• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 2
  • 1
  • Tagged with
  • 3
  • 3
  • 2
  • 2
  • 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

Mechanisms of cardiac chamber-specific gene expression of natriuretic peptides

Majalahti, T. (Theresa) 07 October 2008 (has links)
Abstract Clarification of the mechanisms of cardiac-specific gene expression provides not only basic knowledge about how the gene expression is regulated in the heart, but also about the changes in the gene expression during the development of cardiovascular diseases. The purpose of this study was to analyze the mechanisms of cardiac chamber-specific gene expression and cardiac gene activation induced by mechanical load. In the present study, the experiments were carried out by using two cardiac genes, salmon cardiac peptide (sCP) and rat B-type natriuretic peptide (BNP) genes as models. sCP was discovered previously in our laboratory and turned out to be extremely cardiac-specific, representing A-type natriuretic peptide characters in an exaggerated way. In neonatal rat cardiomyocytes, the sCP promoter activity was shown to be strictly restricted to atrial cells and the promoter to be inert to cardiac hypertrophy-inducing factors. In order to find out the mechanisms of earlier proved BNP gene activation by mechanical load, BNP promoter activity was studied in vivo in adult rat hearts. The tandem GATA transcription factor binding site at position -80/-91 was shown to be essential for the BNP gene induction by angiotensin II. To clarify the possiblity to transfer the characters of the BNP gene into the sCP gene, short BNP fragments were inserted to the sCP gene promoter. The otherwise atrial-restricted sCP promoter was shown to be switched on in rat ventricular cardiomyocytes by adding a short BNP proximal promoter element to the sCP promoter, preferably near to the transcription start site. This activity was partly dependent on the -80/-91 GATA sites in the BNP promoter. Thus, A-type natriuretic peptide regulation can be switched to B-type regulation by a short proximal BNP promoter element. In conclusion, these studies reveal certain basic differences in cardiac atrial and ventricular gene expression.
2

Soro de animais submetidos à sépsis grave ou infectados experimentalmente com o Trypanosoma cruzi induz perda da distrofina em culturas de cardiomiócitos: o papel da ativação e bloqueio da calpaína / Serum from animals subjected to severe sepsis or experimentally infected with Trypanosoma cruzi induces dystrophin loss in cardiomyocytes cultured: role of calpain activation and blocked

