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可编程 DNA 基布尔逻辑微流控处理单元。

Programmable DNA-Based Boolean Logic Microfluidic Processing Unit.

机构信息

Department of Nano-bioengineering, Incheon National University, Academy-to 119, Incheon, Korea, 22012.

出版信息

ACS Nano. 2021 Jul 27;15(7):11644-11654. doi: 10.1021/acsnano.1c02153. Epub 2021 Jul 7.

Abstract

As molecular computing materials, information-encoded deoxyribonucleic acid (DNA) strands provide a logical computing process by cascaded and parallel chain reactions. However, the reactions in DNA-based combinational logic computing are mostly achieved through a manual process by adding desired DNA molecules in a single microtube or a substrate. For DNA-based Boolean logic, using microfluidic chips can afford automated operation, programmable control, and seamless combinational logic operation, similar to electronic microprocessors. In this paper, we present a programmable DNA-based microfluidic processing unit (MPU) chip that can be controlled a personal computer for performing DNA calculations. To fabricate this DNA-based MPU, polydimethylsiloxane was cast using double-sided molding techniques for alignment between the microfluidics and valve switch. For a uniform surface, molds fabricated using a three-dimensional printer were spin-coated by a polymer. For programming control, the valve switch arms were operated by servo motors. In the MPU controlled a personal computer or smartphone application, the molecules with two input DNAs and a logic template DNA were reacted for the basic AND and OR operations. Furthermore, the DNA molecules reacted in a cascading manner for combinational AND and OR operations. Finally, we demonstrated a 2-to-1 multiplexer and the XOR operation with a three-step cascade reaction using the simple DNA-based MPU, which can perform Boolean logic operations (AND, OR, and NOT). Through logic combination, this DNA-based Boolean logic MPU, which can be operated using programming language, is expected to facilitate the development of complex functional circuits such as arithmetic logical units and neuromorphic circuits.

摘要

作为分子计算材料,信息编码的脱氧核糖核酸(DNA)链通过级联和并行链反应提供逻辑计算过程。然而,基于 DNA 的组合逻辑计算中的反应大多通过在单个微管或基底中添加所需的 DNA 分子的手动过程来实现。对于基于 DNA 的布尔逻辑,使用微流控芯片可以实现自动化操作、可编程控制和无缝组合逻辑操作,类似于电子微处理器。在本文中,我们提出了一种可编程的基于 DNA 的微流控处理单元(MPU)芯片,该芯片可以通过个人计算机控制来执行 DNA 计算。为了制造这种基于 DNA 的 MPU,使用双面成型技术对微流控和阀开关进行对准,以聚二甲基硅氧烷进行铸造。为了获得均匀的表面,使用三维打印机制造的模具通过聚合物进行旋涂。为了编程控制,阀开关臂由伺服电机操作。在个人计算机或智能手机应用程序控制的 MPU 中,用两个输入 DNA 和一个逻辑模板 DNA 反应的分子进行基本的 AND 和 OR 操作。此外,DNA 分子以级联方式进行组合 AND 和 OR 操作。最后,我们使用简单的基于 DNA 的 MPU 演示了 2 选 1 多路复用器和具有三步级联反应的 XOR 操作,该 MPU 可以执行布尔逻辑操作(AND、OR 和 NOT)。通过逻辑组合,这种基于 DNA 的布尔逻辑 MPU 可以使用编程语言进行操作,有望促进复杂功能电路(如算术逻辑单元和神经形态电路)的发展。

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