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基于多孔硅布拉格反射镜的β-乳球蛋白双信号光检测。

Dual signal light detection of beta-lactoglobulin based on a porous silicon bragg mirror.

机构信息

School of Physical Science and Technology, Xinjiang University, Urumqi, 830046, China.

School of Life Science and Technology, Xinjiang University, Urumqi, 830046, China.

出版信息

Biosens Bioelectron. 2022 May 15;204:114035. doi: 10.1016/j.bios.2022.114035. Epub 2022 Jan 30.

Abstract

In this work, a new dual signal light detection method based on porous silicon Bragg mirror (PSBM) and biological labelling with quantum dots (QDs) is proposed for the detection of beta-lactoglobulin (β-lg). The first signal light is a probe light emitted by a laser with wavelength of 633 nm, which enters the PSBM and is reflected from the surface. The wavelength of the probe light is located at the edge of the PSBM band gap, where it has the lowest reflectivity. β-lg antibodies is labelled with CdSe/ZnS QDs and reacts with β-lg molecules have been fixed to the inner wall of the porous silicon pores. Due to the specific binding of biomolecules in PSBM, the refractive index of the device increases, resulting in the enhancement of detection reflected light. The QDs play the role of refractive index amplification. The second signal light is the fluorescence of QDs in immune reactants. QDs produce fluorescence at 630 nm when excited by a short-wavelength laser. The fluorescence signal is further enhanced by PSBM. The superimposed images of two kinds of light on the surface of PSBM are obtained by digital microscope at the same time. By calculating the average grey value change of the image before and after biological reaction, β-lg can be detected with high sensitivity. The detection limit of β-lg was 0.12 ng/mL. The experimental results showed that the PSBM-based dual signal light method could be used to detect the content of cow milk adulterated in β-lg free camel milk.

摘要

在这项工作中,提出了一种基于多孔硅布拉格镜(PSBM)和量子点(QDs)生物标记的新型双信号光检测方法,用于检测β-乳球蛋白(β-lg)。第一束信号光为激光发出的探针光,波长为 633nm,进入 PSBM 并从表面反射。探针光的波长位于 PSBM 带隙边缘,此时其反射率最低。CdSe/ZnS QDs 标记的β-lg 抗体与已固定在多孔硅孔内壁的β-lg 分子发生反应。由于 PSBM 中生物分子的特异性结合,器件的折射率增加,导致检测反射光增强。QDs 起到折射率放大的作用。第二束信号光是免疫反应物中 QDs 的荧光。当短波长激光激发时,QDs 在 630nm 处产生荧光。PSBM 进一步增强了荧光信号。通过数字显微镜同时获得 PSBM 表面两种光的叠加图像。通过计算生物反应前后图像的平均灰度值变化,可以高灵敏度地检测β-lg。β-lg 的检测限为 0.12ng/mL。实验结果表明,基于 PSBM 的双信号光方法可用于检测β-lg 无骆驼奶中掺牛奶的含量。

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