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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Particle-by-Particle Charge Analysis of DNA-Modified Nanoparticles Using Tunable Resistive Pulse Sensing
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Particle-by-Particle Charge Analysis of DNA-Modified Nanoparticles Using Tunable Resistive Pulse Sensing

机译:使用可调电阻脉冲传感对DNA修饰的纳米颗粒进行逐颗粒电荷分析

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Resistive pulse sensors, RPS, are allowing the transport mechanism of molecules, proteins and even nanoparticles to be characterized as they traverse pores. Previous work using RPS has shown that the size, concentration and zeta potential of the analyte can be measured. Here we use tunable resistive pulse sensing (TRPS) which utilizes a tunable pore to monitor the translocation times of nanoparticles with DNA modified surfaces. We start by demonstrating that the translocation times of particles can be used to infer the zeta potential of known standards and then apply the method to measure the change in zeta potential of DNA modified particles. By measuring the translocation times of DNA modified nanoparticles as a function of packing density, length, structure, and hybridization time, we observe a clear difference in zeta potential using both mean values and population distributions as a function of the DNA structure. We demonstrate the ability to resolve the signals for ssDNA, dsDNA, small changes in base length for nucleotides between 15 and 40 bases long, and even the discrimination between partial and fully complementary target sequences. Such a method has potential and applications in sensors for the monitoring of nanoparticles in both medical and environmental samples.
机译:电阻式脉冲传感器RPS允许分子,蛋白质甚至纳米粒子在穿过孔洞时进行表征。以前使用RPS进行的工作表明,可以测量分析物的大小,浓度和Zeta电位。在这里,我们使用可调电阻式脉冲传感(TRPS),该电阻利用可调孔来监测具有DNA修饰表面的纳米颗粒的移位时间。我们首先证明粒子的转运时间可用于推断已知标准品的ζ电势,然后应用该方法测量DNA修饰粒子的ζ电势的变化。通过测量DNA修饰的纳米颗粒的移位时间,该时间是堆积密度,长度,结构和杂交时间的函数,我们使用均值和种群分布作为DNA结构的函数,观察到zeta电位存在明显差异。我们证明了能够解析ssDNA,dsDNA信号,15至40个碱基长的核苷酸的碱基长度发生微小变化的能力,甚至可以区分部分和完全互补的目标序列。这样的方法具有潜力并且在传感器中用于监测医学和环境样品中的纳米颗粒。

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