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Multi-flow channel bioreactor enables real-time monitoring of cellular dynamics in 3D engineered tissue

机译:多流道生物反应器可实时监控3D工程组织中的细胞动力学

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摘要

The key to understanding, harnessing, and manipulating natural biological processes for the benefit of tissue engineering lies in providing a controllable dynamic environment for tissue development in vitro while being able to track cell activity in real time. This work presents a multi-channel bioreactor specifically designed to enable on-line imaging of fluorescently labeled cells embedded in replicated 3D engineered constructs subjected to different flow conditions. The images are acquired in 3D using a standard upright confocal microscope and further analyzed and quantified by computer vision. The platform is used to characterize and quantify the pace and directionality of angiogenic processes induced by flow. The presented apparatus bears considerable potential to advance scientific research, from basic research pursuing the effect of flow versus static conditions on 3D scaffolds and cell types, to clinically oriented modeling in drug screening and cytotoxicity assays.
机译:了解,利用和操纵自然生物过程以利于组织工程的关键在于在于为体外组织发育提供可控的动态环境,同时能够实时跟踪细胞活动。这项工作提出了一种多通道生物反应器,该反应器经过专门设计,能够对嵌入在经受不同流动条件的3D工程复制体中的荧光标记细胞进行在线成像。使用标准的立式共聚焦显微镜以3D方式采集图像,然后通过计算机视觉进一步分析和量化图像。该平台用于表征和量化由流动引起的血管生成过程的速度和方向性。提出的装置具有巨大的潜力,可以促进科学研究,从基础研究中研究流动与静态条件对3D支架和细胞类型的影响,到药物筛选和细胞毒性测定中的临床导向模型。

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