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Enzyme-Free Scalable DNA Digital Design Techniques: A Review

机译:无酶可扩展DNA数字设计技术:综述。

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摘要

With the recent developments in DNA nanotechnology, DNA has been used as the basic building block for the design of nanostructures, autonomous molecular motors, various devices, and circuits. DNA is considered as a possible candidate for replacing silicon for designing digital circuits in a near future, especially in implantable medical devices, because of its parallelism, computational powers, small size, light weight, and compatibility with bio-signals. The research in DNA digital design is in early stages of development, and electrical and computer engineers are not much attracted towards this field. In this paper, we give a brief review of the existing enzyme-free scalable DNA digital design techniques which are recently developed. With the developments in DNA circuits, it would be possible to design synthetic molecular systems, therapeutic molecular devices, and other molecular scale devices and instruments. The ultimate aim will be to build complex digital designs using DNA strands which may even be placed inside a human body.
机译:随着DNA纳米技术的最新发展,DNA已被用作设计纳米结构,自主分子电动机,各种设备和电路的基本构件。由于DNA的并行性,计算能力,体积小,重量轻以及与生物信号的兼容性,因此在不久的将来,尤其是在可植入医疗设备中,DNA被认为是替代硅来设计数字电路的可能候选者。 DNA数字设计的研究尚处于发展初期,电气和计算机工程师对该领域的吸引力不大。在本文中,我们简要概述了最近开发的现有无酶可扩展DNA数字设计技术。随着DNA电路的发展,将有可能设计合成分子系统,治疗性分子设备以及其他分子规模的设备和仪器。最终目标将是使用甚至可以放在人体内部的DNA链构建复杂的数字设计。

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