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Graphene Oxide-Based Nanostructured DNA Sensor

机译:基于氧化石墨烯的纳米结构DNA传感器

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摘要

Quick detection of DNA sequence is vital for many fields, especially, early-stage diagnosis. Here, we develop a graphene oxide-based fluorescence quenching sensor to quickly and accurately detect small amounts of a single strand of DNA. In this paper, fluorescent magnetic nanoparticles (FMNPs) modified with target DNA sequence (DNA-t) were bound onto the modified graphene oxide acting as the fluorescence quenching element. FMNPs are made of iron oxide (Fe3O4) core and fluorescent silica (SiO2) shell. The average particle size of FMNPs was 74 ± 6 nm and the average thickness of the silica shell, estimated from TEM results, was 30 ± 4 nm. The photoluminescence and magnetic properties of FMNPs have been investigated. Target oligonucleotide (DNA-t) was conjugated onto FMNPs through glutaraldehyde crosslinking. Meanwhile, graphene oxide (GO) nanosheets were produced by a modified Hummers method. A complementary oligonucleotide (DNA-c) was designed to interact with GO. In the presence of GO-modified with DNA-c, the fluorescence intensity of FMNPs modified with DNA-t was quenched through a FRET quenching mechanism. Our study indicates that FMNPs can not only act as a FRET donor, but also enhance the sensor accuracy by magnetically separating the sensing system from free DNA and non-hybridized GO. Results indicate that this sensing system is ideal to detect small amounts of DNA-t with limitation detection at 0.12 µM.
机译:快速检测DNA序列对于许多领域至关重要,尤其是早期诊断。在这里,我们开发了一种基于氧化石墨烯的荧光猝灭传感器,可以快速而准确地检测少量的DNA单链。在本文中,将目标DNA序列(DNA-t)修饰的荧光磁性纳米颗粒(FMNP)结合到充当荧光猝灭元件的修饰氧化石墨烯上。 FMNP由氧化铁(Fe3O4)芯和荧光二氧化硅(SiO2)外壳制成。 FMNP的平均粒径为74±6 nm,根据TEM结果估算,二氧化硅壳的平均厚度为30±4 nm。已经研究了FMNP的光致发光和磁性。通过戊二醛交联将靶寡核苷酸(DNA-t)缀合到FMNP上。同时,通过改良的Hummers方法生产氧化石墨烯(GO)纳米片。设计互补寡核苷酸(DNA-c)以与GO相互作用。在用DNA-c修饰的GO的存在下,通过FRET猝灭机制猝灭了用DNA-t修饰的FMNP的荧光强度。我们的研究表明,FMNP不仅可以充当FRET供体,还可以通过将传感系统与游离DNA和非杂交GO进行磁分离来提高传感器的准确性。结果表明,该传感系统是检测少量DNA-t的理想选择,极限检测为0.12 µM。

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