4.8 Article

Design and Synthesis of Target-Responsive Aptamer-Cross-linked Hydrogel for Visual Quantitative Detection of Ochratoxin A

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 12, 页码 6982-6990

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b01120

关键词

DNA hydrogel; visual detection; microfluidics; Ochratoxin A

资金

  1. National Natural Science Funds for Distinguished Young Scholar [21325522]
  2. National Natural Science Funds for Excellent Youth Scholars of China [21422506]
  3. National Natural Science Foundation of China [91313302, 21205100, 21275122, 21435004]
  4. National Instrumentation Program [2011YQ03012412]
  5. Natural Science Foundation of Fujian Province [2013J01061]
  6. National Found for Fostering Talents of Basic Science (NFFTBS) [J1310024]

向作者/读者索取更多资源

A target-responsive aptamer-cross-linked hydrogel was designed and synthesized for portable and visual quantitative detection of the toxin Ochratoxin A (OTA), which occurs in food and beverages. The hydrogel network forms by hybridization between one designed DNA strand containing the OTA aptamer and two complementary DNA strands grafting on linear polyacrylamide chains. Upon the introduction of OTA, the aptamer binds with OTA, leading to the dissociation of the hydrogel, followed by release of the preloaded gold nanoparticles (AuNPs), which can be observed by the naked eye. To enable sensitive visual and quantitative detection, we encapsulated Au@Pt core-shell nanoparticles (Au@PtNPs) in the hydrogel to generate quantitative readout in a volumetric bar-chart chip (V-Chip). In the V-Chip, Au@PtNPs catalyzes the oxidation of H2O2 to generate O-2, which induces movement of an ink bar to a concentration-dependent distance for visual quantitative readout. Furthermore, to improve the detection limit in complex real samples, we introduced an immunoaffinity column (IAC) of OTA to enrich OTA from beer. After the enrichment, as low as 1.27 nM (0.51 ppb) OTA can be detected by the V-Chip, which satisfies the test requirement (2.0 ppb) by the European Commission. The integration of a target-responsive hydrogel with portable enrichment by IAC, as well as signal amplification and quantitative readout by a simple microfluidic device, offers a new method for portable detection of food safety hazard toxin OTA.

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