Malvestio, Lygia Maria Mouri 19 February 2014 (has links)
O complexo distrofina-glicoproteínas associadas (DGC) localiza-se no sarcolema das células musculares esqueléticas e cardíacas e tem como função principal proporcionar ligação mecânica entre o citoesqueleto intracelular e a matriz extracelular. Estudos prévios realizados em nosso laboratório, focalizando o complexo DGC, demonstraram perda de proteínas importantes desse complexo. As situações avaliadas anteriormente foram: infecção experimental por Trypanosoma cruzi (T. cruzi) e sépsis experimental. Em ambas as situações verificou-se a perda da distrofina acompanhada por disfunção contrátil e aumento nos níveis da calpaína, protease dependente de cálcio implicada na proteólise da distrofina. Todavia, o mecanismo responsável pela ativação das calpaínas e proteólise da distrofina na infecção experimental por T. cruzi e na sépsis experimental não está totalmente definido. O objetivo desse trabalho foi avaliar in vitro o mecanismo responsável pela ativação das calpaínas nas culturas de cardiomiócitos desafiadas com o soro dos animais infectados experimentalmente com T. cruzi ou com o soro dos animais submetidos à sépsis grave experimental. Camundongos C57BL/6 foram submetidos à sépsis grave ou infectados com a cepa Y de T. cruzi. No pico de expressão das citocinas pró-inflamatórias, 12 dias após inoculação do parasito ou 6 horas após a indução da sépsis, o sangue foi coletado e o soro separado. Corações de camundongos recém-nascidos foram isolados para o cultivo dos cardiomiócitos. No quinto dia após o início das culturas, as células foram estimuladas com 10% do soro de animais infectados com T. cruzi ou o soro de animais submetidos à sépsis grave durante 24 horas. Após, as células foram coletadas para análises de Western blotting e imunofluorescência para verificar a expressão da distrofina e calpaína-1. Avaliou-se também, por imunofluorescência, a expressão do NF-B. Os cardiomiócitos foram estimulados e tratados com o dantrolene, inibidor da liberação de cálcio do retículo sarcoplasmático, ou ALLN, inibidor da calpaína-1, e após coletados para verificar a expressão da distrofina e calpaína-1 por Western blotting e imunofluorescência. Nossos resultados mostraram uma redução significativa na expressão da distrofina com desarranjo das miofibrilas contráteis e formação de bolhas citoplasmáticas, além de um aumento nos níveis da calpaína-1 e do NF-B. O tratamento com dantrolene nas culturas estimuladas com o soro de animais infectados experimentalmente com T. cruzi ou com o soro dos animais submetidos à sépsis grave, recuperou a expressão da distrofina e reduziu os níveis da calpaína-1. O tratamento com ALLN nos cardiomiócitos estimulados com o soro de animais infectados experimentalmente com T. cruzi recuperou a expressão da distrofina e não alterou os níveis da calpaína-1. Nas culturas estimuladas com o soro dos animais submetidos à sépsis grave, o tratamento com o ALLN recuperou a expressão da distrofina e reduziu os níveis da calpaína-1. Nossos resultados demonstraram que citocinas pró-inflamatórias presentes no soro dos animais infectados experimentalmente com T. cruzi como também no soro dos animais submetidos à sépsis grave induziriam um aumento no influxo de cálcio com consequente ativação das calpaínas, as quais atuariam na ativação do NF-B e na degradação da distrofina. Esse mecanismo poderia ser responsável pela proteólise da distrofina cardíaca observada na infecção experimental por Trypanosoma cruzi como também sépsis experimental. Mais estudos são necessários para elucidar este mecanismo, principalmente em relação a inibidores dos canais de cálcio, das citocinas pró-inflamatórias e das calpaínas, com o objetivo de fornecer novas vias de intervenção na prevenção de alterações cardíacas observadas na doença de Chagas e na sépsis. / The dystrophin-glycoprotein complex (DGC), located in the sarcolemma of cardiac and skeletal muscle cells and concentrated along the plasma membrane in costameric structures provides a framework that connects the intracellular cytoskeleton to the extracellular matrix. Previous studies from our laboratory clearly demonstrated disruption of DGC proteins in experimentally-induced T. cruzi infection and experimental sepsis. Both situation presented dystrophin disruption associated with contractile dysfunction and increased calpain levels, calcium dependent protease responsible for dystrophin proteolysis. However, the mechanism responsible for calpain activation and dystrophin proteolysis in experimentally-induced T. cruzi infection and experimental sepsis is not totally understood. The aim of this study was to evaluate in vitro the mechanism responsible for calpain activation in cultured cardiomyocytes challenged with serum from animals experimentally infected with T. cruzi or subjected to severe sepsis. Mice C57BL/6 were subjected to sepsis induction or infected with Y strain from T. cruzi. At the peak of proinflammatory cytokines expression, 12 days after parasite inoculation or 6 hours after sepsis induction, the blood was collected and the serum separated. Hearts from newborn mice were isolated for culture of cardiomyocytes. After 5 days of incubation, the cardiac cells were stimulated with 10% of serum from animals experimentally infected with T. cruzi or subjected to severe sepsis during 24 hours, and collected for Western blotting and immunofluorescence analysis to verify dystrophin and calpain-1 expression. The expression of NF-B was evaluated by immunofluorescence. The treatments with dantrolene, inhibitor of calcium release from sarcoplasmic reticulum, or ALLN, calpain-1 inhibitor, were performed in cultured cardiomyocytes stimulated during 24 hours with serum from animals infected with T. cruzi or subjected to severe sepsis, and dystrophin and calpain-1 expression were analyzed by Western blotting and immunofluorescence. Our results demonstrated loss of dystrophin associated with myofibers derangement and presence of cytoplasmic blebs as well increase of calpain-1 and NF-B expression. The dantrolene treatment in cultures stimulated with serum from animals infected with T. cruzi or subjected to severe sepsis recovey dystrophin expression and reduced calpain-1 levels. The ALLN treatment in cardiomyocytes stimulated with serum from animals infected with T. cruzi recovery dystrophin expression and preserved calpain-1 levels. In cultures stimulated with serum from animals subjected to severe sepsis, the ALLN treatment recovery dystrophin expression and decreased calpain-1 levels. Our results demonstrated that proinflammatory cytokines in serum from mice infected with T. cruzi or subjected to severe sepsis could induce an increase calcium influx with calpain activation, which could act in NF-B activation and dystrophin disruption. Possibly, this mechanism could be responsible to dystrophin proteolysis observed in experimentally-induced acute T. cruzi infection and experimental sepsis. More studies are needed to elucidate this mechanism, especially in relation to calcium channel blockers and inhibitors of pro-inflammatory cytokines and calpains, which may provide new routes for intervention to prevent cardiac damage in Chagas disease and sepsis.
3

