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High Surface Area Flexible Chemiresistive Biosensor by Oxidative Chemical Vapor Deposition

机译:氧化化学气相沉积高表面积柔性化学阻性生物传感器

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摘要

Fabrication of a chemiresistive biosensor for detection of biomolecules is demonstrated on a high surface area, flexible electro-spun nylon fiber mat. For the first time, the -OH functionalized conducting copolymer of 3,4-ethy-lenedioxythiophene (EDOT) and 3-thiopheneethanol (3-TE) is synthesized and conformally deposited on the electro-spun mats by oxidative chemical vapor deposition (oCVD). The free -OH functional groups of the copolymer are available for immobilization of analyte specific biomolecules. Here, avidin and biotin molecules are employed as the analyte-specific molecule and analyte respectively for their high specificity to each other. The sensitivities of avidin immobilized conducting copolymer on electro-spun mats are tested against micro-molar to nano-molar concentrations of biotin in aqueous solutions. Application of electro-spun fiber mat in this case enhances the sensor response 6 times when compared to a flat substrate and also significantly lowers the response time. In addition to the experimental studies, current work also includes modeling of the kinetics of the change of response for the biotin-avidin interactions as a function of time. Most importantly, this fabrication technique promises an extremely sensitive and field deployable method for the detection of other biomolecules, for example, food pathogens.
机译:在高表面积,柔性电纺尼龙纤维垫上展示了用于检测生物分子的化学生物传感器的制造。首次合成了3,4-乙基-二乙氧基噻吩(EDOT)和3-噻吩乙醇(3-TE)的-OH官能化导电共聚物,并通过氧化化学气相沉积(oCVD)将其共形沉积在电纺垫上。共聚物的游离-OH官能团可用于固定分析物特定的生物分子。在此,亲和素和生物素分子由于彼此的高特异性而分别用作被分析物特异性分子和被分析物。针对水溶液中微摩尔至纳摩尔浓度的生物素测试了亲和素固定化的导电共聚物在电纺垫上的敏感性。与扁平基板相比,在这种情况下应用电纺纤维毡可将传感器响应提高6倍,并且还大大缩短了响应时间。除实验研究外,当前的工作还包括对生物素-亲和素相互作用随时间变化的响应动力学进行建模。最重要的是,这种制造技术为检测其他生物分子(例如食物病原体)提供了一种极其灵敏且可现场部署的方法。

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  • 来源
    《Advanced Functional Materials》 |2011年第22期|p.4328-4337|共10页
  • 作者单位

    Department of Chemical Engineering Massachusetts Institute of Technology Cambridge, MA 02139, USA;

    Molecular Sciences and Engineering Team US Army Natick Soldier Research Development and Engineering Command, Natick, MA 01760, USA;

    Food Safety Defense Team, US Army Natick Soldier Research Development and Engineering Command, Natick, MA 01760, USA;

    Food Safety Defense Team, US Army Natick Soldier Research Development and Engineering Command, Natick, MA 01760, USA;

    Department of Chemical Engineering Massachusetts Institute of Technology Cambridge, MA 02139, USA;

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