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A label-free visual platform for self-correcting logic gate construction and sensitive biosensing based on enzyme-mimetic coordination polymer nanoparticles

机译:基于酶模拟配位聚合物纳米粒子的自我校正逻辑栅极构建和敏感生物传感的无标签视觉平台

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摘要

In molecular logic gates, the occurrence of erroneous procedures is a frequently encountered and critical problem in data transmission, and thus it is highly desirable to develop novel logic systems with self-correction abilities. Herein, based on the horseradish peroxidase (HRP)-like activity of the novel metal coordination polymer nanoparticles formed between Cu2+ and guanosine monophosphate (GMP), denoted as Cu-GMP CPNs, a label-free visual platform was constructed and successfully utilized for both self-correcting logic gate construction and sensitive biosensing. The HRP-mimicking ability of Cu-GMP CPNs was verified and utilized for the sensitive detection of both H2O2 and glucose. More importantly, a set of logic gates (AND, OR, NOR, INHIBIT, and XNOR) were fabricated, in which two intermediate outputs, i.e., color change and precipitate formation, were combined in an "AND'' mode to produce the final output, and thus the as-proposed logic system exhibited the self-correction ability to automatically correct the erroneous intermediate outputs induced by interfering substances such as HRP. Moreover, in addition to the unique feature of self-correction, the as-proposed logic system also exhibited the advantages of simple operation, rapid response and easy detection of the visual outputs by the naked eye, thus expanding its practical applications to a variety of fields. Therefore, the label-free visual platform we have proposed here offers a promising strategy for logic gate fabrication and may pave the way for the development of novel molecular computing with self-correction abilities.
机译:在分子逻辑门中,错误程序的发生是数据传输中经常遇到的和临界问题,因此非常希望开发具有自我校正能力的新颖逻辑系统。在此,基于在Cu2 +和鸟苷(GMP)之间形成的新型金属配位聚合物纳米颗粒的辣根过氧化物酶(HRP) - 样式的活性,表示为CU-GMP CPNS,构建无标签的视觉平台并成功地用于两者自我校正逻辑栅极构建和敏感的生物传感。验证Cu-GMP CPNS的HRP模拟能力,用于H2O2和葡萄糖的敏感性检测。更重要的是,制造了一组逻辑门(以及,也不抑制和Xnor),其中两个中间输出,即颜色变化和沉淀地形成,在“和”模式中组合以产生最终输出,因此,所提出的逻辑系统表现出自我校正能力,自我校正能力自动校正通过干扰诸如HRP的物质引起的错误中间输出。此外,除了自我校正的独特特征之外,也提出的逻辑系统还表现出操作简单,快速响应和易于检测肉眼的视觉输出的优点,从而将其实际应用扩展到各种领域。因此,我们提出的无标签视觉平台提供了一个有希望的策略逻辑门制造,可以为具有自我校正能力的新型分子计算的发展铺平道路。

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