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Esophageal 3D Culture Systems as Modeling Tools in Esophageal Epithelial Pathobiology and Personalized Medicine

机译:食管3D培养系统作为食管上皮病理生物学和个性化医学中的建模工具

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摘要

The stratified squamous epithelium of the esophagus shows a proliferative basal layer of keratinocytes that undergo terminal differentiation in overlying suprabasal layers. Esophageal pathologies, including eosinophilic esophagitis, gastroesophageal reflux disease, Barrett's esophagus, squamous cell carcinoma, and adenocarcinoma, cause perturbations in the esophageal epithelial proliferation-differentiation gradient. Three-dimensional (3D) culture platforms mimicking in vivo esophageal epithelial tissue architecture ex vivo have emerged as powerful experimental tools for the investigation of esophageal biology in the context of homeostasis and pathology. Herein, we describe types of 3D culture that are used to model the esophagus, including organotypic, organoid, and spheroid culture systems. We discuss the development and optimization of various esophageal 3D culture models; highlight the applications, strengths, and limitations of each method; and summarize how these models have been used to evaluate the esophagus under homeostatic conditions as well as under the duress of inflammation and precancerous/cancerous conditions. Finally, we present future perspectives regarding the use of esophageal 3D models in basic science research as well as translational studies with the potential for personalized medicine.
机译:食道的分层鳞状上皮显示出角质形成细胞的增殖基底层,该基底层在上层基底层中经历终末分化。食道病理,包括嗜酸性食管炎,胃食管反流病,巴雷特食管,鳞状细胞癌和腺癌,会引起食管上皮增生-分化梯度的紊乱。模仿体内食管上皮组织结构的三维(3D)培养平台已成为在稳态和病理学背景下研究食管生物学的强大实验工具。在这里,我们描述了用于建模食道的3D培养类型,包括器官型,类器官和球状培养系统。我们讨论了各种食道3D文化模型的开发和优化;突出每种方法的应用,优势和局限性;并总结了这些模型如何用于在稳态条件下以及在发炎和癌前期/癌前期条件下评估食道。最后,我们提出了在基础科学研究以及具有个性化医学潜力的转化研究中使用食管3D模型的未来观点。

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