Expressão proteíca do gene HOXA10 e dos receptores de estrogênio e progesterona no epitélio, estroma e tecido muscular liso perilesional de endometriose e do reto-sigmoide
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HOXA10 was expressed in endometriotic lesions, potentially conferring new tissue identity, and its expression correlated with progesterone receptors but not estrogen receptors.
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Abstract
INTRODUÇÃO: Apesar de a endometriose profunda (EPF) ser a forma da doença de maior repercussão clínica, os estudos sobre a doença costumam ser baseados em lesões de endometriose ovariana (EOV) e peritoneal (EPT). A patogênese da EPF ainda é objeto de amplo debate, pois há poucos estudos feitos exclusivamente com lesões de EPF. O fator de transcrição codificado pelo gene homeobox A10 (HOXA10) regula a conferência de identidade tecidual de útero ao ducto paramesonéfrico indiferenciado durante o período embrionário. O gene mantém um padrão de expressão temporal e espacial bem definido e, durante a fase adulta, continua expresso no miométrio e endométrio. Sugere-se que HOXA10 esteja implicado na patogênese da endometriose, pois é expresso em EOV, EPT, endometriose pulmonar e endometriose retovaginal, um tipo de EPF. Possivelmente, o gene HOXA10 seja necessário para conferir identidade de endometriose a um tecido indiferenciado. O estradiol e a progesterona ativam a transcrição do gene HOXA10 e regulam diretamente sua ação. Esses hormônios estão envolvidos na patogênese da EPF, e suas atividades podem ser inferidas pelo estudo da expressão tecidual de seus receptores. A endometriose de reto-sigmoide (ERS) é um modelo representativo para o estudo da EPF. Neste estudo, avaliamos a expressão proteica do fator de transcrição HOXA10, das isoformas ? (ER-alfa) e beta (ER-beta) dos receptores de estrogênio, e do receptor de progesterona AB (PR-AB) e sua isoforma B (PR-B) na lesão (LES) e no tecido muscular liso perilesional (TMLP) de ERS de pacientes inférteis, durante as fases proliferativa e secretora do ciclo menstrual. MÉTODOS: amostras de LES e TMLP de ERS de 18 pacientes (9 operadas em cada fase do ciclo menstrual) foram agrupadas em blocos de microarranjos de tecidos (tissue microarray). As amostras foram coradas com anticorpos específicos para análise imunoistoquímica de cada uma das proteínas. Foram então avaliadas por microscopia ótica (MO) e pela análise das imagens digitalizadas das lâminas com por um software específico, a análise morfométrica (AM). RESULTADOS: HOXA10 foi expresso no estroma de LES de ERS durante a fase secretora, de acordo com a MO. ER-alfa e ER-betaforam expressos em glândulas e estroma de LES e TMLP de ERS durante ambas as fases do ciclo, de acordo com a MO e a AM. PR-AB e PR-B foram expressos em glândulas e estroma de LES de ERS durante ambas as fases do ciclo, de acordo com a MO. PR-B foi mais expresso durante a fase secretora, independentemente do local de expressão, segundo a AM. A expressão de HOXA10 correlacionou-se diretamente com PR-AB e PR-B na ERS, segundo a AM. Não houve correlação entre ER-alfa e ER-beta com HOXA10, PR-AB ou PR-B em nenhuma fase do ciclo ou local de expressão de ERS. CONCLUSÕES: HOXA10 é expresso em ERS, um local fora do seu eixo espacial de expressão. A presença de HOXA10 pode ser necessária para conferir a identidade \\"de novo\\" na EPF, incluindo ERS. A progesterona pode ativar o gene HOXA10 e regular esta ação, possivelmente mediada por PR-B. O estradiol exerce sua ação mitógena na ERS através ER-alfa e ER-beta
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