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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Differences in DNA Probe-Mediated Aggregation Behavior of Gold Nanomaterials Based on Their Geometric Appearance
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Differences in DNA Probe-Mediated Aggregation Behavior of Gold Nanomaterials Based on Their Geometric Appearance

机译:基于几何外观的金纳米材料DNA探针介导的聚集行为的差异

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Nanoparticles are used extensively to detect nucleic acid biomarkers due to their analytical applicability and sensitivity. Systems employing the surface plasmon resonance of gold nanomaterials are overwhelmingly considered to be candidates. The aggregation of gold nanomaterials mediated by the hybridization of target DNA at the interface causes a change in the surface plasmon resonance inherent in gold nanomaterials. Such changes can be measured by spectroscopy or even visualized by the naked eye, enabling effective and positive detection. The optical properties of gold nanoparticles are affected by their shape. The geometric appearance of the nanoparticles also affects their colloidal stability and aggregation behavior. In this study, we examined the effect of the geometric appearance of gold nanomaterials on DNA-mediated aggregation behavior through comparative experiments. Experimental and theoretical methods were used concurrently to derive accurate results and to support the hypotheses. Coarse-grained molecular dynamics simulations were performed with a large-scale atomic/molecular massively parallel simulator to understand the aggregation of nanoparticles with the same surface area and various aspect ratios. As a result, we confirmed that the aggregation sensitivity of nanoparticles was affected by the shape of the contact point with the gold nanomaterials. This study demonstrates that the design of a detection system should be accompanied by an in-depth review of the morphology of the nanoparticle.
机译:纳米颗粒由于它们的分析的适用性和灵敏度广泛用于检测核酸生物标志物。采用黄金纳米材料的表面等离子体共振系统绝大多数是被认为是候选人。通过靶DNA的界面处的杂交介导的金的纳米材料的聚集导致在纳米材料金固有的表面等离子共振的变化。这样的变化可以通过光谱法进行测量,甚至用肉眼可视化,能够有效地和阳性检测。金纳米颗粒的光学性质由它们的形状的影响。纳米粒子的几何形状也影响了他们的胶体稳定性和聚集行为。在这项研究中,我们研究了纳米金对DNA介导的聚集行为的几何外观,通过对比实验的效果。理论和实验方法被同时使用,以获得准确的结果,并支持这些假设。粗粒分子动力学模拟用大规模原子/分子的大规模并行执行模拟器理解具有相同的表面面积和各种纵横比的纳米颗粒的聚集。其结果是,我们证实了纳米颗粒的聚集灵敏度受到影响通过与金的纳米材料的接触点的形状。这项研究表明,检测系统的设计应该由纳米粒子的形态的深入审查陪同。

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