适体
检出限
材料科学
选择性
双酚A
DNA
荧光
双酚
色谱法
化学
分子生物学
生物
生物化学
环氧树脂
有机化学
催化作用
物理
量子力学
作者
Eun‐Hee Lee,Hyun Jeong Lim,Sang-Don Lee,Ahjeong Son
标识
DOI:10.1021/acsami.7b02377
摘要
For the sensitive quantification of bisphenol A (BPA), we have developed NanoAptamer assay, which employs aptamer and complementary signaling DNA, a set of quantum dots (QD), and magnetic beads (MBs). Signaling DNA–QD655 was tethered to MB–QD565 via the aptamer. The affinity of the aptamer to BPA resulted in the release of the signaling DNA–QD655 from the complex and hence the corresponding decrease in the QD655 fluorescence measurement signal. Three new aptamers (23, 58, and 24-mer) were designed via truncation of the reference aptamer (73-mer). The sensitivity and selectivity of each aptamer for BPA detection via NanoAptamer assay were investigated. One of the truncated aptamers (24-mer) has shown a significantly better performance (limit of detection, LOD, 0.17 pg/mL) than the reference 73-mer aptamer (LOD, 570 pg/mL). It has also shown the best selectivity for BPA detection over BPA analogues (i.e., bisphenol B, bisphenol C, and diethylstilbestrol). It corresponded to a normalized fluorescence change of 33.7% at the environmentally relevant concentration of 1 ng/mL (1 ppb) BPA; however, the analogues remained unchanged (2.3–3.9%).
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