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Construction of an integrated biomodule composed of microfluidics and digitally controlled microelectrodes for processing biomolecules

机译:构成由微流体和数字控制的微电极组成的综合生物常规用于加工生物分子

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This work focuses on the development of an online programmable microfluidic bioprocessing unit (BioModule) using digital logic microelectrodes for rapid pipelined selection and transfer of DNA molecules and other charged biopolymers. The design and construction technique for this hybrid programmable biopolymer processing device is presented along with the first proof of principle functionality. The electronically controlled collection, separation and channel transfer of the biomolecules is monitored by a sensitive fluorescence setup. This hybrid reconfigurable architecture couples electronic and biomolecular information processing via a single module combination of fluidics and electronics and opens new fields of applications not only in DNA computing and molecular diagnostics but also in applications of combinatorial chemistry and lab-on-a-chip biotechnology to the drug discovery process. Fundamentals of the design and silicon-PDMS-based construction of these electronic microfluidic devices and their functions are described as well as the experimental results.
机译:这项工作侧重于使用数字逻辑微电极开发在线可编程微流体生物处理单元(生物常规),用于快速流水线选择和DNA分子的转移和其他带电的生物聚合物。该混合可编程生物聚合物加工装置的设计和施工技术与原理函数的第一证据一起呈现。通过敏感的荧光设置监测生物分子的电子控制收集,分离和通道转移。这种混合可重构的结构通过流体和电子设备的单个模块组合耦合电子和生物分子信息处理,并不仅在DNA计算和分子诊断中打开了新的应用领域,而且在组合化学和芯片上生物技术的应用中,药物发现过程。描述了这些电子微流体装置的设计和硅PDMS的基础及其功能以及实验结果。

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