基于微流控芯片的银纳米颗粒适配体传感器用于凝血酶的比色检测。
Microfluidic chip-based silver nanoparticles aptasensor for colorimetric detection of thrombin.
作者信息
Zhao Yaju, Liu Xiaohui, Li Jie, Qiang Weibing, Sun Liang, Li Hui, Xu Danke
机构信息
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
出版信息
Talanta. 2016 Apr 1;150:81-7. doi: 10.1016/j.talanta.2015.09.013. Epub 2015 Sep 10.
In this paper, a colorimetric silver nanoparticles aptasensor (aptamer-AgNPs) was developed for simple and straightforward detection of protein in microfluidic chip. Surface-functionalized microfluidic channels were employed as the capture platform. Then the mixture of target protein and aptamer-AgNPs were injected into the microfluidic channels for colorimetric detection. To demonstrate the performance of this detection platform, thrombin was chosen as a model target protein. Introduction of thrombin could form a sandwich-type complex involving immobilized AgNPs. The amount of aptamer-AgNPs on the complex augmented along with the increase of the thrombin concentration causing different color change that can be analyzed both by naked eyes and a flatbed scanner. This method is featured with low sample consumption, simple processes of microfluidic platform and straightforward colorimetric detection with aptamer-AgNPs. Thrombin at concentrations as low as 20pM can be detected using this aptasensor without signal amplification. This work demonstrated that it had good selectivity over other proteins and it could be a useful strategy to detect other targets with two affinity binding sites for ligands as well.
本文开发了一种比色银纳米颗粒适配体传感器(适配体-银纳米颗粒),用于在微流控芯片中简单直接地检测蛋白质。表面功能化的微流控通道被用作捕获平台。然后将目标蛋白质与适配体-银纳米颗粒的混合物注入微流控通道进行比色检测。为了证明该检测平台的性能,选择凝血酶作为模型目标蛋白质。凝血酶的引入会形成一种涉及固定化银纳米颗粒的夹心型复合物。复合物上适配体-银纳米颗粒的数量随着凝血酶浓度的增加而增加,导致不同的颜色变化,这种变化既可以通过肉眼分析,也可以通过平板扫描仪分析。该方法具有样品消耗低、微流控平台过程简单以及使用适配体-银纳米颗粒进行直接比色检测的特点。使用这种适配体传感器无需信号放大即可检测低至20pM浓度的凝血酶。这项工作表明,它对其他蛋白质具有良好的选择性,并且它也可能是一种用于检测具有两个配体亲和结合位点的其他目标的有用策略。
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