首页> 外文会议>Advances in sensors and Interfaces, 2009. IWASI 2009 >New probe immobilizations by lipoate-diethalonamines or ethylene-glycol molecules for capacitance DNA chip
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New probe immobilizations by lipoate-diethalonamines or ethylene-glycol molecules for capacitance DNA chip

机译:硫辛酸-二邻苯二胺或乙二醇分子固定电容DNA芯片的新探针固定

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Label-free DNA detection is of crucial role to when developing point-of-care biochips to be used in personalized therapy. Capacitance detection is a promising technology for label-free DNA detection. However, data published in literature often show evident time drift, large standard deviation, scattered data points, and poor reproducibility. To solve these problems, alkanethiol molecules such as mercapto-hexanol are usually considered as blocking agents. The aim of the present paper is to investigate new blocking agents to further improve DNA probe surfaces. Data from AFM, SPR, fluorescence microscopy, and capacitance measurements are used to demonstrate the new lipoates molecules. Moreover precursor layers obtained by using Ethylene-glycol alkanethiols offer further improvements in terms of diminished detection errors. Film structure is investigated at the nano-scale to justify the detection improvements in terms of probe surface quality. This study demonstrates the superiority of lipoate and Ethylene-glycol molecules as blocking candidates when immobilizing molecular probes onto spot surfaces in label-free DNA biochip.
机译:无标记DNA检测对于开发用于个性化治疗的现场护理生物芯片至关重要。电容检测是一种用于无标记DNA检测的有前途的技术。但是,文献中发表的数据通常显示出明显的时间漂移​​,较大的标准偏差,分散的数据点以及可重复性差。为了解决这些问题,链烷硫醇分子例如巯基己醇通常被认为是封闭剂。本文的目的是研究新的封闭剂,以进一步改善DNA探针表面。来自AFM,SPR,荧光显微镜和电容测量的数据用于证明新的脂酸酯分子。而且,通过使用乙二醇-链烷硫醇获得的前体层在减少检测误差方面提供了进一步的改进。在纳米级对膜结构进行了研究,以证明探针表面质量方面的检测改进是合理的。这项研究表明,当将分子探针固定在无标记DNA生物芯片中的斑点表面上时,硫辛酸酯和乙二醇分子作为封闭候选物的优势。

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