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首页> 外文期刊>Biomedical Microdevices >Design considerations in the use of interdigitated microsensor electrode arrays (IMEs) for impedimetric characterization of biomimetic hydrogels
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Design considerations in the use of interdigitated microsensor electrode arrays (IMEs) for impedimetric characterization of biomimetic hydrogels

机译:在使用叉指式微传感器电极阵列(IME)进行仿生水凝胶的阻抗表征时的设计注意事项

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摘要

Microlithographically fabricated interdigitated microsensor electrodes (IMEs) were cleaned, surface activated, chemically functionalized (amine) and derivatized with an Acrloyl-PEG-NHS to receive a spun-applied monomer cocktail of UV polymerizable monomer. IMEs were 2050.5, 1550.5, 1050.5 and 0550.5 possessing lines and spaces that were 20,15,10, and 5 μm respectively; 5 mm line lengths and were 50 lines on each opposing bus. Bioactive hydrogels were synthesized from spun-applied and UV-crosslinked tetraethyleneglycol diacrylate (TEGDA) (crosslinker), 2-hydroxyethylmethacrylate (HEMA), polyethyleneglycol (200) monomethacrylate (PEGMA), N-[tris(hydroxymethyl) methyl]-acrylamide (HMMA) and poly(HEMA) (MW 60,000) (viscosity modifier) and 2,2-dimethoxy-2-phenyl-acetophenone (DMPA) (photoinitiator) to produce a 5 μm thick p(HEMA-co-PEGMA-co-HMMA) hydrogel membrane on the IMEs. Unmodified and hydrogel coated IMEs where characterized by AC electrical impedance spectroscopy using 50 mV p-t-p over the frequency range from 10 Hz to 100 kHz in aqueous PBS 7.4 buffer and in buffer containing 50 mM [Fe(CN)_6]~(3-/4-) solution at RT. Impedimetric responses were found to scale with the device geometric parameters. Equivalent circuit modeling revealed deviations from ideality at lower device dimensions suggesting an implication of the substrate surface charge on the double layer capacitance of the electrodes. Diffusion coefficients derived from the Warburg component are in accord with literature values.
机译:将微光刻制造的叉指型微传感器电极(IME)清洗,表面活化,化学官能化(胺)并用Acrloyl-PEG-NHS衍生化,以得到可旋涂的可紫外线聚合单体的单体混合物。 IME为2050.5、1550.5、1050.5和0550.5,分别具有20、15、10和5μm的线和间距;线路长度为5毫米,每条相对的总线上为50线路。生物活性水凝胶是由纺粘和紫外线交联的四甘醇二丙烯酸二乙酯(TEGDA)(交联剂),甲基丙烯酸2-羟乙酯(HEMA),聚乙二醇(200)单甲基丙烯酸酯(PEGMA),N- [三(羟甲基)甲基]丙烯酰胺(HMMA)合成的)和聚(HEMA)(分子量60,000)(粘度调节剂)和2,2-二甲氧基-2-苯基苯乙酮(DMPA)(光引发剂)产生5μm厚的p(HEMA-co-PEGMA-co-HMMA) IME上的水凝胶膜。未经修饰和水凝胶包覆的IME,其特征是在PBS 7.4水溶液和含50 mM [Fe(CN)_6]〜(3- / 4)的缓冲液中,在10 Hz至100 kHz的频率范围内使用50 mV ptp的交流电阻抗光谱法进行表征-)室温下的溶液。发现阻抗响应与设备几何参数成比例。等效电路模型揭示了在较小的器件尺寸下偏离理想状态的现象,这表明基板表面电荷会影响电极的双层电容。从Warburg分量得出的扩散系数与文献值一致。

著录项

  • 来源
    《Biomedical Microdevices》 |2011年第2期|p.279-289|共11页
  • 作者单位

    Biomanufacturing Research Institute and Technology Enterprises (BRITE) and Department of Pharmaceutical Sciences,North Carolina Central University,1801 Fayetteville Street,Durham, NC 27707, USA;

    ABTECH Scientific, Inc,800 East Leigh Street,Richmond, VA 29621, USA;

    ABTECH Scientific, Inc,800 East Leigh Street,Richmond, VA 29621, USA Center for Bioelectronics,Biosensors and Biochips (C3B),Clemson University,100 Technology Drive,Anderson, SC 29625, USA Departments of Chemical and Biomolecular Engineering,Bioengineering and Electrical and Computer Engineering, Clemson University,Clemson, SC 29634, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfabrication; ime; arrays; hydrogels; impedance; biosensors;

    机译:微细加工;我;数组;水凝胶阻抗;生物传感器;

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