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Towards Rapid Prototyped Convective Microfluidic DNA Amplification Platform

机译:迈向快速原型对流微流DNA扩增平台

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摘要

Today, Polymerase Chain Reaction (PCR) based DNA amplification plays an indispensable role in the field of biomedical research. Its inherent ability to exponentially amplify sample DNA has proven useful for the identification of virulent pathogens like those causing Multiple Drug-Resistant Tuberculosis (MDR-TB). The intervention of Microfluidics technology has revolutionized the concept of PCR from being a laborious and time consuming process into one that is faster, easily portable and capable of being multifunctional. The Microfluidics based PCR outweighs its traditional counterpart in terms of flexibility of varying reaction rate, operation simplicity, need of a fraction of volume and capability of being integrated with other functional elements. The scope of the present work involves the development of a real-time continuous flow microfluidic device, fabricated by 3D printing-governed rapid prototyping method, eventually leading to an automated and robust platform to process multiple DNA samples for detection of MDRTB-associated mutations. The thermal gradient characteristic to the PCR process is produced using peltier units appropriate to the microfluidic environment fully monitored and controlled by a low cost controller driven by a Data Acquisition System. The process efficiency achieved in the microfluidic environment in terms of output per cycle is expected to be on par with the traditional PCR and capable of earning the additional advantages of being faster and minimizing the handling.
机译:如今,基于聚合酶链反应(PCR)的DNA扩增在生物医学研究领域中起着不可或缺的作用。事实证明,其固有的以指数方式扩增样品DNA的能力可用于鉴定有毒的病原体,例如引起多药耐药结核病(MDR-TB)的那些。微流体技术的介入彻底改变了PCR的概念,从费时费力的过程变成了一种更快,更易于携带且具有多功能性的过程。基于微流体的PCR在改变反应速率的灵活性,操作简便性,体积需求的小巧以及与其他功能元件整合的能力方面胜过其传统的PCR技术。本工作的范围涉及通过3D打印控制的快速原型制作方法制造的实时连续流微流体设备的开发,最终导致了一个自动且强大的平台来处理多个DNA样品以检测MDRTB相关突变。使用适合于微流体环境的珀尔帖单元产生PCR过程的热梯度特征,该珀尔帖单元由数据采集系统驱动的低成本控制器完全监控和控制。预期在微流体环境中在每个循环的输出方面实现的处理效率与传统PCR相当,并且能够获得更快,最小化处理的额外优势。

著录项

  • 来源
  • 会议地点 San Francisco(US)
  • 作者单位

    Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Mechanical Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Biological Sciences, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

    Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science (BITS) Pilani, Hyderabad Campus, Hyderabad, India;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polymerase Chain Reaction (PCR); Microfluidics; Convective-Flow; Peltier; Micro-heater; Arduino;

    机译:聚合酶链反应(PCR);微流体;对流珀尔帖;微型加热器; Arduino的;

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