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Co-cultured microfluidic model of the airway optimized for microscopy and micro-optical coherence tomography imaging

机译:共培养的气道微流模型,用于显微镜和微光学相干断层扫描成像

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摘要

We have developed a human bronchial epithelial (HBE) cell and endothelial cell co-cultured microfluidic model to mimic the in vivo human airway. This airway-on-a-chip was designed with a central epithelial channel and two flanking endothelial channels, with a three-dimensional monolayers of cells growing along the four walls of the channel, forming central clear lumens. These cultures mimic airways and microvasculature in vivo. The central channel cells are grown at air-liquid interface and show features of airway differentiation including tight-junction formation, mucus production, and ciliated cells. Combined with novel micro-optical coherence tomography, this chip enables functional imaging of the interior of the lumen, which includes quantitation of cilia motion including beat frequency and mucociliary transport. This airway-on-a chip is a significant step forward in the development of microfluidics models for functional imaging.
机译:我们已经开发了人类支气管上皮(HBE)细胞和内皮细胞共培养的微流模型,以模拟体内人的气道。这种芯片上呼吸道的设计具有中央上皮通道和两个侧翼内皮通道,沿通道的四壁生长的细胞三维三维单层,形成中央透明腔。这些培养物在体内模拟气道和微脉管系统。中央通道细胞在气液界面生长,并显示出气道分化的特征,包括紧密连接形成,粘液产生和纤毛细胞。结合新颖的微光学相干断层扫描技术,该芯片可对管腔内部进行功能成像,包括对纤毛运动(包括搏动频率和粘膜纤毛运输)进行定量分析。这种芯片上气道是功能性成像微流体模型开发的重要一步。

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