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A Multichamber Fluidic Device for 3D Cultures Under Interstitial Flow With Live Imaging: Development, Characterization, and Applications

机译:具有实时成像的间质流下用于3D培养的多室流体装置:开发,表征和应用

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摘要

Interstitial flow is an important biophysical cue that can affect capillary morphogenesis, tumor cell migration, and fibroblast remodeling of the extracellular matrix, among others. Current models that incorporate interstitial flow and that are suitable for live imaging lack the ability to perform multiple simultaneous experiments, for example, to compare effects of growth factors, extracellular matrix composition, etc. We present a nine-chamber radial flow device that allows simultaneous 3D fluidic experiments for relatively long-term culture with live imaging capabilities. Flow velocity profiles were characterized by fluorescence recovery after photobleaching (FRAP) for flow uniformity and estimating the hydraulic conductivity. We demonstrate lymphatic and blood capillary morphogenesis in fibrin gels over 10 days, comparing flow with static conditions as well as the effects of an engineered variant of VEGF that binds fibrin via Factor XIII. We also demonstrate the culture of contractile fibroblasts and co-cultures with tumor cells for modeling the tumor microenvironment. Therefore, this device is useful for studies of capillary morphogenesis, cell migration, contractile cells like fibroblasts, and multicellular cultures, all under interstitial flow.
机译:间隙流动是重要的生物物理线索,可影响毛细管形态发生,肿瘤细胞迁移以及细胞外基质的成纤维细胞重塑等。当前整合了组织间血流并且适用于实时成像的模型缺乏执行多个同时实验的能力,例如,无法比较生长因子,细胞外基质组成等的影响。具有实时成像功能的用于相对长期培养的3D流体实验。通过光漂白后的荧光恢复(FRAP)来表征流速分布,以实现流速均匀性并估计水力传导率。我们展示了纤维蛋白凝胶中超过10天的淋巴和毛细血管形态发生,比较了静态情况下的流量以及经因子XIII结合纤维蛋白的VEGF工程变体的影响。我们还证明了收缩性成纤维细胞的培养以及与肿瘤细胞共培养的肿瘤微环境模型。因此,该设备可用于研究毛细血管形态发生,细胞迁移,可收缩细胞(如成纤维细胞)和多细胞培养物,所有这些都在间质液流下进行。

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