装配磁珠的光电dna检测平台

Fei Li, Jin Xu
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引用次数: 0

摘要

在这项工作中,我们提出了一个由组装磁珠和集成光电二极管在硅芯片上的DNA杂交检测平台。标记有磁珠的DNA靶在杂交后产生一个不透明的区域,并利用制造的光电二极管将普通光转化为电能。与杂交前检测到的光电流相比,光强的变化可以清晰地诊断DNA杂交的信号。据我们所知,这是第一次在硅芯片上组装磁珠和集成光电二极管来检测DNA杂交。该检测平台具有成本低、精度高、耗时短等优点。利用该技术可以成功地区分单碱基错配DNA和完全匹配DNA序列,节省了扩增杂交信号的时间。该检测平台也适用于DNA计算,因为磁性可以很容易地消除问题的不可行解。在该平台上用DNA计算解决了一个最小顶点覆盖问题的实验结果,表明了该检测平台的明显优势,并具有构建光电读出全自动DNA计算机的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photoelectric DNA-Detection Platform with Assembled Magnetic Beads
In this work, we propose a DNA hybridization detection platform with assembled magnetic beads and integrated photodiodes on a silicon chip. DNA targets labeled magnetic beads generate an opaque area after hybridization, and the fabricated photodiode is utilized to turn ordinary light into electricity. Compared with the detected photocurrent before hybridization, the signal of DNA hybridization can be distinctly diagnosed by the light intensity changing. As far as we know, it is the first time to assemble magnetic beads with integrated photodiode on a silicon chip to detect DNA hybridization. The advantages of this detection platform are lower cost, higher precision and less time consuming. With this technique, we could successfully discriminate single base mismatched DNA from perfectly matched DNA sequence, which saves the time of amplifying hybridization signal. This detection platform also fits for DNA computing because magnetic property could easily eliminate unfeasible solutions of problem. The experimental result of a minimum vertex cover problem, which is solved by DNA computing on this platform, reveals the obvious benefits of this detection platform and its potential to be used to construct a fully automatic DNA computer with photoelectric readout.
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