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1.
PLoS One ; 12(11): e0187333, 2017.
Article in English | MEDLINE | ID: mdl-29145406

ABSTRACT

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, supporting 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 associated 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 determine 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 IL-10/claudin-10 is a promising target for the development of therapeutic agents against aggressive melanoma.


Subject(s)
Claudins/metabolism , Interleukin-10/metabolism , Melanoma, Experimental/metabolism , Animals , Cell Line, Tumor , Melanoma, Experimental/pathology , Mice , Mice, Inbred C57BL , Neoplasm Metastasis
2.
PLoS One ; 8(5): e62805, 2013.
Article in English | MEDLINE | ID: mdl-23667522

ABSTRACT

B-1 cells constitute a distinct B cell population with unique phenotypic and functional characteristics. They represent the main B cell population found in mouse peritoneal and pleural cavities. The communication between B-1 cells and peritoneal macrophages has been previously studied, and the effect this interaction has on macrophages has been previously described. Using an in vitro co-culture model, herein we demonstrated that peritoneal macrophages were able to increase survival rates and to stimulate proliferation of B-1 cells. IL-6 was also found to be important in B-1 cell survival; recombinant IL-6 increases the percentage of viable B-1 cells in culture. Furthermore, molecules involved in the IL-6 signaling pathway, such as STAT-3 and Bcl-2, were highly expressed in B-1 cells after co-culture with peritoneal macrophages. IL-6-deficient peritoneal macrophages were not able to increase B-1 cell survival, confirming the importance of this cytokine. Altogether, our results indicate a novel mechanism in which peritoneal macrophages are able to regulate the B-1 population via IL-6 secretion.


Subject(s)
B-Lymphocytes/physiology , Interleukin-6/metabolism , Macrophages, Peritoneal/physiology , Receptor Cross-Talk/physiology , Signal Transduction/physiology , Animals , Blotting, Western , Flow Cytometry , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Proto-Oncogene Proteins c-bcl-2/metabolism , STAT3 Transcription Factor/metabolism
3.
Immunobiology ; 218(4): 609-19, 2013 Apr.
Article in English | MEDLINE | ID: mdl-22954710

ABSTRACT

B-1 cells can be differentiated from B-2 cells because they are predominantly located in the peritoneal and pleural cavities and have distinct phenotypic patterns and activation properties. The role of both cell populations in cancer progression is still controversial. Previous studies have indicated that direct contact between B-1 cells and B16 melanoma tumor cells (B16) increases the metastatic potential of the tumor cells. However, cellular changes that are induced in B-1 cells during the interaction between these two cell types have not been evaluated. In the present study, it is hypothesized that B-1 cells are modified after their interaction with tumor cells, leading to both increased cell viability and rate of proliferation. Additionally, soluble factors that were secreted by B16 cells were sufficient to augment B-1 cell viability and to modify the production of IL-10 by B-1 cells. Impressively, after direct or indirect contact with the B16 cells, B-1 cells became resistant to radiation-induced cell death. Thus, future studies that assess the importance of concomitant immunity and other conventional therapies in cancer treatment are needed.


Subject(s)
B-Lymphocyte Subsets/immunology , Cell Communication/immunology , Cell Proliferation , Interleukin-10/immunology , Melanoma/immunology , Animals , B-Lymphocyte Subsets/pathology , Cell Communication/genetics , Cell Line, Tumor , Cell Survival/genetics , Cell Survival/immunology , Interleukin-10/genetics , Melanoma/genetics , Melanoma/pathology , Melanoma/radiotherapy , Mice , Mice, Knockout , Neoplasm Metastasis , Peritoneum/immunology , Peritoneum/pathology , Pleural Cavity/immunology , Pleural Cavity/pathology
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