 17% des carcinomes (1/6) cortico-surrénaliens. L’analyse fonctionnelle des mutations par immunohistochimie, analyse western blot et analyse de RT-PCR en temps réel a révélé une diminution de l’expression d’AXIN2 associée à cette mutation. L’analyse préliminaire MSI a démontré 1 échantillon AIMAH MSI-H, c’est-à-dire instable pour le locus BAT-25 et BAT-26 et 3 autres adénomes sécrétant de l’aldostérone instables seulement pour le locus BAT-26. Ainsi, ces travaux permirent d’identifier une nouvelle altération génétique associée au développement des tumeurs du cortex surrénalien en plus de rapporter pour la première fois la présence de MSI-H dans ce type de tumeurs. / Adrenocortical lesions are mostly benign tumors and rarely carcinomas. From now on, genetic alterations implicated in sporadic adrecocortical tumour development remains largely unknown. In our previous work leading to identification of genetic alterations in β-catenin, we observed that many tumors presented a nucleo/cytoplasmic accumulation of β-catenin protein without β-catenin mutations. Thus, we hypothesised that, as for many others cancers, others components of the Wnt/ β-catenin signalling pathway, as AXIN2, are implicated in development of adrenocortical tumors. Also, many aberrations in AXIN2 and β-catenin expression have been reported in association with microsatellite instability in other types of cancers like gastroinstestinal and colorectal cancer. We have studied 30 adenomas, 6 carcinomas, 5 AIMAH, 3 ACTH-dependant hyperplasias and 5 PPNAD as well as the human carcinoma cancer cells lines H295R and SW13. Preliminary study for MSI was also realised on 10 tumors harbouring AXIN2 and/or Β-CATENIN mutations. We have found AXIN2 mutations in 7% of adrenocortical adenomas (2/30) and 17% of adrenocortiocal carcinomas. Functional analysis of this mutation by immunohistochemical, western blot and real-time RT-PCR analysis revealed a down-regulation of AXIN2 expression associated with this mutation. Preliminary analysis of MSI results in 1 AIMAH sample MSI-H, which means instable for BAT-25 and BAT-26 locus, and 2 aldosterone adenomas were unstable for BAT-26 locus. This work identified a new genetic alteration involved in adrenocortical tumour development and report for the first time MSI-H in this type of tumor.
4

Implications d'AXIN2 et de l'instabilité microsatellite dans le développement des tumeurs du cortex-surrénalien

