1-Methyl-D-tryptophan Reduces Tumor CD133(+) cells, Wnt/beta-catenin and NF-kappa beta p65 while Enhances Lymphocytes NF-kappa beta 2, STAT3, and STAT4 Pathways in Murine Pancreatic Adenocarcinoma
SCIENTIFIC REPORTS
Authors: Alahdal, Murad; Xing, Yun; Tang, Tingting; Liang, Jin
Abstract
1-Methyl-D-tryptophan (1-MT) is extensively utilized in preclinical trials to deplete indoleamine 2,3-dioxigenase (IDO) activity and kynurenine pathway. Since IDO related signaling pathways aren't well understood, some clinical reports affirmed IDO inhibiting therapeutic significance. Therefore, we did use direct tumor autologous antigens vaccination and 1-MT without chemotherapy to explore biological mechanisms and immunomodulations of 1-MT that motivate antitumor responses. However, DCs antigen-uptake capability, anti-tumor efficiency, intra-tumor and intracellular cytokines were assessed. Besides, CD133+ cells viability and tumor biomarkers were investigated. Splenocytes responses and their signaling pathways such TLRs 2 to 9, NF-kappa beta 1-2, Wnt/beta-catenin and TGF-beta were dissected. Results evinced that a regimen of 1-MT and TAAs significantly reduced CSC CD133 + viability inside tumor microenvironment, besides increasing tumor cells necrosis and apoptosis. Expression of TGF-beta, IDO, RANTES, and PDL-1 was also significantly reduced. Interestingly, 1-MT enhanced lymphocytes TLR2, TLR7, TLR8, and TLR9 pathways. It motivated lymphocytes' NF-kappa beta 2, STAT3, and STAT4 pathways, while reduced tumors' NF-kappa beta p65 and Wnt/beta-catenin signaling pathways. We found that periphery and intra-tumor Treg cells were significantly decreased. In conclusion, depletion of indoleamine 2,3-dioxigenase activity evidenced IDO relation with tumor stem cells proliferation pathways. Furthermore, 1-MT supports immunotherapeutic vaccines susceptibility and tumor specific targeting by reducing tumorgensis signaling pathways.
IL-35 inhibits acute graft-versus-host disease in a mouse model
INTERNATIONAL IMMUNOPHARMACOLOGY
Authors: Zhang, Xiao-Hui; Zhou, Yi; Zhang, Jia-Min; Zhou, Shi-Yuan; Wang, Min; Feng, Ru; Feng, Fer-Er; Wang, Qian-Ming; Zhu, Xiao-Lu; Zhao, Xiao-Su; Lv, Meng; Kong, Yuan; Chang, Ying-Jun; Huang, Xiao-Jun
Abstract
Acute graft-versus-host disease (aGVHD) is a serious complication of allogeneic hematopoietic stem cell transplantation (allo-HSCT). Our previous study found that the novel anti-inflammatory cytokine IL-35 could suppress aGVHD in patients after allo-HSCT. In this study, we used C57BL/6 (B6, H-2b) mice as donors and (B6 x DBA/2) F1 (BDF1, H-2b x d) mice as recipients to create a model of aGVHD and explore the relationship between IL-35 and aGVHD. The mice receiving IL-35 survived longer than did the control mice. We observed that treatment with IL-35 and RAPA could reduce the incidence of aGVHD. Additionally, this treatment inhibited intestinal and thymic epithelial cell apoptosis and liver infiltration by the donor T-cells, thereby ameliorating the enteropathy and liver injury caused by aGVHD. We found that IL-35 and RAPA also markedly suppressed TNF-alpha and IL-17A expression and enhanced IFN-gamma expression in the intestine and liver. We measured Tregs in spleen and found that IL-35 and RAPA treatment expanded the number of Tregs in spleen. We found that the phosphorylation of STAT1 and STAT4 were inhibited in mice with aGVHD. In contrast, STAT1 and STAT4 were phosphorylated when the mice were treated with IL-35. IL-35 may have therapeutic potential in the treatment of aGVHD after allo-HSCT. (C) 2015 Published by Elsevier B.V.