3SPack NSERC-Industry Chair, CREPEC, Département de génie Chimique, Polytechnique Montréal, Station Centre-Ville, P.O. box 6079, Montréal, QC, H3C3A7, Canada.
Sci Rep. 2020 Sep 1;10(1):14367. doi: 10.1038/s41598-020-71285-3.
In this study, we propose a novel sensitive solid-based immunosensor developed on a plasmonic nanopaper platform for the detection of Escherichia coli (E. coli) bacteria. This plasmonic nanopaper that comprises of carboxylated bacterial cellulose (CBC) impregnated with gold nanoparticles (AuNP-CBC), employed as a quencher and a sustainable functionalized platform to be conjugated with protein A. Thus, the conjugated protein A allows the aligned linkage of EAb-QD (anti-E. coli conjugated quantum dot) and EAb-AF (anti-E. coli conjugated Alexa Fluor 488). Interestingly, once E. coli was captured by the AuNP-CBC/EAb-QD or AuNP-CBC/EAb-AF, the energy transfer from the QD or Alexa Fluor fluorophores is triggered due to the conformational change in the antibody structure and this, in turn, causes a decrease in the distance between fluorophores and the quencher nanopaper and, therefore diminishing their photoluminescence. The immunosensors performed successfully to recognize E. coli at concentrations as low as 50 CFU mL in the standard buffer. The examined functionality of the immunosensors in a real matrix such as chicken extract and lettuce juice demonstrated a highly efficient response while QD is the main fluorophore with a limit of detection around 100 CFU mL.
在这项研究中,我们提出了一种基于等离子体纳米纸平台的新型敏感固基免疫传感器,用于检测大肠杆菌(E. coli)细菌。这种等离子体纳米纸由羧基化细菌纤维素(CBC)和金纳米颗粒(AuNP-CBC)组成,用作淬灭剂和可持续功能化平台,与蛋白 A 结合。因此,共轭的蛋白 A 允许 EAb-QD(抗大肠杆菌共轭量子点)和 EAb-AF(抗大肠杆菌共轭 Alexa Fluor 488)的对齐连接。有趣的是,一旦大肠杆菌被 AuNP-CBC/EAb-QD 或 AuNP-CBC/EAb-AF 捕获,由于抗体结构的构象变化,从 QD 或 Alexa Fluor 荧光团触发能量转移,这反过来又导致荧光团和淬灭剂纳米纸之间的距离减小,从而降低它们的光致发光。该免疫传感器在标准缓冲液中成功地以低至 50 CFU mL 的浓度识别大肠杆菌。在鸡提取物和生菜汁等实际基质中检查免疫传感器的功能,证明了其具有高效的响应能力,而 QD 是主要的荧光团,其检测限约为 100 CFU mL。