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Engineering a three-dimensional tissue model with a perfusable vasculature in a microfluidic device

机译:在微流控设备中使用可灌注的脉管系统工程三维组织模型

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In this study, we developed a microfluidic platform for a three-dimensional tissue model with a perfusable capillary network, which will allow, for the first time, a perfusion-culture in a tissue model with a high cell density. Our group previously reported that a spheroid of lung fibroblasts induced angiogenic sprouts from microchannels [1]. In this study, we successfully connected angiogenic sprouts to the vessel-like hollow structure in a spheroid and perfused the formed vascular network through microfluidic channels to the spheroid. This model opens up new techniques for tissue-culture for long-term.
机译:在这项研究中,我们为带有可灌注毛细血管网络的三维组织模型开发了微流体平台,这将首次允许在具有高细胞密度的组织模型中进行灌注培养。我们的研究小组以前曾报道过,肺成纤维细胞的球状体从微通道中诱导出血管新生芽[1]。在这项研究中,我们成功地将血管新生芽连接到球体中的血管状中空结构上,并通过微流体通道将形成的血管网络灌注到球体中。该模型为组织培养开辟了新的长期技术。

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