In vitro evaluation of the biological effect of SOFAT on osteoblasts
INTERNATIONAL IMMUNOPHARMACOLOGY
Authors: Napimoga, Marcelo Henrique; Dias Demasi, Ana Paula; Jarry, Christian Rado; Ortega, Mauricio Cardoso; de Araujo, Vera Cavalcanti; Martinez, Elizabeth Ferreira
Abstract
Osteoclastogenesis is regulated by osteoblasts especially through the production of receptor activator of nuclear factor kappa-B ligand (RANKL). Immune cells present in inflamed tissues markedly increase this process by upregulating RANKL directly or by secreting proinflammatoly cytokines, which stimulate RANKL expression by osteoblasts. A novel T-cell-secreted cytokine, termed secreted osteoclastogenic factor of activated T cells (SOFAT) was recently described. To better understand how SOFAT affects bone metabolism, we investigated its effect on osteoblastic cells. We demonstrate here that SOFAT did not influence MC3T3 cells viability and proliferation, evaluated by trypan blue exclusion and MU tests, respectively. SOFAT stimulated the secretion of IL-6, IL-10 and GM-CSF in MOT3 cells, as shown by the analysis of an inflammatory cytokines ELISA array. The upregulation of the corresponding genes was checked by qPCR. Both RANKL mRNA and protein levels did not significantly change in the presence of SOFAT, evaluated by qPCR and western blotting, respectively. In addition, analysis of a PCR array for IL6/STAT3 pathway demonstrated that SOFAT induced the expression of BCl2, IL1B, IL10, IL22, IL2RA, IL4, IL6, TNFSF10 and PLAS3, while IL2, IL21, CD4, CSF3R and TNF were repressed. Our results confirm that the SOFAT mechanism of action is RANKL-independent and indicate that, by co-opting osteoblasts to increase the production of osteoclastogenic cytolcines, SOFAT may exacerbate inflammation and support osteoclast formation and bone destruction. (C) 2015 Elsevier B.V. All rights reserved.
Differential gene induction by type I and type II Interferons and their combination
JOURNAL OF INTERFERON AND CYTOKINE RESEARCH
Authors: Sanda, Corneliu; Weitzel, Patrick; Tsukahara, Takuma; Schaley, Joel; Edenberg, Howard J.; Stephens, Matthew A.; McClintick, Jeanette N.; Blatt, Lawrence M.; Li, Lang; Brodsky, Leonid; Taylor, Milton W.
Abstract
Type I and type II interferons (IFNs) bind to different cell surface receptors but activate overlapping signal transduction pathways. We examined the effects of a type I IFN (IFN-alpha con1) and a type II IFN (IFN-gamma 1b) on gene expression in A549 cells and demonstrate that there is a common set of genes modulated by both IFNs as well as a set of genes specifically regulated by each, reflecting the activation of different signaling pathways. In particular, IFN-gamma induced many more genes of the signaling pathways, apoptosis, and cytokine interactions than did IFN-alpha. Even with genes induced by both IFNs there were distinctive quantitative differences in expression. IFN-gamma 1b plays a major role in the induction and regulation of the complement pathway. Previous work has shown a synergistic antiviral and antiproliferative effect of type I and type II IFNs in cell culture and in the treatment of tumors in mice. We demonstrate that a majority of genes showed an additive effect of IFN-alpha con1 and IFN-gamma 1b, but a subset of genes is synergistically induced; these include ISG20, MX2, OAS2, and other genes known to be involved in the antiviral response, TRAIL ( TNFSF10) and caspases involved in apoptosis and chemokine genes RANTES, CXCL10, and CXCL11. Greater than additive transcription of some of these genes in the presence of both IFNs was confirmed by real-time kinetic RT-PCR. Elevated induction of many of these genes may be sufficient to explain the synergistic antiviral and antitumor effects of this combination of IFNs in vivo.