首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >OPTIMIZATION OF THE GEOMETRY FOR CONTINUOUS FLOW PCR DEVICES IN A TITER PLATE-BASED PCR MULTI-REACTOR PLATFORM
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OPTIMIZATION OF THE GEOMETRY FOR CONTINUOUS FLOW PCR DEVICES IN A TITER PLATE-BASED PCR MULTI-REACTOR PLATFORM

机译:基于滴定板的PCR多反应器平台中连续流动PCR装置的几何结构优化

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A highly parallel, polymerase chain reaction (PCR) multi-reactor platform is in high demand to satisfy the high throughput requirements for exploiting the accumulated genetic information from the Human Genome Project. By incorporating continuous flow PCR (CFPCR) devices in a polymer 96-well titer plate format, DNA amplification can be performed with steady-state temperature control and faster reaction speed at lower cost. Prior to the realization of a PCR multi-reactor platform, consisting of a sample delivery chip, a PCR multi-reactor chip, and a thermal cycler, optimization of the geometry for CFPCR devices in a titer plate-based PCR multi-reactor chip based on manufacturing feasibility is necessary. A prototype PCR multi-reactor chip was designed in a 96-well titer plate format with twelve different CFPCR configurations. High quality metallic, large area mold inserts (LAMIs) were fabricated using an SU-8 based UV-LIGA technique by overplating nickel in SU-8 electroplating templates. Micro molding of polycarbonate (PC) was done using hot embossing, resulting in good replication fidelity over the large surface area. Thermal fusion bonding of the molded PC chips using a custom-made bonding jig yielded acceptable sealing results. The manufacturability investigation throughout the design and the process sequence suggested that the microchannel walls require a minimum width of at least 20 um and an aspect ratio of 2 for structural rigidity. An optimal CFPCR device for use in a PCR multi-reactor chip can be selected with a series of amplification experiments with the development of a thermal cycler.
机译:高度需要高度平行的聚合酶链反应(PCR)多反应器平台,以满足对人类基因组计划中积累的遗传信息进行利用的高通量要求。通过以聚合物96孔滴定板形式整合连续流PCR(CFPCR)装置,可以以稳定的温度控制和更快的反应速度以较低的成本进行DNA扩增。在实现由样品输送芯片,PCR多反应器芯片和热循环仪组成的PCR多反应器平台之前,需要优化基于滴定板的CFPCR装置的几何形状。在制造上的可行性是必要的。以96孔滴定板形式设计的原型PCR多反应器芯片,具有十二种不同的CFPCR配置。通过使用SU-8电镀模板中的镍镀层,使用基于SU-8的UV-LIGA技术制造了高质量的金属大面积模具插件(LAMI)。聚碳酸酯(PC)的微成型使用热压纹完成,从而在较大的表面积上实现了良好的复制保真度。使用定制的粘合夹具对模塑的PC芯片进行热熔粘合可获得令人满意的密封效果。贯穿整个设计和工艺过程的可制造性研究表明,微通道壁需要至少20 um的最小宽度和2的长宽比,以提高结构刚度。随着热循环仪的发展,可以通过一系列扩增实验来选择用于PCR多反应器芯片的最佳CFPCR装置。

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