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Implementation of cascade logic gates and majority logic gate on a simple and universal molecular platform

机译:在简单通用的分子平台上实现级联逻辑门和多数逻辑门

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摘要

Wiring a series of simple logic gates to process complex data is significantly important and a large challenge for untraditional molecular computing systems. The programmable property of DNA endows its powerful application in molecular computing. In our investigation, it was found that DNA exhibits excellent peroxidase-like activity in a colorimetric system of TMB/H2O2/Hemin (TMB, 3,3′, 5,5′-Tetramethylbenzidine) in the presence of K+ and Cu2+, which is significantly inhibited by the addition of an antioxidant. According to the modulated catalytic activity of this DNA-based catalyst, three cascade logic gates including AND-OR-INH (INHIBIT), AND-INH and OR-INH were successfully constructed. Interestingly, by only modulating the concentration of Cu2+, a majority logic gate with a single-vote veto function was realized following the same threshold value as that of the cascade logic gates. The strategy is quite straightforward and versatile and provides an instructive method for constructing multiple logic gates on a simple platform to implement complex molecular computing.
机译:布线一系列简单的逻辑门来处理复杂的数据非常重要,这对非传统分子计算系统来说是一个巨大的挑战。 DNA的可编程属性使其在分子计算中具有强大的应用。在我们的研究中,发现在存在K 的TMB / H2O2 / Hemin(TMB,3,3',5,5'-四甲基联苯胺)的比色系统中,DNA表现出优异的过氧化物酶样活性。 / sup>和Cu 2 + ,可通过添加抗氧化剂来显着抑制。根据这种基于DNA的催化剂的调节催化活性,成功构建了三个级联逻辑门,包括AND-OR-INH(INHIBIT),AND-INH和OR-INH。有趣的是,仅通过调节Cu 2 + 的浓度,就可以实现与单级逻辑门相同的阈值,从而具有单票否决功能的多数逻辑门。该策略非常简单和通用,并提供了一种指导性的方法,可在一个简单的平台上构造多个逻辑门以实现复杂的分子计算。

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