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首页> 外文期刊>Cytokine >Activin A-mediated epithelial de-differentiation contributes to injury repair in an in vitro gastrointestinal reflux model
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Activin A-mediated epithelial de-differentiation contributes to injury repair in an in vitro gastrointestinal reflux model

机译:Actiacin A介导的上皮脱差有助于在体外胃肠输回模型中造成损伤修复

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摘要

Reflux esophagitis is a result of esophageal exposure to acid and bile during episodes of gastroesophageal reflux. Aside from chemical injury to the esophageal epithelium, it has been shown that acid and bile induce cytokine-mediated injury by stimulating the release of pro-inflammatory cytokines. During the repair and healing process following reflux injury, the squamous esophageal cells are replaced with a columnar epithelium causing Barrett's metaplasia, which predisposes patients to esophageal adenocarcinoma. We identified a novel player in gastroesophageal reflux injury, the TGFB family member Activin A (ActA), which is a known regulator of inflammation and tissue repair. In this study, we show that in response to bile salt and acidified media (pH 4) exposure, emulating the milieu to which the distal esophagus is exposed during gastroesophageal reflux, long-term treated, tolerant esophageal keratinocytes exhibit increased ActA secretion and a pro-inflammatory cytokine signature. Furthermore, we noted increased motility and expression of the stem cell markers SOX9, LGR5 and DCLK1 supporting the notion that repair mechanisms were activated in the bile salt/acid-tolerant keratinocytes. Additionally, these experiments demonstrated that de-differentiation as characterized by the induction of YAP1, FOX03 and KRT17 was altered by ActA/TGF beta signaling. Collectively, our results suggest a pivotal role for ActA in the inflammatory GERD environment by modulating esophageal tissue repair and de-differentiation.
机译:回流食管炎是食糖回流发作期间食管和胆汁暴露的结果。除了对食管上皮的化学损伤外,已经证明酸和胆汁诱导细胞因子介导的损伤通过刺激促炎细胞因子的释放。在回流损伤后修复和愈合过程中,鳞状食管细胞被柱状上皮替换,导致巴雷特的细胞,这使患者患者食管腺癌。我们鉴定了一种胃食管反流损伤的新型球员,TGFB家族成员Activin A(Acta),其是一种已知的炎症和组织修复调节剂。在这项研究中,我们表明,响应于胆汁盐和酸化培养基(pH4)暴露,模拟远端食道在胃食管反流期间暴露的Milieu,长期处理,耐受性食管异畸形细胞表现出增加的Acta分泌和Pro -INON炎症细胞因子签名。此外,我们注意到支持胆汁盐/耐酸间角质细胞中的修复机制被激活的观念的干细胞标记SOX9,LGR5和DCLK1的动力和表达增加。另外,这些实验表明,通过Acta /TGFβ信号传导改变了由YAP1,FOX03和KRT17诱导表征的去分化。统称,我们的结果表明通过调节食管组织修复和解差异化的炎症GERD环境中Acta在炎症性GERD环境中的关键作用。

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