Soro de animais submetidos à sépsis grave ou infectados experimentalmente com o Trypanosoma cruzi induz perda da distrofina em culturas de cardiomiócitos: o papel da ativação e bloqueio da calpaína / Serum from animals subjected to severe sepsis or experimentally infected with Trypanosoma cruzi induces dystrophin loss in cardiomyocytes cultured: role of calpain activation and blocked

Lygia Maria Mouri Malvestio 19 February 2014 (has links)
O complexo distrofina-glicoproteínas associadas (DGC) localiza-se no sarcolema das células musculares esqueléticas e cardíacas e tem como função principal proporcionar ligação mecânica entre o citoesqueleto intracelular e a matriz extracelular. Estudos prévios realizados em nosso laboratório, focalizando o complexo DGC, demonstraram perda de proteínas importantes desse complexo. As situações avaliadas anteriormente foram: infecção experimental por Trypanosoma cruzi (T. cruzi) e sépsis experimental. Em ambas as situações verificou-se a perda da distrofina acompanhada por disfunção contrátil e aumento nos níveis da calpaína, protease dependente de cálcio implicada na proteólise da distrofina. Todavia, o mecanismo responsável pela ativação das calpaínas e proteólise da distrofina na infecção experimental por T. cruzi e na sépsis experimental não está totalmente definido. O objetivo desse trabalho foi avaliar in vitro o mecanismo responsável pela ativação das calpaínas nas culturas de cardiomiócitos desafiadas com o soro dos animais infectados experimentalmente com T. cruzi ou com o soro dos animais submetidos à sépsis grave experimental. Camundongos C57BL/6 foram submetidos à sépsis grave ou infectados com a cepa Y de T. cruzi. No pico de expressão das citocinas pró-inflamatórias, 12 dias após inoculação do parasito ou 6 horas após a indução da sépsis, o sangue foi coletado e o soro separado. Corações de camundongos recém-nascidos foram isolados para o cultivo dos cardiomiócitos. No quinto dia após o início das culturas, as células foram estimuladas com 10% do soro de animais infectados com T. cruzi ou o soro de animais submetidos à sépsis grave durante 24 horas. Após, as células foram coletadas para análises de Western blotting e imunofluorescência para verificar a expressão da distrofina e calpaína-1. Avaliou-se também, por imunofluorescência, a expressão do NF-B. Os cardiomiócitos foram estimulados e tratados com o dantrolene, inibidor da liberação de cálcio do retículo sarcoplasmático, ou ALLN, inibidor da calpaína-1, e após coletados para verificar a expressão da distrofina e calpaína-1 por Western blotting e imunofluorescência. Nossos resultados mostraram uma redução significativa na expressão da distrofina com desarranjo das miofibrilas contráteis e formação de bolhas citoplasmáticas, além de um aumento nos níveis da calpaína-1 e do NF-B. O tratamento com dantrolene nas culturas estimuladas com o soro de animais infectados experimentalmente com T. cruzi ou com o soro dos animais submetidos à sépsis grave, recuperou a expressão da distrofina e reduziu os níveis da calpaína-1. O tratamento com ALLN nos cardiomiócitos estimulados com o soro de animais infectados experimentalmente com T. cruzi recuperou a expressão da distrofina e não alterou os níveis da calpaína-1. Nas culturas estimuladas com o soro dos animais submetidos à sépsis grave, o tratamento com o ALLN recuperou a expressão da distrofina e reduziu os níveis da calpaína-1. Nossos resultados demonstraram que citocinas pró-inflamatórias presentes no soro dos animais infectados experimentalmente com T. cruzi como também no soro dos animais submetidos à sépsis grave induziriam um aumento no influxo de cálcio com consequente ativação das calpaínas, as quais atuariam na ativação do NF-B e na degradação da distrofina. Esse mecanismo poderia ser responsável pela proteólise da distrofina