| Literature DB >> 29554971 |
Baoren Zhang1,2, Yi Liu3, Xu Lan1,2, Xiaoxi Xu4, Xiaoning Zhang3, Xiang Li1,2, Yiming Zhao1,2, Guang Li3, Caigan Du5,6, Shanzheng Lu7, Hao Wang8,9.
Abstract
BACKGROUND: Ulcerative colitis (UC) is a type of inflammatory bowel disease (IBD) characterized by chronic inflammation of colon. It is commonly believed that the imbalance of immune system and overwhelming production of cytokines are involved in the pathogenesis of UC. Recent studies demonstrated that interleukin-35 (IL-35), a key player in the regulation of inflammation, has been identified as potential therapeutic target to treat UC. However, conventional intravenous administration is costly and inconvenient. The present study was designed to establish a novel IL-35 delivery system and investigate its therapeutic effects on dextran sulfate sodium (DSS)-induced experimental colitis in mice for the first time.Entities:
Keywords: Anti-inflammatory; Colitis; Escherichia coli; IL-35; Mice
Mesh:
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Year: 2018 PMID: 29554971 PMCID: PMC5859778 DOI: 10.1186/s12967-018-1441-7
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Fig. 1Identification of IL-35 Expression in E. coli/IL-35 in vitro and vivo. a Single-colony PCR analysis of recombinant E. coli/IL-35. Lane M DNA marker DL2000; lane 1 negative control; lanes 2 singlecolony PCR products of recombinant pET28a(+)-IL-35. b Double-enzyme digestion of recombinant plasmid. Lane M DNA marker DL2000; lane 1 non-enzyme digestion of recombinant plasmid; lane 2 double-enzyme digestion products of recombinant plasmid. c Tricine-SDS-PAGE of the protein expressions in E. coli/IL-35 In lane 1, the strains are transformations of pET28a(+)/IL-35; lane 2 is the empty vector strain. The arrow indicates the dark bands corresponding to the expressed IL-35 protein on Tricine-SDS-PAGE. d Western blot analysis of the cell lysate proteins from the lL-35 producer strain E. coli/IL-35 (lane 1) and empty vector strain E. coli/0 (lane 2). E. coli/IL-35 increased IL-12a and EBI3 mRNA expression in colon tissues (e) and the serum concentration of IL-35 (f) in DSS-induced colitis mice, n = 10 mice per group. Compared with the DSS group, *p < 0.05; compared with the DSS + E. coli/0 group, *p < 0.05
Fig. 2IL-35 ameliorates symptoms of DSS-induced colitis. Body weight (a) and disease activity index (DAI) (b) change of each group. DSS + E. coli/IL-35 group showed less body weight loss and much lower DAI score. Data were presented as the mean ± SD (n = 10 per group). Compared with the DSS group, *p < 0.05; compared with the DSS + E. coli/0 group, *p < 0.05. c The length of mouse colon from normal group, DSS group, DSS + E. coli/0 group and DSS + E. coli/IL-35 groups. *p < 0.05, E. coli/IL-35 group vs. DSS and DSS + E. coli/0 group. d Representative photomicrographs (×200, haematoxylin and eosin staining) of histological sections of colon from each group. n = 10 mice per group. *p < 0.05, E. coli/IL-35 group vs. DSS and DSS + E. coli/0 group
Fig. 3E. coli/IL-35 administration suppressed inflammatory cell infiltration in colon. The neutrophil and T cell accumulations in the colon were examined using antiLy6G and anti-CD3 staining respectively. Representative sections of colon were obtained from normal group, DSS group, DSS + E. coli/0 group and DSS + E. coli/IL-35 group. Magnification ×100
Fig. 4E. coli/IL-35 treatment affected the proportions of Treg and Th17 cells in spleens and MLN. The representative images of flow cytometry for splenocytes and MLN were shown while positive cells were counted from the quadrant Q4. E. coli/IL-35 bacteria increased CD4+CD25+Foxp3+ cells (Treg cells) but reduced IL-17A cells (Th17 cells) in the spleens (a) and MLN (b) from UC mice, which had lower proportion of Treg cells and higher proportion of Th17 cells as compared to normal controls. Compared with the DSS group, *p < 0.05; compared with the DSS + E. coli/0 group, *p < 0.05
Fig. 5Effects of E. coli/IL-35 on the regulation of IL-10 and IL-6 expressions in colon. The mRNA levels of IL-10 and IL-6 were analyzed by real-time PCR. a E. coli/IL-35 treatment increased IL-10 mRNA expression in colon tissues in DSS-induced colitis mice. b E. coli/IL-35 intake reduced IL-6 mRNA expression in colon tissues in DSS-induced colitis mice. n = 10 mice per group. Compared with the DSS group, *p < 0.05; compared with the DSS + E. coli/0 group, *p < 0.05. c DSS intake remarkably reduce IL-12p40 expression and E. coli/IL-35 treatment did not change the tendency (*p < 0.01)
Fig. 6E. coli/IL-35 administration attenuated UC by regulating IL-10 and IL-6 levels in serum. The serum concentration of IL-10 was notably elevated post E. coli/IL-35 treatment. The level of IL-6 was markedly increased in DSS and DSS + E. coli/0 groups, which got significantly reduced in E. coli/IL-35 group. n = 10 mice per group. Compared with the DSS group, *p < 0.05; compared with the DSS + E. coli/0 group, *p < 0.05