Chapman, Audrey 12 1900 (has links)
Les lésions tumorales cortico-surrénaliennes sont majoritairement des adénomes bénins et très rarement des carcinomes. Les altérations génétiques impliquées dans le développement des tumeurs cortico-surrénaliennes sporadiques, plus particulièrement au stade malin, demeurent à ce jour très peu connues. Lors de travaux récents menant à l’identification d’altérations génétiques de β-CATÉNINE nous avons constaté que plusieurs tumeurs présentaient une accumulation nucléo/cytoplasmique de la protéine β-CATÉNINE sans toutefois contenir de mutations pour ce gène. Nous avons donc émis l’hypothèse que, comme pour d’autres types de cancers, d’autres composants de la voie de signalisation Wnt/β-CATÉNINE, tel qu’AXIN2, pourrait être impliqués dans le développement des tumeurs du cortex surrénalien. De plus, plusieurs aberrations dans l’expression d’AXIN2 et de β-CATÉNINE sont associées à des tumeurs présentant de l’instabilité microsatellite dans d’autres types de cancer, notamment le cancer gastrique et colorectal. Nous avons donc étudié une cohorte de 30 adénomes, 6 carcinomes, 5 AIMAH, 3 hyperplasies ACTH-dépendante et 5 PPNAD ainsi que les lignées cellulaires de carcinomes cortico-surrénaliens humains H295R et SW13. Une étude préliminaire du statut MSI a également été réalisée sur 10 tumeurs contenant une mutation pour AXIN2 et/ou β-CATÉNINE. Nous avons trouvé des mutations d’AXIN2 dans 7% des adénomes (2/30) et 17% des carcinomes (1/6) cortico-surrénaliens. L’analyse fonctionnelle des mutations par immunohistochimie, analyse western blot et analyse de RT-PCR en temps réel a révélé une diminution de l’expression d’AXIN2 associée à cette mutation. L’analyse préliminaire MSI a démontré 1 échantillon AIMAH MSI-H, c’est-à-dire instable pour le locus BAT-25 et BAT-26 et 3 autres adénomes sécrétant de l’aldostérone instables seulement pour le locus BAT-26. Ainsi, ces travaux permirent d’identifier une nouvelle altération génétique associée au développement des tumeurs du cortex surrénalien en plus de rapporter pour la première fois la présence de MSI-H dans ce type de tumeurs. / Adrenocortical lesions are mostly benign tumors and rarely carcinomas. From now on, genetic alterations implicated in sporadic adrecocortical tumour development remains largely unknown. In our previous work leading to identification of genetic alterations in β-catenin, we observed that many tumors presented a nucleo/cytoplasmic accumulation of β-catenin protein without β-catenin mutations. Thus, we hypothesised that, as for many others cancers, others components of the Wnt/ β-catenin signalling pathway, as AXIN2, are implicated in development of adrenocortical tumors. Also, many aberrations in AXIN2 and β-catenin expression have been reported in association with microsatellite instability in other types of cancers like gastroinstestinal and colorectal cancer. We have studied 30 adenomas, 6 carcinomas, 5 AIMAH, 3 ACTH-dependant hyperplasias and 5 PPNAD as well as the human carcinoma cancer cells lines H295R and SW13. Preliminary study for MSI was also realised on 10 tumors harbouring AXIN2 and/or Β-CATENIN mutations. We have found AXIN2 mutations in 7% of adrenocortical adenomas (2/30) and 17% of adrenocortiocal carcinomas. Functional analysis of this mutation by immunohistochemical, western blot and real-time RT-PCR analysis revealed a down-regulation of AXIN2 expression associated with this mutation. Preliminary analysis of MSI results in 1 AIMAH sample MSI-H, which means instable for BAT-25 and BAT-26 locus, and 2 aldosterone adenomas were unstable for BAT-26 locus. This work identified a new genetic alteration involved in adrenocortical tumour development and report for the first time MSI-H in this type of tumor.
5

Alterações Genéticas e Epigenéticas dos Genes do Complexo de Destruição de β-Catenina e Perfil Transcricional dos Componentes da Via de Sinalização Wnt no Câncer de Mama / Genetics and Epigenetics Disturbances of β-Catenin Destruction Complex and Transcriptional Profile of Wnt Signaling Components in Breast Cancer

