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Gallium plasmonic nanoparticles for label-free DNA and single nucleotide polymorphism sensing

机译:镓电浆label-free DNA的纳米颗粒和单核苷酸多态性检测

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A label-free DNA and single nucleotide polymorphism (SNP) sensing method is described. It is based on the use of the pseudodielectric function of gallium plasmonic nanoparticles (GaNPs) deposited on Si (100) substrates under reversal of the polarization handedness condition. Under this condition, the pseudodielectric function is extremely sensitive to changes in the surrounding medium of the nanoparticle surface providing an excellent sensing platform competitive to conventional surface plasmon resonance. DNA sensing has been carried out by immobilizing a thiolated capture probe sequence from Helicobacter pylori onto GaNP/Si substrates; complementary target sequences of Helicobacter pylori can be quantified over the range of 10 pM to 3.0 nM with a detection limit of 6.0 pM and a linear correlation coefficient of R-2 = 0.990. The selectivity of the device allows the detection of a single nucleotide polymorphism (SNP) in a specific sequence of Helicobacter pylori, without the need for a hybridization suppressor in solution such as formamide. Furthermore, it also allows the detection of this sequence in the presence of other pathogens, such as Escherichia coli in the sample. The broad applicability of the system was demonstrated by the detection of a specific gene mutation directly associated with cystic fibrosis in large genomic DNA isolated from blood cells.
机译:label-free DNA和单核苷酸多态性(SNP)传感方法。它是基于使用pseudodielectric电浆镓纳米颗粒的函数(GaNPs)沉积在硅(100)基板偏振构型的逆转条件。pseudodielectric函数非常敏感周围介质的变化纳米颗粒表面提供一个很好的遥感平台竞争的传统表面等离子体共振。由固定硫醇盐捕获从幽门螺杆菌在探针序列GaNP / Si基质;幽门螺杆菌序列量化在10点到3.0纳米的范围6.0点的检出限和线性相关系数r2 = 0.990。选择性的设备允许的检测单核苷酸多态性(SNP)幽门螺杆菌的特定序列,没有需要一个杂交抑制甲酰胺等解决方案。允许这个序列的检测其他病原体,如大肠杆菌在示例。系统的检测特定的基因突变与直接相关囊性纤维化在大型基因组DNA孤立从血液细胞。

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