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Porous SiO_2@Ni@C and Au nanocages as surface-enhanced Raman spectroscopy platform with use of DNA structure switching for sensitive detection of uracil DNA glycolase

机译:多孔SiO_2 @ Ni @ C和Au纳米笼作为表面增强拉曼光谱平台,并利用DNA结构转换技术灵敏地检测尿嘧啶DNA乙醇酸酶

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In this work, SiO2@Ni@C nanosphere and Au nanocages (AuNCs) platform with use of target-induced DNA structure switching strategy was utilized to construct a surface-enhanced Raman spectroscopy (SERS) biosensor to analyze trace amounts of uracil DNA glycolase (UDG). In details, we utilized NH2-functioned SiO2@Ni@C nanosphere to immobilize abundant hairpin DNA (R) due to the large surface area and abundant adsorption sites. In the presence of the target UDG, they could specifically recognize and hydrolyze the uracil bases, generating apyrimidinic (AP) sites to induce DNA structure switching process, which could reconfigure hairpin DNA (R) to hairpin DNA (R'). Then the generated R' could capture complementary DNA S-1 bonded to the toluidine blue-Au nanocages (AuNCs-TB). With the increasing amount of UDG, more SiO2@Ni@C-NH2-R' would be obtained and coupled with TB-AuNCs-S1 to produce a stronger Raman signal. Based on this simple protocol, the SERS assay could achieve sensitive UDG detection in a concentration range from 5 x 10(-5) U mL(-1) to 1 U mL(-1) with a detection limit down to 3.2 x 10(-5) U mL(-1). Therefore, this SERS-based assay gives a new strategy for SERS detection which may have potential application for ultrasensitive detection of other protein biomarkers.
机译:在这项工作中,利用目标诱导的DNA结构转换策略的SiO2 @ Ni @ C纳米球和Au纳米笼(AuNCs)平台构建了一个表面增强拉曼光谱(SERS)生物传感器,以分析痕量尿嘧啶DNA乙醇酸酶( UDG)。详细地讲,由于表面积和吸附位点丰富,我们利用NH2官能化的SiO2 @ Ni @ C纳米球固定了丰富的发夹DNA(R)。在存在目标UDG的情况下,他们可以特异性识别并水解尿嘧啶碱基,生成嘧啶基(AP)位点以诱导DNA结构转换过程,从而可以将发夹DNA(R)重新配置为发夹DNA(R')。然后,产生的R'可以捕获与甲苯胺蓝-Au纳米笼(AuNCs-TB)结合的互补DNA S-1。随着UDG含量的增加,将获得更多的SiO2 @ Ni @ C-NH2-R',并与TB-AuNCs-S1耦合产生更强的拉曼信号。基于此简单协议,SERS分析可在5 x 10(-5)U mL(-1)到1 U mL(-1)的浓度范围内实现灵敏的UDG检测,检测限低至3.2 x 10( -5)U mL(-1)。因此,这种基于SERS的检测方法为SERS检测提供了一种新策略,该策略可能对其他蛋白质生物标记物的超灵敏检测具有潜在的应用前景。

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