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Dendritic cell functional properties in a three-dimensional tissue model of human lung mucosa

机译:人肺黏膜三维组织模型中的树突状细胞功能特性

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摘要

In lung tissue, dendritic cells (DC) are found in close association with the epithelial cell layer, and there is evidence of DC regulation by the epithelium; that epithelial dysfunction leads to overzealous immune cell activation. However, dissecting basic mechanisms of DC interactions with epithelial cells in human tissue is difficult. Here, we describe a method to generate a three-dimensional organotypic model of the human airway mucosa in which we have implanted human DC. The model recapitulates key anatomical and functional features of lung mucosal tissue, including a stratified epithelial cell layer, deposition of extracellular matrix proteins, and the production of tight junction and adherence junction proteins. Labeling of fixed tissue model sections and imaging of live tissue models also revealed that DC distribute in close association with the epithelial layer. As functional properties of DC may be affected by the local tissue microenvironment, this system provides a tool to study human DC function associated with lung mucosal tissue. As an example, we report that the lung tissue model regulates the capacity of DC to produce the chemokines CCL17, CCL18, and CCL22, leading to enhanced CCL18 expression and reduced CCL17 and CCL22 expression. This novel tissue model thus provides a tool well suited for a wide range of studies, including those on the regulation of DC functional properties within the local tissue microenvironment during homeostasis and inflammatory reactions.
机译:在肺组织中,发现树突状细胞(DC)与上皮细胞层紧密相关,并且有证据表明DC受到上皮细胞的调节。上皮功能障碍导致过度活跃的免疫细胞活化。然而,解剖DC与人体组织中上皮细胞相互作用的基本机制是困难的。在这里,我们描述了一种方法,该方法生成了我们已经植入了人类DC的人类气道粘膜的三维器官模型。该模型概括了肺粘膜组织的关键解剖学和功能特征,包括分层的上皮细胞层,细胞外基质蛋白的沉积以及紧密连接和粘附连接蛋白的产生。固定组织模型切片的标记和活组织模型的成像还显示DC分布与上皮层紧密相关。由于DC的功能特性可能会受到局部组织微环境的影响,因此该系统提供了研究与肺粘膜组织相关的人DC功能的工具。例如,我们报道了肺组织模型调节DC产生趋化因子CCL17,CCL18和CCL22的能力,从而导致CCL18表达增强和CCL17和CCL22表达降低。因此,这种新颖的组织模型提供了一种非常适合广泛研究的工具,包括那些在稳态和炎症反应过程中调节局部组织微环境中DC功能特性的研究。

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