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Micromanipulation system for handling of biological molecule and screening of microbes in a microchannel by electric field and laser tweezers

机译:用于通过电场和激光镊子处理生物分子和筛选微通道中微生物的微操纵系统

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Abstract: In this paper, we propose a novel methodology on noncontact transportation of DNA molecules by dielectrophoretic force and high throughput screening of microbes. First, we utilize the conformational transition in the higher order structure of DNA for transportation. We designed a simple micro electrode-flow system. Experimental demonstration of DNA transportation in the globule state using dielectrophoretic force and direct observation of the DNA molecule in a non- uniform electric field were carried out with fluorescence microscopy. We discuss the experimental results on the motion of the DNA molecule. We show that transportation of DNA with the state of compacted globule is profitable in the future practical application for the separation of giant DNAs such as human gene. Next, we have developed a prototype of Microchannel system for high throughput screening of Escherichia coli. Experimental demonstration of noncontact transportation and manipulation of Escherichia coli by dielectrophoretic force and radiation pressure of laser tweezers were carried out with laser manipulator system. We discussed the basic strategies to improve the working efficiency and the operability of the micromanipulation and presented a new direction in this field. In experiments, we show that transportation and separation of E. coli cells by dielectrophoretic force and optical trapping is useful for future practical application to the high throughput screening of microbes. We showed the possibility of the Microchannel system as one of the biomanipulation and automation systems for DNA sequencing and pharmaceutical field.!18
机译:摘要:在本文中,我们提出了一种关于通过介电泳力和微生物的高通量筛选DNA分子非接触式运输的新方法。首先,我们利用DNA高阶结构的构象转变进行运输。我们设计了一个简单的微电极流动系统。使用荧光显微镜进行使用介电泳力和直接观察非均匀电场中DNA分子的DNA输送的DNA运输的实验证明。我们讨论了DNA分子运动的实验结果。我们表明,未来巨型DNA如人类基因的巨型DNA的实际应用中,DNA的运输是有利可图的。接下来,我们开发了一种微通道系统的原型,用于大肠杆菌的高通量筛选。通过激光机械系统进行通过电泳力和激光镊子辐射压力的非接触式运输和操纵大肠杆菌的实验证明。我们讨论了提高工作效率的基本策略和微操纵的可操作性,并在这一领域提出了新的方向。在实验中,我们表明,通过介电泳力和光学诱捕,大肠杆菌细胞的运输和分离对于未来的实际应用对微生物的高通量筛选是有用的。我们展示了MicroChannel系统作为DNA测序和制药领域的生物化和自动化系统之一。!18

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