胶体金
DNA
生物传感器
适体
聚电解质
共轭体系
核酸
化学
纳米颗粒
分子
组合化学
肉眼
生物物理学
小分子
核酸热力学
纳米技术
生物化学
材料科学
色谱法
分子生物学
聚合物
检出限
生物
有机化学
基序列
作者
Fan Xia,Xiaolei Zuo,Renqiang Yang,Yi Xiao,Di Kang,Alexis Vallée‐Bélisle,Xiong Gong,Jonathan D. Yuen,Ben B. Y. Hsu,Alan J. Heeger,Kevin W. Plaxco
标识
DOI:10.1073/pnas.1005632107
摘要
We have demonstrated a novel sensing strategy employing single-stranded probe DNA, unmodified gold nanoparticles, and a positively charged, water-soluble conjugated polyelectrolyte to detect a broad range of targets including nucleic acid (DNA) sequences, proteins, small molecules, and inorganic ions. This nearly “universal” biosensor approach is based on the observation that, while the conjugated polyelectrolyte specifically inhibits the ability of single-stranded DNA to prevent the aggregation of gold-nanoparticles, no such inhibition is observed with double-stranded or otherwise “folded” DNA structures. Colorimetric assays employing this mechanism for the detection of hybridization are sensitive and convenient—picomolar concentrations of target DNA are readily detected with the naked eye, and the sensor works even when challenged with complex sample matrices such as blood serum. Likewise, by employing the binding-induced folding or association of aptamers we have generalized the approach to the specific and convenient detection of proteins, small molecules, and inorganic ions. Finally, this new biosensor approach is quite straightforward and can be completed in minutes without significant equipment or training overhead.
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