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Full range physiological mass transport control in 3D tissue cultures

机译:在三维组织培养全方位生理质量传输控制

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摘要

We report the first demonstration of a microfluidic platform that captures the full physiological range of mass transport in 3-D tissue culture. The basis of our method used long microfluidic channels connected to both sides of a central microtissue chamber at different downstream positions to control the mass transport distribution within the chamber. Precise control of the Péclet number (Pe), defined as the ratio of convective to diffusive transport, over nearly five orders of magnitude (0.0056 to 160) was achieved. The platform was used to systematically investigate the role of physiological mass transport on vasculogenesis. We demonstrate, for the first time, that vasculogenesis can be independently stimulated by interstitial flow (Pe>10) or hypoxic conditions (Pe<0.1), and not by the intermediate state (normal living tissue). This simple platform can be applied to physiological and biological studies of 3D living tissue followed by pathological disease studies, such as cancer research and drug screening.
机译:我们报告了微流体平台的第一个演示,该平台捕获了3-D组织培养中质量运输的完整生理范围。我们方法的基础是使用长微流体通道,该长微流体通道在不同下游位置连接到中央微组织腔室的两侧,以控制腔室内的传质分布。精确控制了佩克利数(Pe),即对流与扩散传输之比,超过了五个数量级(0.0056至160)。该平台被用来系统地研究生理性传质对血管生成的作用。我们首次证明,血管生成可以独立地由间质流(Pe> 10)或低氧条件(Pe <0.1)刺激,而不是由中间状态(正常的活组织)刺激。这个简单的平台可用于3D活组织的生理和生物学研究,然后用于病理疾病研究,例如癌症研究和药物筛选。

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