Fluorescent paper–based sensor based on carbon dots for detection of folic acid

被引:0
作者
Wang Li
Xiaoyue Zhang
Chunyue Miao
Ruijun Li
Yibing Ji
机构
[1] China Pharmaceutical University,Department of Analytical Chemistry
[2] Key Laboratory of Drug Quality Control and Pharmacovigilance,undefined
[3] Ministry of Education,undefined
来源
Analytical and Bioanalytical Chemistry | 2020年 / 412卷
关键词
Fluorescence; Paper-based devices; Folic acid; Carbon dots; Biosensors;
D O I
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中图分类号
学科分类号
摘要
Paper-based devices have been very much in the foreground of analytical science recently. This work innovatively proposed a fluorescent paper–based sensor (FPS) constructed on a hybrid polydimethylsiloxane (PDMS)/paper platform where cellulose papers functionalized with carbon dots (CDs) as fluorophores by Schiff base chemistry were loaded on the grooves array of a designed PDMS plate. As a proof of concept, the performance of FPS was investigated with folic acid (FA) as the target analyte. Under optimal conditions, FPS enabled a rapid fluorescence quenching response to FA via inner filter effect in a wide range of 1–300 μmol L−1 with the limit of detection of 0.28 μmol L−1. The feasibility of FPS was further verified by the detection of FA in orange juice and urine samples with satisfactory results. The covalent modification of CDs on paper endowed the FPS with good assay reproducibility and stability. Interestingly, FPS achieved a more sensitive assay of FA than the conventional strategy, by which the same CDs were directly used to detect FA in a solution-based system. The FPS illuminated a novel strategy for construction of reliable and sensitive assays based on paper-based devices. It is of paramount importance for its practical application in biosensing and clinical diagnosis.
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页码:2805 / 2813
页数:8
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[1]  
Babakhanian A(2014)Development of alpha-polyoxometalate-polypyrrole-Au nanoparticles modified sensor applied for detection of folic acid Biosens Bioelectron 60 185-190
[2]  
Kaki S(2014)Adsorption of folic acid, riboflavin, and ascorbic acid from aqueous samples by Fe Anal Methods-Uk 6 798-806
[3]  
Ahmadi M(2018)O J Agric Food Chem 66 13162-13172
[4]  
Ehzari H(2007) magnetic nanoparticles using ionic liquid as modifier Anal Bioanal Chem 387 267-275
[5]  
Pashabadi A(2014)Folic acid reduced triglycerides deposition in primary chicken hepatocytes J Agric Food Chem 62 6592-6599
[6]  
Kamran S(2016)Disposable microfluidic ELISA for the rapid determination of folic acid content in food products J Solid State Chem 241 164-172
[7]  
Asadi M(2019)Polyethylenimine-capped silver nanoclusters as a fluorescence probe for highly sensitive detection of folic acid through a two-step electron-transfer process Talanta. 195 372-380
[8]  
Absalan G(2018)ANTS-anchored Zn-Al-CO Mech Ageing Dev 174 86-94
[9]  
Liu YL(2003)-LDH particles as fluorescent probe for sensing of folic acid Vasc Dis Cancer 133 1961S-213
[10]  
Shen J(2005)Label-free detection of folic acid using a sensitive fluorescent probe based on ovalbumin stabilized copper nanoclusters Eur Food Res Technol 221 208-1382s