Cheng Yao, Sun Chaoyue, Chang Yuhua, Wu Jiayin, Zhang Zhihao, Liu Yunqing, Ge Shenguang, Li Zhao, Li Xiao, Sun Liang, Zang Dejin
National Key Laboratory of Advanced Drug Delivery and Release System, NHC Key Laboratory of Biotechnology Drugs (Shandong Academy of Medical Sciences), Key Lab for Rare and Uncommon Diseases of Shandong Province, School of Pharmacy and Pharmaceutical Sciences, Institute of Materia Medica, Shandong First Medical University and Shandong Academy of Medical Sciences, Jinan, China.
Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, China.
Front Bioeng Biotechnol. 2023 Jun 14;11:1193052. doi: 10.3389/fbioe.2023.1193052. eCollection 2023.
A highly sensitive biosensor for detecting HPV 16 DNA was prepared based on Keggin-type polyoxometalate (SiW)-grafted CdS quantum dots (SiW@CdS QDs) and colloidal gold nanoparticles (Au NPs), which exhibited remarkable selectivity and sensitivity upon target DNA detection because of its excellent photoelectrochemical (PEC) response. Here, an enhanced photoelectronic response ability was achieved with the strong association of SiW@CdS QDs by polyoxometalate modification, which was developed through a convenient hydrothermal process. Furthermore, on Au NP-modified indium tin oxide slides, a multiple-site tripodal DNA walker sensing platform coupled with T7 exonuclease was successfully fabricated with SiW@CdS QDs/NP DNA as a probe for detecting HPV 16 DNA. Due to the remarkable conductivity of Au NPs, the photosensitivity of the as-prepared biosensor was improved in an solution and avoided the use of other regents toxic to living organisms. Finally, under optimized conditions, the as-prepared biosensor protocol demonstrated wide linear ranges (15-130 nM), with a limit of detection of 0.8 nM and high selectivity, stability, and reproducibility. Moreover, the proposed PEC biosensor platform offers a reliable pathway for detecting other biological molecules with nano-functional materials.
基于Keggin型多金属氧酸盐(SiW)接枝的硫化镉量子点(SiW@CdS量子点)和胶体金纳米颗粒(Au NPs)制备了一种用于检测人乳头瘤病毒16型(HPV 16)DNA的高灵敏度生物传感器,由于其优异的光电化学(PEC)响应,在检测目标DNA时表现出显著的选择性和灵敏度。在此,通过多金属氧酸盐修饰实现了SiW@CdS量子点的强缔合,从而增强了光电子响应能力,该修饰通过简便的水热法实现。此外,在金纳米颗粒修饰的氧化铟锡载玻片上,以SiW@CdS量子点/纳米颗粒DNA为探针,成功构建了一种与T7核酸外切酶偶联的多位点三脚架DNA步行器传感平台,用于检测HPV 16 DNA。由于金纳米颗粒具有显著的导电性,所制备的生物传感器在水溶液中的光敏性得到了提高,并且避免了使用其他对生物体有毒的试剂。最后,在优化条件下,所制备的生物传感器方案显示出较宽的线性范围(15 - 130 nM),检测限为0.8 nM,具有高选择性、稳定性和重现性。此外,所提出的PEC生物传感器平台为使用纳米功能材料检测其他生物分子提供了一条可靠的途径。