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In vitro epithelial models comprising lamina propria-derived cells

机译:包含固有层固有细胞的体外上皮模型

摘要

An in vitro microfluidic “organ-on-chip” is described herein that mimics the structure and at least one function of specific areas of the epithelial system in vivo. In particular, a multicellular, layered, microfluidic culture is described, allowing for interactions between lamina propria-derived cells and the associated tissue specific epithelial cells and endothelial cells. This in vitro microfluidic system can be used for modeling inflammatory tissue, e.g., autoimmune disorders involving epithelia and diseases involving epithelial layers. These multicellular, layered microfluidic “organ-on-chip”, e.g. “epithelia-on-chip” further allow for comparisons between types of epithelia tissues, e.g., lung (Lung-On-Chip), bronchial (Airway-On-Chip), skin (Skin-On-Chip), cervix (Cervix-On-Chip), blood brain barrier (BBB-On-Chip), etc., in additional to neurovascular tissue, (Brain-On-Chip), and between different disease states of tissue, i.e. healthy, pre-disease and diseased areas. Additionally, these microfluidic “organ-on-chips” allow identification of cells and cellular derived factors driving disease states in addition to drug testing for reducing inflammation effecting epithelial regions.
机译:本文描述了体外微流体“芯片上的器官”,其模仿了体内上皮系统的特定区域的结构和至少一种功能。特别地,描述了一种多细胞,分层的微流体培养物,其允许固有固有层细胞与相关的组织特异性上皮细胞和内皮细胞之间的相互作用。该体外微流体系统可用于模拟炎症组织,例如涉及上皮的自身免疫疾病和涉及上皮层的疾病。这些多细胞,分层的微流体“芯片上的器官”,例如“片上上皮”进一步允许比较上皮组织类型,例如肺(片上肺),支气管(片上呼吸道),皮肤(片上皮肤),子宫颈(宫颈-芯片,脑血管屏障(BBB-On-Chip)等,除了神经血管组织(Brain-On-Chip)之外,还处于组织的不同疾病状态之间,即健康,疾病前和患病区域。此外,这些微流控“芯片上的器官”除了用于减少炎症影响上皮区域的药物测试外,还可以识别驱动疾病状态的细胞和细胞衍生因子。

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