Aristizábal Pachón, Andrés Felipe 22 May 2015 (has links)
O câncer de mama é a neoplasia responsável pelo maior número de mortes em mulheres no Brasil, portanto, é importante encontrar novos marcadores específicos e de diagnóstico precoce, utilizando procedimentos simples e rápidos. A via de sinalização Wnt regula importantes funções celulares como proliferação, sobrevida e adesão. Esta via está associada com os processos de iniciação e progressão em muitos tipos tumorais, como câncer de cólon familiar, melanoma e pulmão; sendo que mutações em β-Catenina (CTNNb1) explicam só 30% dos casos de sinalização aberrante encontrada no câncer de mama, indicando que existem outros componentes e/ou reguladores da via que possam estar envolvidos. O objetivo deste trabalho foi avaliar as variantes genéticas e epigenéticas nos genes do complexo de degradação de β-Catenina num grupo de pacientes com câncer de mama e num grupo controle; e determinar os perfis de transcrição dos componentes da via de sinalização Wnt e da molécula de expressão exclusiva do epitélio mamário, a Mamaglobina Humana (MGA), assim como associar estes resultados com as características clínicas, histológicas e patológicas do tumor. Para atingir este objetivo foram coletadas amostras de sangue periférico de 102 mulheres com câncer de mama e 102 mulheres sadias como grupo controle. A avaliação das variantes rs465899 do gene APC, rs2240308 e rs151279728 do gene AXIN2, rs5030625 do gene CDH1 e rs334558 do gene GSK3, foi realizada por meio de PCR-RFLPs e sequenciamento, a análise dos perfis de metilação dos promotores pela MS-PCR. A RT-qPCR foi usada para determinar os níveis de expressão dos componentes da via e a MGA. As variantes rs2240308 e rs151279728 do gene AXIN2 mostraram uma forte associação com o risco de desenvolver o câncer de mama. Um aumento significativo foi observado no nível de expressão de AXIN2 no grupo de mulheres com câncer de mama. Análises adicionais mostraram perfis de expressão diferencial dos genes APC, AXIN2, CTNNB1, GSK3 e CSNK1A1 associado ao status dos receptores hormonais e histogênese tumoral. MGA foi identificado exclusivamente em 38% dos pacientes com câncer de mama e foi associada com a progressão da doença. Este é o primeiro estudo que relaciona uma variante do gene AXIN2 com o câncer de mama na população brasileira. As variantes avaliadas do gene AXIN2 são marcadores promissores de susceptibilidade ao câncer de mama na população estudada, sendo importante, a avaliação desta variante genética na população e determinar o seu real efeito no processo de iniciação e/ou progressão do câncer de mama. / Background: Wnt/β-catenin signaling pathway is an important regulator of cellular functions such as proliferation, survival and cell adhesion. This pathway is associated with tumor initiation and progression; -catenin (CTNNB1) mutations explains only 30% of aberrant signaling found in breast cancer, indicating that other components and/or regulating of the Wnt/β-catenin pathway may be involved. Objective: The objective of the study was to evaluate the APC rs465899, AXIN2 rs2240308 and rs151279728, CDH1 rs5030625 and GSK3 rs334558 polymorphisms, APC, AXIN2, CDH1 and GSK3 promoter methylation status and expression profile of -Catenin destruction complex genes and MGA in peripheral blood of breast cancer patients. Methods: We collected peripheral blood samples from 102 breast cancer and 102 healthy subjects. The identification of the mutation was performed using PCR-RFLPs and DNA sequencing. MSP and HRM-MS was used to measure promoter methylation and RT-qPCR to determine expression profile. Results: We found significant association of AXIN2 rs2240308 polymorphism with breast cancer. Increased risk was observed even after stratification based on clinicpathological characteristics. AXIN2 rs151279728 polymorphism was found only in 9 breast cancer patients, but none in control group subject. APC and CDH1 polymorphisms were not associated with breast cancer. GSK3 polymorphism was weak associated with breast cancer and heterozygous status was associated with breast cancer protection after group stratification. APC and CDH1 promoter methylation in breast cancer patients was found. Significant increase was observed in AXIN2, CTNNB1 and GSK3 level expression in breast cancer patients. APC was down-regulated in breast cancer patients. Further analyses, showed APC, AXIN2, CTNNB1, GSK3 and CSKN1A1 gene expression associated to receptor status and histological type. MGA was found only in breast cancer patients and was associated with cancer progression. Conclusion: The present study reports, for the first time, that AXIN2 genetic defect and -catenin destruction complex expression disturbance may be found in breast cancer patients, providing additional support to the role of Wnt/-catenin pathway dysfunction in breast cancer tumorigenesis. However, the functional consequence of this genetic alteration remains to be determined. In another hand MGA was determined like a good biomarker for diagnosis and prognosis outcome.
6

Alterações Genéticas e Epigenéticas dos Genes do Complexo de Destruição de β-Catenina e Perfil Transcricional dos Componentes da Via de Sinalização Wnt no Câncer de Mama / Genetics and Epigenetics Disturbances of β-Catenin Destruction Complex and Transcriptional Profile of Wnt Signaling Components in Breast Cancer