cardíaca observada na infecção experimental por Trypanosoma cruzi como também sépsis experimental. Mais estudos são necessários para elucidar este mecanismo, principalmente em relação a inibidores dos canais de cálcio, das citocinas pró-inflamatórias e das calpaínas, com o objetivo de fornecer novas vias de intervenção na prevenção de alterações cardíacas observadas na doença de Chagas e na sépsis. / The dystrophin-glycoprotein complex (DGC), located in the sarcolemma of cardiac and skeletal muscle cells and concentrated along the plasma membrane in costameric structures provides a framework that connects the intracellular cytoskeleton to the extracellular matrix. Previous studies from our laboratory clearly demonstrated disruption of DGC proteins in experimentally-induced T. cruzi infection and experimental sepsis. Both situation presented dystrophin disruption associated with contractile dysfunction and increased calpain levels, calcium dependent protease responsible for dystrophin proteolysis. However, the mechanism responsible for calpain activation and dystrophin proteolysis in experimentally-induced T. cruzi infection and experimental sepsis is not totally understood. The aim of this study was to evaluate in vitro the mechanism responsible for calpain activation in cultured cardiomyocytes challenged with serum from animals experimentally infected with T. cruzi or subjected to severe sepsis. Mice C57BL/6 were subjected to sepsis induction or infected with Y strain from T. cruzi. At the peak of proinflammatory cytokines expression, 12 days after parasite inoculation or 6 hours after sepsis induction, the blood was collected and the serum separated. Hearts from newborn mice were isolated for culture of cardiomyocytes. After 5 days of incubation, the cardiac cells were stimulated with 10% of serum from animals experimentally infected with T. cruzi or subjected to severe sepsis during 24 hours, and collected for Western blotting and immunofluorescence analysis to verify dystrophin and calpain-1 expression. The expression of NF-B was evaluated by immunofluorescence. The treatments with dantrolene, inhibitor of calcium release from sarcoplasmic reticulum, or ALLN, calpain-1 inhibitor, were performed in cultured cardiomyocytes stimulated during 24 hours with serum from animals infected with T. cruzi or subjected to severe sepsis, and dystrophin and calpain-1 expression were analyzed by Western blotting and immunofluorescence. Our results demonstrated loss of dystrophin associated with myofibers derangement and presence of cytoplasmic blebs as well increase of calpain-1 and NF-B expression. The dantrolene treatment in cultures stimulated with serum from animals infected with T. cruzi or subjected to severe sepsis recovey dystrophin expression and reduced calpain-1 levels. The ALLN treatment in cardiomyocytes stimulated with serum from animals infected with T. cruzi recovery dystrophin expression and preserved calpain-1 levels. In cultures stimulated with serum from animals subjected to severe sepsis, the ALLN treatment recovery dystrophin expression and decreased calpain-1 levels. Our results demonstrated that proinflammatory cytokines in serum from mice infected with T. cruzi or subjected to severe sepsis could induce an increase calcium influx with calpain activation, which could act in NF-B activation and dystrophin disruption. Possibly, this mechanism could be responsible to dystrophin proteolysis observed in experimentally-induced acute T. cruzi infection and experimental sepsis. More studies are needed to elucidate this mechanism, especially in relation to calcium channel blockers and inhibitors of pro-inflammatory cytokines and calpains, which may provide new routes for intervention to prevent cardiac damage in Chagas disease and sepsis.

Page generated in 0.0856 seconds