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用于研究嗜酸性粒细胞性食管炎中上皮屏障的三维细胞培养模型。

Three-Dimensional Cell Culture Models to Investigate the Epithelial Barrier in Eosinophilic Esophagitis.

机构信息

Department of Biomedicine, University of Basel.

Department of Biomedicine, University of Basel; Department of Gastroenterology and Hepatology, University Digestive Healthcare Center, Clarunis;

出版信息

J Vis Exp. 2024 May 10(207). doi: 10.3791/66503.

Abstract

The squamous epithelium of the esophagus is directly exposed to the environment, continuously facing foreign antigens, including food antigens and microbes. Maintaining the integrity of the epithelial barrier is critical for preventing infections and avoiding inflammation caused by harmless food-derived antigens. This article provides simplified protocols for generating human esophageal organoids and air-liquid interface cultures from patient biopsies to study the epithelial compartment of the esophagus in the context of tissue homeostasis and disease. These protocols have been significant scientific milestones in the last decade, describing three-dimensional organ-like structures from patient-derived primary cells, organoids, and air-liquid interface cultures. They offer the possibility to investigate the function of specific cytokines, growth factors, and signaling pathways in the esophageal epithelium within a three-dimensional framework while maintaining the phenotypic and genetic properties of the donor. Organoids provide information on tissue microarchitecture by assessing the transcriptome and proteome after cytokine stimulation. In contrast, air-liquid interface cultures allow the assessment of the epithelial barrier integrity through transepithelial resistance (TEER) or macromolecule flux measurements. Combining these organoids and air-liquid interface cultures is a powerful tool to advance research in impaired esophageal epithelial barrier conditions.

摘要

食管的鳞状上皮直接暴露于环境中,不断面临着包括食物抗原和微生物在内的外来抗原。保持上皮屏障的完整性对于防止感染和避免无害食物衍生抗原引起的炎症至关重要。本文提供了从患者活检组织中生成人食管类器官和气液界面培养物的简化方案,以研究食管上皮细胞在组织稳态和疾病背景下的上皮细胞区室。这些方案是过去十年中的重要科学里程碑,描述了从患者来源的原代细胞中生成的三维类器官样结构、类器官和气液界面培养物。它们提供了在维持供体表型和遗传特性的同时,在三维框架内研究食管上皮中特定细胞因子、生长因子和信号通路功能的可能性。类器官通过评估细胞因子刺激后的转录组和蛋白质组提供关于组织微结构的信息。相比之下,气液界面培养物可以通过跨上皮电阻 (TEER) 或大分子通量测量来评估上皮屏障的完整性。将这些类器官和气液界面培养物结合起来是推进受损食管上皮屏障条件研究的有力工具。

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