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Isolation and gene expression profiling of intestinal epithelial cells: crypt isolation by calcium chelation from in vivo samples

机译:肠上皮细胞的分离和基因表达谱:通过钙螯合从体内样品中分离隐窝

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Aim: The epithelial layer within the colon represents a physical barrier between the luminal contents and its underlying mucosa. It plays a pivotal role in mucosal homeostasis, and both tolerance and anti-pathogenic immune responses. Identifying signals of inflammation initiation and responses to stimuli from within the epithelial layer is critical to understanding the molecular pathways underlying disease pathology. This study validated a method to isolate and analyze epithelial populations, enabling investigations of epithelial function and response in a variety of disease setting. Materials and methods: Epithelial cells were isolated from whole mucosal biopsies harvested from healthy controls and patients with active ulcerative colitis by calcium chelation. The purity of isolated cells was assessed by flow cytometry. The expression profiles of a panel of epithelial functional genes were investigated by reverse transcription-polymerase chain reaction (PCR) in isolated epithelial cells and corresponding mucosal biopsies. The expression profiles of isolated cells and corresponding mucosal biopsies were evaluated and compared between healthy and inflamed colonic tissue. Results: Flow cytometry identified 97% of cells isolated as intestinal epithelial cells (IECs). Comparisons of gene expression profiles between the mucosal biopsies and isolated IECs demonstrated clear differences in the gene expression signatures. Sixty percent of the examined genes showed contrasting trends of expression between sample types. Conclusion: The calcium chelation isolation method provided a reliable method for the isolation of a pure population of cells with preservation of epithelial cell-specific gene expression. This demonstrates the importance of sample choice when investigating functions directly affecting the colonic epithelial layer.
机译:目的:结肠内的上皮层代表管腔内容物及其下层粘膜之间的物理屏障。它在粘膜稳态,耐受性和抗病原性免疫反应中都起着关键作用。从上皮层中识别炎症开始的信号和对刺激的反应对于理解疾病病理学的分子途径至关重要。这项研究验证了一种分离和分析上皮细胞的方法,从而能够研究各种疾病情况下的上皮功能和反应。材料和方法:通过钙螯合从健康对照和活动性溃疡性结肠炎患者的完整粘膜活检组织中分离上皮细胞。通过流式细胞术评估分离的细胞的纯度。通过逆转录-聚合酶链反应(PCR)在分离的上皮细胞和相应的粘膜活检中研究了一组上皮功能基因的表达谱。评估分离的细胞和相应的粘膜活检组织的表达谱,并在健康和发炎的结肠组织之间进行比较。结果:流式细胞仪鉴定出97%的分离细胞为肠上皮细胞(IEC)。粘膜活组织检查和分离的IEC之间的基因表达谱比较表明,基因表达特征存在明显差异。 60%的被检查基因在样品类型之间显示出相反的表达趋势。结论:钙螯合分离方法为分离纯细胞群并保留上皮细胞特异性基因表达提供了可靠的方法。这证明了在调查直接影响结肠上皮层的功能时选择样本的重要性。

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