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基于活性氮空位中心电荷态控制的无标记钻石微流控 DNA 传感器。

A Label-Free Diamond Microfluidic DNA Sensor Based on Active Nitrogen-Vacancy Center Charge State Control.

机构信息

Department of Biomedical Technology, Faculty of Biomedical Engineering, Czech Technical University in Prague, Sítna sq. 3105, 27201 Kladno, Czech Republic.

Institute for Materials Research, Material Physics Division University of Hasselt, Wetenschapspark 1, B 3590 Diepenbeek, Belgium.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 28;13(16):18500-18510. doi: 10.1021/acsami.1c01118. Epub 2021 Apr 13.

DOI:10.1021/acsami.1c01118
PMID:33849273
Abstract

We propose a label-free biosensor concept based on the charge state manipulation of nitrogen-vacancy (NV) quantum color centers in diamond, combined with an electrochemical microfluidic flow cell sensor, constructed on boron-doped diamond. This device can be set at a defined electrochemical potential, locking onto the particular chemical reaction, whilst the NV center provides the sensing function. The NV charge state occupation is initially prepared by applying a bias voltage on a gate electrode and then subsequently altered by exposure to detected charged molecules. We demonstrate the functionality of the device by performing label-free optical detection of DNA molecules. In this experiment, a monolayer of strongly cationic charged polymer polyethylenimine is used to shift the charge state of near surface NV centers from negatively charged NV to neutral NV or dark positively charged NV. Immobilization of negatively charged DNA molecules on the surface of the sensor restores the NV centers charge state back to the negatively charged NV, which is detected using confocal photoluminescence microscopy. Biochemical reactions in the microfluidic channel are characterized by electrochemical impedance spectroscopy. The use of the developed electrochemical device can also be extended to nuclear magnetic resonance spin sensing.

摘要

我们提出了一种基于氮空位(NV)量子色心电荷态操纵的无标记生物传感器概念,该传感器结合了电化学微流控流动池传感器,构建在掺硼金刚石上。该器件可以设置在定义的电化学势下,锁定特定的化学反应,而 NV 中心提供传感功能。NV 电荷态占据最初通过在栅极上施加偏置电压来制备,然后通过暴露于检测到的带电分子来改变。我们通过对 DNA 分子进行无标记的光学检测来演示该器件的功能。在该实验中,使用单层强阳离子聚电解质聚乙烯亚胺来将近表面 NV 中心的电荷态从带负电荷的 NV 转变为中性 NV 或暗带正电荷的 NV。传感器表面上带负电荷的 DNA 分子的固定将 NV 中心的电荷态恢复为带负电荷的 NV,通过共焦荧光显微镜检测到这一点。微流道中的生化反应通过电化学阻抗谱进行表征。所开发的电化学器件的用途还可以扩展到磁共振自旋传感。

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