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CHARACTERIZATION OF A NOVEL MINIATURE CELL CULTURE DEVICE

机译:一种新型微细胞培养装置的表征

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Recent advancements in the field of microfluidics have generated much interest in the advent of a miniaturized cell culture device. In this study, we developed a novel miniature culture system (<1mL) for the continuous long-term cultivation of both anchorage dependent and suspension cells, either prokaryotic or eukaryotic in type, for both 1g and microgravity applications. The miniature culture system may advance the development of micro analytical remote monitoring tools such as biological sentinels, biosensors, and lab-on-a-chip. Integrating the autonomous miniature culture system with a micro-analytical device makes a powerful biological tool. Cells can be cultured long-term, harvested, and released directly into an analytical tool without the need for human interaction through fluid dynamic manipulations. This work characterizes the miniature bioreactor system through numerical and experimental proof of concept studies.
机译:微流体领域的最新进展在小型化细胞培养装置的出现时产生了很多兴趣。在这项研究中,我们开发了一种新型微型培养系统(<1ml),用于连续长期培养锚固依赖性和悬浮细胞,原核或真核的类型,用于1G和微匍匐应用。微型文化系统可以提高微观分析远程监测工具,如生物哨兵,生物传感器和芯片实验室。将自主微型培养系统与微分析装置集成,这是一种强大的生物工具。细胞可以长期培养,收获,并直接释放到分析工具中,而不需要通过流体动力量操纵的人类相互作用。这项工作通过概念研究的数值和实验证据表征了微型生物反应器系统。

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