Andrés Felipe Aristizábal Pachón 22 May 2015 (has links)
O câncer de mama é a neoplasia responsável pelo maior número de mortes em mulheres no Brasil, portanto, é importante encontrar novos marcadores específicos e de diagnóstico precoce, utilizando procedimentos simples e rápidos. A via de sinalização Wnt regula importantes funções celulares como proliferação, sobrevida e adesão. Esta via está associada com os processos de iniciação e progressão em muitos tipos tumorais, como câncer de cólon familiar, melanoma e pulmão; sendo que mutações em β-Catenina (CTNNb1) explicam só 30% dos casos de sinalização aberrante encontrada no câncer de mama, indicando que existem outros componentes e/ou reguladores da via que possam estar envolvidos. O objetivo deste trabalho foi avaliar as variantes genéticas e epigenéticas nos genes do complexo de degradação de β-Catenina num grupo de pacientes com câncer de mama e num grupo controle; e determinar os perfis de transcrição dos componentes da via de sinalização Wnt e da molécula de expressão exclusiva do epitélio mamário, a Mamaglobina Humana (MGA), assim como associar estes resultados com as características clínicas, histológicas e patológicas do tumor. Para atingir este objetivo foram coletadas amostras de sangue periférico de 102 mulheres com câncer de mama e 102 mulheres sadias como grupo controle. A avaliação das variantes rs465899 do gene APC, rs2240308 e rs151279728 do gene AXIN2, rs5030625 do gene CDH1 e rs334558 do gene GSK3, foi realizada por meio de PCR-RFLPs e sequenciamento, a análise dos perfis de metilação dos promotores pela MS-PCR. A RT-qPCR foi usada para determinar os níveis de expressão dos componentes da via e a MGA. As variantes rs2240308 e rs151279728 do gene AXIN2 mostraram uma forte associação com o risco de desenvolver o câncer de mama. Um aumento significativo foi observado no nível de expressão de AXIN2 no grupo de mulheres com câncer de mama. Análises adicionais mostraram perfis de expressão diferencial dos genes APC, AXIN2, CTNNB1, GSK3 e CSNK1A1 associado ao status dos receptores hormonais e histogênese tumoral. MGA foi identificado exclusivamente em 38% dos pacientes com câncer de mama e foi associada com a progressão da doença. Este é o primeiro estudo que relaciona uma variante do gene AXIN2 com o câncer de mama na população brasileira. As variantes avaliadas do gene AXIN2 são marcadores promissores de susceptibilidade ao câncer de mama na população estudada, sendo importante, a avaliação desta variante genética na população e determinar o seu real efeito no processo de iniciação e/ou progressão do câncer de mama. / Background: Wnt/β-catenin signaling pathway is an important regulator of cellular functions such as proliferation, survival and cell adhesion. This pathway is associated with tumor initiation and progression; -catenin (CTNNB1) mutations explains only 30% of aberrant signaling found in breast cancer, indicating that other components and/or regulating of the Wnt/β-catenin pathway may be involved. Objective: The objective of the study was to evaluate the APC rs465899, AXIN2 rs2240308 and rs151279728, CDH1 rs5030625 and GSK3 rs334558 polymorphisms, APC, AXIN2, CDH1 and GSK3 promoter methylation status and expression profile of -Catenin destruction complex genes and MGA in peripheral blood of breast cancer patients. Methods: We collected peripheral blood samples from 102 breast cancer and 102 healthy subjects. The identification of the mutation was performed using PCR-RFLPs and DNA sequencing. MSP and HRM-MS was used to measure promoter methylation and RT-qPCR to determine expression profile. Results: We found significant association of AXIN2 rs2240308 polymorphism with breast cancer. Increased risk was observed even after stratification based on clinicpathological characteristics. AXIN2 rs151279728 polymorphism was found only in 9 breast cancer patients, but none in control group subject. APC and CDH1 polymorphisms were not associated with breast cancer. GSK3 polymorphism was weak associated with breast cancer and heterozygous status was associated with breast cancer protection after group stratification. APC and CDH1 promoter methylation in breast cancer patients was found. Significant increase was observed in AXIN2, CTNNB1 and GSK3 level expression in breast cancer patients. APC was down-regulated in breast cancer patients. Further analyses, showed APC, AXIN2, CTNNB1, GSK3 and CSKN1A1 gene expression associated to receptor status and histological type. MGA was found only in breast cancer patients and was associated with cancer progression. Conclusion: The present study reports, for the first time, that AXIN2 genetic defect and -catenin destruction complex expression disturbance may be found in breast cancer patients, providing additional support to the role of Wnt/-catenin pathway dysfunction in breast cancer tumorigenesis. However, the functional consequence of this genetic alteration remains to be determined. In another hand MGA was determined like a good biomarker for diagnosis and prognosis outcome.

Page generated in 0.0378 seconds