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一种基于可视化双适体逻辑门的方法,可利用可重复使用的磁性微球和荧光量子点灵敏地区分朊病毒疾病相关异构体。

A visual dual-aptamer logic gate for sensitive discrimination of prion diseases-associated isoform with reusable magnetic microparticles and fluorescence quantum dots.

机构信息

Education Ministry Key Laboratory on Luminescence and Real-Time Analysis, College of Chemistry and Chemical Engineering, Southwest University, Chongqing, China.

出版信息

PLoS One. 2013;8(2):e53935. doi: 10.1371/journal.pone.0053935. Epub 2013 Feb 5.

Abstract

Molecular logic gates, which have attracted increasing research interest and are crucial for the development of molecular-scale computers, simplify the results of measurements and detections, leaving the diagnosis of disease either "yes" or "no". Prion diseases are a group of fatal neurodegenerative disorders that happen in human and animals. The main problem with a diagnosis of prion diseases is how to sensitively and selectively discriminate and detection of the minute amount of PrP(Res) in biological samples. Our previous work had demonstrated that dual-aptamer strategy could achieve highly sensitive and selective discrimination and detection of prion protein (cellular prion protein, PrP(C), and the diseases associated isoform, PrP(Res)) in serum and brain. Inspired by the advantages of molecular logic gate, we further conceived a new concept for dual-aptamer logic gate that responds to two chemical input signals (PrP(C) or PrP(Res) and Gdn-HCl) and generates a change in fluorescence intensity as the output signal. It was found that PrP(Res) performs the "OR" logic operation while PrP(C) performs "XOR" logic operation when they get through the gate consisted of aptamer modified reusable magnetic microparticles (MMPs-Apt1) and quantum dots (QDs-Apt2). The dual-aptamer logic gate simplifies the discrimination results of PrP(Res), leaving the detection of PrP(Res) either "yes" or "no". The development of OR logic gate based on dual-aptamer strategy and two chemical input signals (PrP(Res) and Gdn-HCl) is an important step toward the design of prion diseases diagnosis and therapy systems.

摘要

分子逻辑门引起了越来越多的研究兴趣,对于开发分子尺度的计算机至关重要,它简化了测量和检测的结果,使疾病的诊断要么是“是”,要么是“否”。朊病毒病是一组发生在人类和动物身上的致命神经退行性疾病。朊病毒病诊断的主要问题是如何灵敏和选择性地识别和检测生物样本中极少量的 PrP(Res)。我们之前的工作已经证明,双适体策略可以实现对血清和脑中朊病毒蛋白(细胞朊病毒蛋白,PrP(C),和相关的疾病同工型,PrP(Res))的高度灵敏和选择性识别和检测。受分子逻辑门优势的启发,我们进一步构思了一种新的双适体逻辑门概念,该门可以响应两个化学输入信号(PrP(C)或 PrP(Res)和 Gdn-HCl),并将荧光强度的变化作为输出信号。结果发现,当 PrP(Res)通过由适体修饰的可重复使用的磁性微球(MMPs-Apt1)和量子点(QDs-Apt2)组成的门时,执行“或”逻辑运算,而 PrP(C)执行“异或”逻辑运算。双适体逻辑门简化了 PrP(Res)的识别结果,使 PrP(Res)的检测要么是“是”,要么是“否”。基于双适体策略和两个化学输入信号(PrP(Res)和 Gdn-HCl)的“或”逻辑门的发展,是设计朊病毒病诊断和治疗系统的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee68/3564804/1a6cdadd9435/pone.0053935.g001.jpg

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