首页> 外文期刊>Annals of the Rheumatic Diseases: A Journal of Clinical Rheumatology and Connective Tissue Research >Inactivation of evenness interrupted (EVI) reduces experimental fibrosis by combined inhibition of canonical and non-canonical Wnt signalling
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Inactivation of evenness interrupted (EVI) reduces experimental fibrosis by combined inhibition of canonical and non-canonical Wnt signalling

机译:失活的均匀性中断(EVI)可通过联合抑制经典和非经典Wnt信号传导减少实验性纤维化

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Objectives Canonical as well as non-canonical Wnt signalling pathways have emerged as core pathways of fibrosis. Their profibrotic effects are mediated via distinct intracellular cascades independently of each other. Thus, inhibition of both pathways may have additive antifibrotic effects. Here, we knocked down evenness interrupted (EVI) to simultaneously target for the first time canonical and non-canonical Wnt signalling in experimental fibrosis. Methods The antifibrotic effects of siRNA-mediated knockdown of EVI were evaluated in the mouse models of bleomycin-induced skin fibrosis and in fibrosis induced by adenoviral overexpression of a constitutively active TGF-β receptor I (AdTBRI). Results Knockdown of EVI decreased the release of canonical and non-canonical Wnt ligands by fibroblasts and reduced the activation of canonical and non-canonical Wnt cascades in experimental fibrosis with decreased accumulation of β-catenin and phosphorylated JNK and cJun. Inactivation of EVI exerted potent antifibrotic effects and reduced dermal thickening, myofibroblast differentiation and accumulation of collagen in the mouse models of bleomycin-induced and AdTBR-induced fibrosis. Conclusions Inhibition of Wnt secretion by knockdown of EVI inhibits canonical and non-canonical Wnt signalling and effectively reduces experimental fibrosis in different preclinical models. Inhibition of Wnt secretion may thus be an interesting approach for the treatment of fibrosis.
机译:目的典范的和非典范的Wnt信号转导途径已经成为纤维化的核心途径。它们的纤维化作用是通过彼此独立的不同细胞内级联介导的。因此,抑制这两种途径可能具有加和的抗纤维化作用。在这里,我们击倒了均匀性中断(EVI),以同时首次靶向实验性纤维化中的规范性和非规范性Wnt信号传导。方法在博来霉素诱导的皮肤纤维化和腺病毒过度表达组成型活性TGF-β受体I(AdTBRI)诱导的小鼠纤维化模型中,评估了siRNA介导的EVI敲低的抗纤维化作用。结果EVI的敲除减少了成纤维细胞释放规范性和非规范性Wnt配体的释放,并减少了实验性纤维化中规范性和非规范性Wnt级联的激活,β-catenin和磷酸化的JNK和cJun的积累减少。在博来霉素诱导的和AdTBR诱导的纤维化小鼠模型中,EVI的失活发挥了有效的抗纤维化作用,并减少了皮肤增厚,成纤维细胞分化和胶原蛋白的积累。结论通过敲低EVI抑制Wnt分泌可抑制规范性和非规范性Wnt信号传导,并有效减少不同临床前模型中的实验性纤维化。因此,抑制Wnt分泌可能是治疗纤维化的有趣方法。

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