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Experimental Investigation on Cell Auto-Feeding using Micro-Fluidic Digitalization Technology

机译:微流体数字化技术细胞自动喂养实验研究

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The development of cell engineering is greatly blocked by the low efficiency and automation of manual micro-injection. For the purpose of auto-mieroinjection, a novel method for Cell Auto-Feeding (CAF) is presented using Micro-Fluidic Digitalization Technology (MFDT).On control of electric-pulse sequence single, the micro tube, filled with cell culture medium, is driven by a piezo-actuator. The predictable and controllable inertial force along tube axis is produced. When inertial force of cell culture medium within micro tube exceeds viscous force, medium flows relatively in micro tube. And micro-droplet is injected from outlet port. By contraries,medium just flow along with micro tube. Cells, which are cultivated and warped in the medium, are removed and delivered to appointing position, one by one. We developed a cell auto-feeding prototype, which was consisted of a micro tube, a drive unit, a hydraulic pressure adjuster and a detection unit. By experiment,flow rate was respectively tested with change of drive voltage and frequency. In cell auto-feeding experiment,mouse oocytes were delivered automatically and digitally to form one line. The auto-feeding efficiency came to 61 oocytes per minute. Results show CAF system can meet the need of automatic microinjection for various species.
机译:通过手动微注射的低效率和自动化,细胞工程的发展受到了极大的阻碍。出于自动造成的目的,使用微流体数字化技术(MFDT)来提出一种用于细胞自动进给(CAF)的新方法.ON控制电动脉冲序列,微管,充满细胞培养基,由压电执行器驱动。产生沿管轴的可预测和可控的惯性力。当微管内细胞培养基的惯性力超过粘性力时,培养基在微管中流动。和微液滴从出口注入。通过违背,媒体刚刚与微管一起流动。将培养和翘曲在培养基中的细胞被移除并逐一递送至指定位置。我们开发了一种单元自动进给原型,其由微管,驱动单元,液压调节器和检测单元组成。通过实验,流速分别通过驱动电压和频率的变化进行测试。在细胞自馈实验中,小鼠卵母细胞自动递送并以数字方式递送以形成一条线。自动喂养效率每分钟达到61个卵卵细胞。结果表明CAF系统可以满足各种物种的自动显微注射。

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