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基于反射式微光纤光栅生物传感器的原位 DNA 杂交检测。

In-situ DNA hybridization detection with a reflective microfiber grating biosensor.

机构信息

Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.

Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.

出版信息

Biosens Bioelectron. 2014 Nov 15;61:541-6. doi: 10.1016/j.bios.2014.05.065. Epub 2014 Jun 9.

Abstract

A label-free fiber-optic biosensor with a reflective microfiber Bragg grating (mFBG) configuration for in-situ DNA hybridization detection has been proposed and experimentally demonstrated. A single straight Bragg grating inscribed in the silica microfiber provides two well-defined resonances in reflection, which show different response to external medium refractive index (RI) and present the same temperature sensitivity. By monitoring the wavelength separation between these two resonances, temperature-compensated RI measurement has been achieved. The label-free bio-recognition scheme used demonstrates that the sensor relies on the surface functionalization of a monolayer of poly-l-lysine (PLL), synthetic DNA sequences that bind with high specificity to a given target. In addition to monitoring the surface functionalization of the fiber in real-time, the results also show how the fiber biosensor can detect the presence of the DNA hybridization with high specificity, in various concentration of target DNA solutions, with lowest detectable concentration of 0.5 µM.

摘要

提出并实验演示了一种用于原位 DNA 杂交检测的无标记光纤生物传感器,其采用反射式微光纤布拉格光栅(mFBG)结构。在二氧化硅微光纤中刻写的单个直布拉格光栅在反射中提供了两个明确定义的共振,它们对外界介质折射率(RI)的响应不同,并呈现出相同的温度灵敏度。通过监测这两个共振之间的波长分离,实现了温度补偿的 RI 测量。所使用的无标记生物识别方案表明,传感器依赖于聚-l-赖氨酸(PLL)单层的表面功能化,该单层的合成 DNA 序列与特定目标具有高度特异性的结合。除了实时监测光纤的表面功能化外,结果还表明光纤生物传感器如何以高特异性检测 DNA 杂交的存在,在不同浓度的目标 DNA 溶液中,最低可检测浓度为 0.5 µM。

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