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1.
Int J Mol Sci ; 25(4)2024 Feb 17.
Artigo em Inglês | MEDLINE | ID: mdl-38397053

RESUMO

Odontogenic keratocyst (OK) is a benign intraosseous cystic lesion characterized by a parakeratinized stratified squamous epithelial lining with palisade basal cells. It represents 10-12% of odontogenic cysts. The changes in its classification as a tumor or cyst have increased interest in its pathogenesis. OBJECTIVE: Identify key genes in the pathogenesis of sporadic OK through in silico analysis. MATERIALS AND METHODS: The GSE38494 technical sheet on OK was analyzed using GEOR2. Their functional and canonical signaling pathways were enriched in the NIH-DAVID bioinformatic platform. The protein-protein interaction network was constructed by STRING and analyzed with Cytoscape-MCODE software v 3.8.2 (score > 4). Post-enrichment analysis was performed by Cytoscape-ClueGO. RESULTS: A total of 768 differentially expressed genes (DEG) with a fold change (FC) greater than 2 and 469 DEG with an FC less than 2 were identified. In the post-enrichment analysis of upregulated genes, significance was observed in criteria related to the organization of the extracellular matrix, collagen fibers, and endodermal differentiation, while the downregulated genes were related to defensive response mechanisms against viruses and interferon-gamma activation. CONCLUSIONS: Our in silico analysis showed a significant relationship with mechanisms of extracellular matrix organization, interferon-gamma activation, and response to viral infections, which must be validated through molecular assays.


Assuntos
Cistos Odontogênicos , Tumores Odontogênicos , Humanos , Interferon gama , Cistos Odontogênicos/genética , Cistos Odontogênicos/patologia , Tumores Odontogênicos/patologia , Mapas de Interação de Proteínas/genética
2.
Rev. ADM ; 77(6): 287-294, nov.-dic. 2020. ilus, tab
Artigo em Espanhol | LILACS | ID: biblio-1150870

RESUMO

Introducción: El carcinoma oral de células escamosas (COCE) es una neoplasia epitelial maligna que se presenta frecuentemente entre la quinta y sexta década de la vida. Su compleja patogénesis incluye el proceso de angiogénesis y la regulación del microambiente tumoral como mecanismos de progresión tumoral. Objetivo: Determinar la relación entre las variables clínicas e histológicas del COCE con la inmunoexpresión de VEGF, FGF-1, FGFR-1, TGFB-1, TGFBR-II y CD105. Material y métodos: Nueve casos de COCE; tres bien (BD), tres moderado (MD) y tres pobremente diferenciados (PD) obtenidos del Departamento de Patología y Medicina Bucal, División de Estudios de Postgrado e Investigación. Se aplicó la técnica de inmunohistoquímica por peroxidasa para identificar la expresión de VEGF, FGF-1, FGFR- 1, TGFB-1, TGFBR-II y CD105. El análisis de inmunoexpresión se realizó con el programa ImageJ. Se aplicó la prueba de Kruskal-Wallis y correlación de Spearman (p < 0.05). Resultados: La inmunoexpresión de VEGF fue mayor en los COCE PD, FGFR-1 fue positivo en los BD, mientras que FGF, TGFB-1 y TGFBR-II fueron negativos. El análisis de microdensidad vascular (MVD) indicó mayor número de vasos CD105 positivos en los carcinomas BD, seguidos de los PD y MD. Conclusión: Considerando los resultados obtenidos podemos concluir que la angiogénesis es un fenómeno constante independiente del grado de diferenciación que durante el proceso de transformación de una neoplasia requerirá la formación de vasos sanguíneos y que este proceso puede ser modulado por factores de crecimiento tales como los analizados en este trabajo (AU)


Introduction: Oral squamous cell carcinoma (OSCC) is a malignant epithelial neoplasm that frequently occurs between the fifth and sixth decade of life. Its complex pathogenesis includes the angiogenesis process and the regulation of the tumor microenvironment as mechanisms of tumor progression. Objective: To determine the relationship between the clinical and histological variables of OSCC with the immunoexpression of VEGF, FGF-1, FGFR-1, TGFB- 1, TGFBR-II and CD105. Material and methods: Nine cases of OSCC; three well (WD), three moderate (MD) and three poorly differentiated (PD) obtained from the Oral Medicine and Pathology Department, Division of Graduate Studies and Research. The peroxidase immunohistochemistry technique was performed to identify the expression of VEGF, FGF-1, FGFR-1, TGFB-1, TGFBR-II and CD105. The immunoexpression analysis was performed with the ImageJ software. The Kruskal-Wallis and Spearman correlation test were performed (p < 0.05). Results: VEGF immunoexpression was higher in PD OSCC, while FGFR-1 was predominantly positive in WD; FGF, TGFB-1 and TGFBR-II were negative. Vascular microdensity analysis (MVD) indicated a greater number of CD105 positive vessels in WD carcinomas, followed by PD and MD. Conclusion: Considering the results obtained, we can conclude that angiogenesis is a constant phenomenon independent of the degree of differentiation; that during the transformation process of a neoplasm it will require the formation of blood vessels and that this process can be modulated by growth factors such as those analyzed in this work (AU)


Assuntos
Humanos , Masculino , Feminino , Adulto , Pessoa de Meia-Idade , Idoso , Carcinoma de Células Escamosas/imunologia , Fator 1 de Crescimento de Fibroblastos , Fator A de Crescimento do Endotélio Vascular , Vasos Sanguíneos , Imuno-Histoquímica , Técnicas Histológicas , Peptídeos e Proteínas de Sinalização Intercelular , Receptor Tipo 1 de Fator de Crescimento de Fibroblastos , Endoglina , México
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