首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2012 >MODELING, FABRICATION, AND TESTING OF A NANOINJECTION LANCE ARRAY FOR SIMULTANEOUS MULTI-CELL INJECTIONS
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MODELING, FABRICATION, AND TESTING OF A NANOINJECTION LANCE ARRAY FOR SIMULTANEOUS MULTI-CELL INJECTIONS

机译:同时注射多细胞的纳米注射枪阵列的建模,制造和测试

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摘要

A nanoinjection lance array has been developed to inject foreign genetic material into thousands of cells at once using electrophoresis to attract and repel particles to and from the lances. A unique combination of isotropic and anisotropic etch processes are used to fabricate the four million 1 μm by 8 μm solid lances on a 2 cm by 2 cm chip. Initial studies show high cell viability when the lance array is used to pierce through a culture of HeLa cancer cells, often used for genetic research. A mathematical computer model simulating motion of attracted or repelled particles informs the design of the nanoinjection lance array system. The nanoinjection lance array provides an efficient, convenient, and quick way to simultaneously inject thousands of cells for a wide range of genetic research applications.
机译:已开发出一种纳米注射喷枪阵列,可通过电泳将外来遗传物质一次性注入数千个细胞中,从而通过电泳吸引和排斥颗粒。各向同性和各向异性蚀刻工艺的独特组合用于在2 cm x 2 cm的芯片上制造400万个1μmx 8μm实心喷枪。最初的研究表明,当使用喷枪阵列穿透通常用于基因研究的HeLa癌细胞培养物时,细胞具有较高的生存能力。模拟被吸引或排斥的粒子运动的数学计算机模型为纳米喷枪阵列系统的设计提供了信息。纳米注射喷枪阵列提供了一种高效,便捷和快速的方式,可以同时注射成千上万个细胞,用于广泛的基因研究应用。

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