Department of Medicine, Division of Gastroenterology, University of Pennsylvania, 650 CRB 415 Curie Blvd., Philadelphia, PA 19104, USA.
Dig Dis Sci. 2012 Apr;57(4):845-57. doi: 10.1007/s10620-011-1998-y. Epub 2011 Dec 7.
Esophageal intestinal metaplasia, also known as Barrett's esophagus, is the replacement of the normal epithelium with one that resembles the intestine morphologically. Generally, this includes intestinal mucin-secreting goblet cells. Barrett's esophagus is an important risk factor for adenocarcinoma development. In-vitro models for Barrett's esophagus have not, to date, focused on the induction of goblet cells in Barrett's epithelium.
To explore the contribution of Math1/Atoh1 to induction of Barrett's esophagus and intestinal mucin-secreting goblet cells from normal human esophageal epithelium.
We explored the level and pattern of Math1/Atoh1 mRNA and protein expression in human Barrett's esophagus. Then, using retroviral-mediated gene expression, we induced Math1 mRNA and protein expression in a human esophageal keratinocyte cell line. We evaluated the effects of this ectopic Math1 expression on cell proliferation and gene expression patterns in cells cultured under two-dimensional and three-dimensional tissue-engineering conditions.
Math1/Atoh1 mRNA and protein are detected in human Barrett's esophagus specimens, but the mRNA levels vary substantially. In the keratinocyte expression studies, we observed that Math1/Atoh1 ectopic expression significantly reduced cell proliferation and altered cell morphology. Moreover, Math1/Atoh1 expression is associated with a more intestinalized gene expression pattern that is distinct from that reported in after studies using other intestinal transcription factors. Most significantly, we observe the induction of the Barrett's esophagus markers Mucin-2 and Keratin-20 with Math1/Atoh1 expression.
We conclude that ectopic Math1/Atoh1 expression makes unique contributions to intestinalization of the esophageal epithelium in Barrett's esophagus.
食管肠上皮化生,又称巴雷特食管,是正常上皮被形态上类似肠的上皮所取代。一般来说,这包括分泌肠型黏蛋白的杯状细胞。巴雷特食管是腺癌发展的重要危险因素。迄今为止,用于巴雷特食管的体外模型并未关注巴雷特上皮中杯状细胞的诱导。
探讨 Math1/Atoh1 对诱导巴雷特食管和正常人食管上皮中的肠型黏蛋白分泌杯状细胞的作用。
我们探索了 Math1/Atoh1 mRNA 和蛋白在人巴雷特食管中的表达水平和模式。然后,我们使用逆转录病毒介导的基因表达,在人食管角质形成细胞系中诱导 Math1 mRNA 和蛋白表达。我们评估了这种异位 Math1 表达对二维和三维组织工程培养条件下细胞增殖和基因表达模式的影响。
在人巴雷特食管标本中检测到 Math1/Atoh1 mRNA 和蛋白,但 mRNA 水平差异很大。在角质形成细胞表达研究中,我们观察到 Math1/Atoh1 异位表达显著降低了细胞增殖并改变了细胞形态。此外,Math1/Atoh1 表达与更肠型的基因表达模式相关,与其他肠转录因子研究中报道的模式明显不同。最重要的是,我们观察到 Math1/Atoh1 表达诱导了巴雷特食管标志物 Mucin-2 和 Keratin-20 的表达。
我们得出结论,异位 Math1/Atoh1 表达对巴雷特食管中食管上皮的肠化有独特的贡献。