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Ultrasensitive fluorescent aptasensor for CRP detection based on the RNase H assisted DNA recycling signal amplification strategy

机译:基于RNase H辅助DNA回收信号放大策略的CRP检测超细荧光荧光Aptasensor

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摘要

An aptamer-based method for the ultrasensitive fluorescence detection of C-reactive protein (CRP) was developed using the ribonuclease H (RNase H) assisted DNA recycling signal amplification strategy. In this assay, CRP can specifically bind to the aptamer of CRP and the DNA chain of P1 is released from the aptamer/P1 (Ap/P1) complexes. After the addition of the fluorescence labeled (5-FAM) RNA, P1 hybridizes with fluorescence labeled RNA to form a P1/RNA double strand. When RNase H is added, the RNA with fluorescence labeling in the double strand is specifically cut into nucleotide fragments, which cannot be adsorbed on the surface of the GO, so as to generate a fluorescence signal. In the absence of CRP, fluorescence labeled RNA cannot hybridize with P1 to form double strands, which is able to directly adsorb on the surface of GO, resulting in no fluorescence signal. The detection limit is as low as 0.01 ng mL ~(?1) , with a linear dynamic range from 50 pg mL ~(?1) to 100 ng mL ~(?1) . This sensor is able to detect CRP in spiked human serum, urine and saliva. Thus, it shows a great application prospect in disease diagnosis and prognosis.
机译:使用Ribonuclease H(RNase H)辅助DNA回收信号扩增策略,开发了一种基于超敏荧光检测的基于超敏荧光荧光检测的方法。在该测定中,CRP可以特异性地结合CRP的适体,并且P1的DNA链从适体/ P1(AP / P1)配合物中释放。在添加标记的荧光(5-FAM)RNA后,P1与荧光标记的RNA杂交,形成P1 / RNA双链。当添加RNase H时,双链中具有荧光标记的RNA被特异性切割成核苷酸片段,其不能吸附在去的表面上,以产生荧光信号。在不存在CRP的情况下,荧光标记的RNA不能与P1杂交以形成双链,其能够直接吸附在去的表面上,导致荧光信号没有荧光信号。检测限度低至0.01ng ml〜(α1),线性动态范围从50pg ml〜(Δ1)至100ng ml〜(Δ1)。该传感器能够检测尖刺人血清,尿液和唾液中的CRP。因此,它显示出疾病诊断和预后的伟大应用前景。

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