A novel insight into fluorescent sensor for patulin detection using thiol-terminated liposomes with encapsulated coumarin-6 as signal probe
文献类型: 外文期刊
作者: Nie, Dongxia 1 ; Guo, Dakai 1 ; Huang, Qingwen 1 ; Guo, Wenbo 1 ; Wang, Jianhua 1 ; Zhao, Zhihui 1 ; Han, Zheng 1 ;
作者机构: 1.Shanghai Acad Agr Sci, Minist Agr, Lab Qual & Safety Risk Assessment Agroprod Shangh, Shanghai Key Lab Protected Hort Technol,Inst Agro, 1000 Jingqi Rd, Shanghai 201403, Peoples R China
关键词: Fluorescent sensor; CM6@Lip-SH; Magnetic separation; Patulin; Point-of-care testing
期刊名称:SENSORS AND ACTUATORS B-CHEMICAL ( 影响因子:7.46; 五年影响因子:6.743 )
ISSN:
年卷期: 2021 年 345 卷
页码:
收录情况: SCI
摘要: Nanocomposites of thiol-terminated liposomes encapsulating with coumarin-6 (CM6@Lip-SH) were successfully prepared via a simple thin-film dispersion method to construct a novel fluorescent sensor for selectively detecting trace amounts of patulin. Thiol group (-SH) was designed not only as a specific recognition element to capture patulin, but also as a convenient linker for the further separation of patulin-derivatized and un-derivatized CM6@Lip-SH by combination with magnetic NH2-Au@Fe3O4 nanoparticles. Liposomes primarily provided an effective platform with a large surface area for facilitated accommodation of large amounts of recognition element (-SH group) and fluorophore (coumarin-6). In such an assay protocol, a reliable link was established between the changes in fluorescent intensity (Delta F) from the nanocomposites of CM6@Lip-SH/NH2-Au@Fe3O4 and the concentrations of patulin in the range of 0.05-20 ng mL(-1), with the correlation coefficient of 0.996. This approach also effectively eliminated the background interference from other mycotoxins and metal ions. Under the optimal conditions, the designed sensor displayed excellent performance for patulin analysis, with an extremely low detection limit (0.033 ng mL(-1)), high recovery (96.2-107.6 %) and excellent selectivity. Furthermore, the feasibility of its applications has also been demonstrated in the analysis of real juice samples, providing a novel tactics for rational design of a fluorescence assay, for point-of-care diagnostics of patulin, with great potential to be extended to other hazardous compounds by substitution of the recognition elements.
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