Use este identificador para citar ou linkar para este item: http://repo.saocamilo-sp.br:8080/jspui/handle/123456789/1698
Título: The axis IL-10/claudin-10 is implicated in the modulation of aggressiveness of melanoma cells by B-1 lymphocytes
Autor(es): Perez, Elizabeth Cristina
Xander, Patricia
Laurindo, Maria Fernanda Lucatelli
Brito, Ronni Rômulo Novaes e
Camolese, Vivanco, Bruno
Mortara, Renato Arruda
Mariano, Mario
Lopes, José Daniel
Keller, Alexandre Castro
Palavras-chave: Agressão
Melanoma
Subpopulações de linfócitos B
Data do documento: 2017
Editor: Public Library of Science
Citação: Perez, Elizabeth Cristina, et al. “The axis IL-10/claudin-10 is implicated in the modulation of aggressiveness of melanoma cells by B-1 lymphocytes”. PLOS ONE, organizado por Antonio Facchiano, vol. 12, no 11, novembro de 2017, p. e0187333. DOI.org (Crossref), https://doi.org/10.1371/journal.pone.0187333.
Resumo: B-1 lymphocytes are known to increase the metastatic potential of B16F10 melanoma cells via the extracellular signal-regulated kinase (ERK) pathway. Since IL-10 is associated with B-1 cells performance, we hypothesized that IL-10 could be implicated in the progression of melanoma. In the present work, we found that the C57BL/6 mice, inoculated with B16F10 cells that were co-cultivated with B-1 lymphocytes from IL-10 knockout mice, developed fewer metastatic nodules than the ones which were injected with the melanoma cells that were cultivated in the presence of wild-type B-1 cells. The impairment of metastatic potential of the B16F10 cells was correlated with low activation of the ERK signaling pathway, sup porting the idea that the production of IL-10 by B-1 cells influences the behavior of the tumor. A microarray analysis of the B-1 lymphocytes revealed that IL-10 deficiency is asso ciated with down-regulation of the genes that code for claudin-10, a protein that is involved in cell-to-cell contact and that has been linked to lung adenocarcinoma. In order to deter mine the impact of claudin-10 in the cross-talk between B-1 lymphocytes and the B16F10 tumor cells, we took advantage of small interfering RNA. The silencing of claudin-10 gene in B-1 lymphocytes inhibited activation of the ERK pathway and abrogated the B-1-induced aggressive behavior of the B16F10 cells. Thus, our findings suggest that the axis IL10/clau din-10 is a promising target for the development of therapeutic agents against aggressive melanoma.
URI: http://repo.saocamilo-sp.br:8080/jspui/handle/123456789/1698
ISSN: 1932-6203
Aparece nas coleções:Artigos de Periódicos

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