Li Xia, Song Juan, Xue Qing-Wang, You Fu-Heng, Lu Xia, Kong Yan-Cong, Ma Shu-Yi, Jiang Wei, Li Chen-Zhong
Department of Chemistry, Liao Cheng University, Liaocheng 252059, China.
School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, China.
Nanomaterials (Basel). 2016 Oct 21;6(10):190. doi: 10.3390/nano6100190.
Bisphenol A (BPA) detection in drinking water and food packaging materials has attracted much attention since the discovery that BPA can interfere with normal physiological processes and cause adverse health effects. Here, we constructed a label-free aptamer fluorescent assay for selective and sensitive detection of BPA based on the rolling circle amplification (RCA)/Exonuclease III (Exo III)-combined cascade amplification strategy. First, the duplex DNA probe (RP) with anti-BPA aptamer and trigger sequence was designed for BPA recognition and signal amplification. Next, under the action of BPA, the trigger probe was liberated from RP to initiate RCA reaction as primary amplification. Subsequently, the RCA products were used to trigger Exo III assisted secondary amplification with the help of hairpin probes, producing plenty of "G-quadruplex" in lantern-like structures. Finally, the continuously enriched "G-quadruplex lanterns" were lightened by zinc(II)-protoporphyrin IX (ZnPPIX) generating enhanced fluorescence signals. By integrating the primary RCA and secondary Exo III mediated cascade amplification strategy, this method displayed an excellent sensitivity with the detection limits of 5.4 × 10 M. In addition, the anti-BPA aptamer exhibits high recognition ability with BPA, guaranteeing the specificity of detection. The reporter signal probe (G-quadruplex with ZnPPIX) provides a label-free fluorescence signals readout without complicated labeling procedures, making the method simple in design and cost-effective in operation. Moreover, environmental samples analysis was also performed, suggesting that our strategy was reliable and had a great potential application in environmental monitoring.
自发现双酚A(BPA)会干扰正常生理过程并对健康产生不利影响以来,饮用水和食品包装材料中双酚A的检测备受关注。在此,我们基于滚环扩增(RCA)/核酸外切酶III(Exo III)联合级联扩增策略构建了一种用于选择性和灵敏检测双酚A的无标记适体荧光分析法。首先,设计了带有抗BPA适体和触发序列的双链DNA探针(RP)用于双酚A识别和信号放大。接下来,在双酚A的作用下,触发探针从RP中释放出来以启动RCA反应作为一级扩增。随后,RCA产物在发夹探针的帮助下用于触发Exo III辅助的二级扩增,产生大量灯笼状结构的“G-四链体”。最后,不断富集的“G-四链体灯笼”被锌(II)-原卟啉IX(ZnPPIX)点亮,产生增强的荧光信号。通过整合一级RCA和二级Exo III介导的级联扩增策略,该方法显示出优异的灵敏度,检测限为5.4×10⁻⁹ M。此外,抗BPA适体对双酚A具有高识别能力,保证了检测的特异性。报告信号探针(带有ZnPPIX的G-四链体)提供了无标记的荧光信号读出,无需复杂的标记程序,使得该方法设计简单且操作成本低。此外,还进行了环境样品分析,表明我们的策略可靠,在环境监测中具有巨大的潜在应用价值。