Portable Plasmonic Paper-Based Biosensor for Simple and Rapid Indirect Detection of CEACAM5 Biomarker via Metal-Enhanced Fluorescence

被引:3
|
作者
Susu, Laurentiu [1 ,2 ]
Vulpoi, Adriana [3 ]
Astilean, Simion [1 ,2 ]
Focsan, Monica [1 ]
机构
[1] Babes Bolyai Univ, Nanobiophoton & Laser Microspect Ctr, Interdisciplinary Res Inst Bionanosci, T Laurian Str 42, Cluj Napoca 400271, Romania
[2] Babes Bolyai Univ, Fac Phys, Biomol Phys Dept, M Kogalniceanu Str 1, Cluj Napoca 400084, Romania
[3] Babes Bolyai Univ, Nanostruct Mat & Bionanointerfaces Ctr, Interdisciplinary Res Inst Bionanosci, T Laurian Str 42, Cluj Napoca 400271, Romania
关键词
quantum dots; plasmonic calligraphy; paper; biomarker; MEF biodetection; POC; QUANTITATIVE DETECTION; QUANTUM DOTS;
D O I
10.3390/ijms231911982
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Rapid, simple, and sensitive analysis of relevant proteins is crucial in many research areas, such as clinical diagnosis and biomarker detection. In particular, clinical data on cancer biomarkers show great promise in forming reliable predictions for early cancer diagnostics, although the current analytical systems are difficult to implement in regions of limited recourses. Paper-based biosensors, in particular, have recently received great interest because they meet the criteria for point-of-care (PoC) devices; the main drawbacks with these devices are the low sensitivity and efficiency in performing quantitative measurements. In this work, we design a low-cost paper-based nanosensor through plasmonic calligraphy by directly drawing individual plasmonic lines on filter paper using a ballpoint pen filled with gold nanorods (AuNR) as the colloidal ink. The plasmonic arrays were further successively coated with negatively and positively charged polyelectrolyte layers employed as dielectric spacers to promote the enhancement of the emission of carboxyl-functionalized quantum dots (QD)-previously conjugated with specific antibodies-for indirect detection of the carcinoembryonic antigen-related cell adhesion molecule 5 (CEACAM5). The efficiency, sensitivity, as well as the specificity of our portable nanosensor were validated by recording the luminescence of the QD@Ab complex when different concentrations of CEACAM5 were added dropwise onto the calligraphed plasmonic arrays.
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页数:15
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