A universal colorimetry for nucleic acids and aptamer-specific ligands detection based on DNA hybridization amplification

适体 核酸 DNA 化学 比色法 DNA–DNA杂交 杂交探针 核酸热力学 分子生物学 计算生物学 生物化学 生物 色谱法 基序列
作者
Shuang Li,Xinxin Shang,Jia Liu,Yujie Wang,Yingshu Guo,Jinmao You
出处
期刊:Analytical Biochemistry [Elsevier]
卷期号:528: 47-52 被引量:21
标识
DOI:10.1016/j.ab.2017.04.013
摘要

We present a universal amplified-colorimetric for detecting nucleic acid targets or aptamer-specific ligand targets based on gold nanoparticle-DNA (GNP-DNA) hybridization chain reaction (HCR). The universal arrays consisted of capture probe and hairpin DNA-GNP. First, capture probe recognized target specificity and released the initiator sequence. Then dispersed hairpin DNA modified GNPs were cross-linked to form aggregates through HCR events triggered by initiator sequence. As the aggregates accumulate, a significant red-to purple color change can be easily visualized by the naked eye. We used miRNA target sequence (miRNA-203) and aptamer-specific ligand (ATP) as target molecules for this proof-of-concept experiment. Initiator sequence (DNA2) was released from the capture probe (MNP/DNA1/2 conjugates) under the strong competitiveness of miRNA-203. Hairpin DNA (H1 and H2) can be complementary with the help of initiator DNA2 to form GNP-H1/GNP-H2 aggregates. The absorption ratio (A620/A520) values of solutions were a sensitive function of miRNA-203 concentration covering from 1.0 × 10-11 M to 9.0 × 10-10 M, and as low as 1.0 × 10-11 M could be detected. At the same time, the color changed from light wine red to purple and then to light blue have occurred in the solution. For ATP, initiator sequence (5'-end of DNA3) was released from the capture probe (DNA3) under the strong combination of aptamer-ATP. The present colorimetric for specific detection of ATP exhibited good sensitivity and 1.0 × 10-8 M ATP could be detected. The proposed strategy also showed good performances for qualitative analysis and quantitative analysis of intracellular nucleic acids and aptamer-specific ligands.
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