Department of Environmental Science and Engineering, Ewha Womans University, Seoul, Republic of Korea.
School of Electrical Engineering, Korea University, Seoul, Republic of Korea.
Biosens Bioelectron. 2017 Aug 15;94:10-18. doi: 10.1016/j.bios.2017.02.029. Epub 2017 Feb 21.
We have demonstrated a palm-size NanoAptamer analyzer capable of detecting bisphenol A (BPA) at environmentally relevant concentrations (<1ng/mL or ppb). It is designed for performing reaction and fluorescence measurement on single cuvette sample. Modified NanoGene assay was used as the sensing mechanism where signaling DNA and QD was tethered to QD and magnetic bead via the aptamer. Aptamer affinity with BPA resulted in the release of the signaling DNA and QD from the complex and hence corresponding decrease in QD fluorescence measurement signal. Baseline characterization was first performed with empty cuvettes, quantum dots and magnetic beads under near-ideal conditions to establish essential functionality of the NanoAptamer analyzer. Duration of incubation time, number of rinse cycles, and necessity of cuvette vibration were also investigated. In order to demonstrate the capability of the NanoAptamer analyzer to detect BPA, samples with BPA concentrations ranging from 0.0005 to 1.0ng/mL (ppb) were used. The performance of the NanoAptamer analyzer was further examined by using laboratory protocol and commercial spectrofluorometer as reference. Correlation between NanoAptamer analyzer and laboratory protocol as well as commercial spectrofluorometer was evaluated via correlation plots and correlation coefficients.
我们展示了一种手掌大小的纳诺适体分析仪,能够检测环境相关浓度(<1ng/mL 或 ppb)的双酚 A(BPA)。它专为在单个试管样品上进行反应和荧光测量而设计。修饰后的纳诺基因检测被用作传感机制,其中信号 DNA 和 QD 通过适体连接到 QD 和磁性珠上。适体与 BPA 的亲和力导致信号 DNA 和 QD 从复合物中释放出来,因此相应地降低了 QD 荧光测量信号。首先在近乎理想的条件下对空试管、量子点和磁性珠进行了基线特征描述,以确定纳诺适体分析仪的基本功能。还研究了孵育时间、冲洗循环次数和试管振动的必要性。为了证明纳诺适体分析仪检测 BPA 的能力,使用了 BPA 浓度范围为 0.0005 至 1.0ng/mL(ppb)的样品。通过使用实验室方案和商业分光光度计作为参考,进一步检查了纳诺适体分析仪的性能。通过相关图和相关系数评估了纳诺适体分析仪与实验室方案和商业分光光度计之间的相关性。