Cancer-induced inflammation and inflammation-induced cancer in colon: a role for S1P lyase
ONCOGENE
Authors: Schwiebs, Anja; San Juan, Martina Herrero; Schmidt, Katrin G.; Wiercinska, Eliza; Anlauf, Martin; Ottenlinger, Florian; Thomas, Dominique; Elwakeel, Eiman; Weigert, Andreas; Farin, Henner F.; Bonig, Halvard; Scholich, Klaus; Geisslinger, Gerd; Pfeilschifter, Josef M.; Radeke, Heinfried H.
Abstract
A role of sphingolipids for inflammatory bowel disease and cancer is evident. However, the relative and separate contribution of sphingolipid deterioration in inflammation versus carcinogenesis for the pathophysiology of colitis-associated colon cancer (CAC) was unknown and therefore examined in this study. We performed isogenic bone marrow transplantation of inducible sphingosine-1-phosphate (S1P) lyase knockout mice to specifically modulate sphingolipids and associated genes and proteins in a compartment-specific way in a DSS/AOM mediated CAC model. 3D organoid cultures were used in vitro. S1P lyase (SGPL1) knockout in either immune cells or tissue, caused local sphingolipid accumulation leading to a dichotomic development of CAC: Immune cell SGPL1 knockout (I-SGPL(-/-)) augmented massive immune cell infiltration initiating colitis with lesions and calprotectin increase. Pathological crypt remodeling plus extracellular S1P-signaling caused delayed tumor formation characterized by S1P receptor 1, STAT3 mRNA increase, as well as programmed cell death ligand 1 expression, accompanied by a putatively counter regulatory STAT1(S727) phosphorylation. In contrast, tissue SGPL1 knockout (T-SGPL(-/-)) provoked immediate occurrence of epithelial-driven tumors with upregulated sphingosine kinase 1, S1P receptor 2 and epidermal growth factor receptor. Here, progressing carcinogenesis was accompanied by an IL-12 to IL-23 shift with a consecutive development of a Th2/GATA3-driven, tumor-favoring microenvironment. Moreover, the knockout models showed distinct lymphopenia and neutrophilia, different from the full SGPL1 knockout. This study shows that depending on the initiating cellular S1P source, the pathophysiology of inflammation-induced cancer versus cancer-induced inflammation develops through separate, discernible molecular steps.
The effect of calcitriol and all-trans retinoic acid on T-bet, IFN-gamma, GATA3 and IL-4 genes expression in experimental autoimmune encephalomyelitis
APMIS
Authors: Parastouei, Karim; Solaymani-Mohammadi, Farid; Shiri-Shahsavar, Mohammad Reza; Chahardoli, Reza; Nasl-Khameneh, Ateke Mousavi; Zarandi, Mehdi Borhani; Ghotloo, Somayeh; Saboor-Yaraghi, Ali Akbar
Abstract
Multiple sclerosis (MS) is an immune-mediated inflammatory disease which affects the central nervous system (CNS). In the present study, the in vivo effects of ATRA, calcitriol, and their combinations on the expression of murine CD4+ T cell cytokines and their specific transcription factors in experimental autoimmune encephalomyelitis (EAE)-induced mice were explored. Thirty-two EAE induced inbred C57BL/6 female mice with an age ranged from 8 to 10 weeks were divided into four categories in a random manner. The first, second, and third groups received ATRA, calcitriol, ATRA+ calcitriol, respectively, and the fourth group received vehicle. The treatment started on the day prior to immunization and through the IP injections every other days for 21 days. The dosages of administration for calcitriol, ATRA, and calcitriol+ ATRA were 100 ng, 250 mu g, and 50ng + 125 mu g, respectively per mouse. An equal volume of excipient was administered for the vehicle group. T-bet, IFN-gamma, GATA-3, and IL-4 genes expression were assessed in the splenocytes of EAE -induced mice. The expression of T-bet and IFN-gamma genes in the splenocytes of ATRA, calcitriol and combination- treated mice were significantly reduced compared to vehicle group (p < 0.05). A significant decrease in T-bet expression was observed in the combination-treated group compared to the ATRA-treated group (p < 0.05). The expression of GATA3 and IL-4 genes was significantly increased in the ATRA-, calcitriol-, and combination-treated mice when compared with the control group (p < 0.05). Furthermore, the effect of calcitriol alone and in combination with ATRA was more considerable than that of ATRA alone. The nutraceutical approaches may be promising in the prevention and/or treatment of MS.