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Development of nanocomposite and hydrogel biosensors based on thin film technology.

机译:基于薄膜技术的纳米复合材料和水凝胶生物传感器的开发。

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Two approaches leading to the development of amperometric biosensors were undertaken. Electrostatic assembly was utilized to create nanocomposite films consisting of positively charged organomettalic redox polymers and negatively charged oxidoreductase enzymes. Assembly on gold surfaces was verified by surface plasmon resonance (SPR) spectroscopy, grazing angle FTIR and ellipsometry. Immobilization of these composite films on gold microelectrode arrays resulted in formation of redundant sensors for glucose, lactate and pyruvate detection. Substrate calibration curves were generated by means of cyclic voltammetry and time-based amperometry.; Photolithographic patterning of poly(ethylene glycol) was employed to fabricated cross-linked hydrogel microstructures on planar substrates. Ability to create high quality polymer patterns of various molecular weights and geometrical configurations was demonstrated. Chlorosilane coupling chemistry was introduced to insure covalent bonding of cross-linked polymer to the substrate. In addition, hydrogel microstructures were also patterned on gold and polymeric materials. Potential usefulness of this patterning approach in amperometric sensing was ascertained by selective deposition of hydrogel elements onto gold electrodes. Furthermore, in vitro biocompatibility of the hydroget films was demonstrated.
机译:采取了两种方法来发展电流型生物传感器。利用静电组装产生由带正电的有机金属氧化还原聚合物和带负电的氧化还原酶组成的纳米复合薄膜。通过表面等离振子共振(SPR)光谱,掠射角FTIR和椭偏仪验证了在金表面上的组装。将这些复合膜固定在金微电极阵列上导致形成用于葡萄糖,乳酸和丙酮酸检测的冗余传感器。通过循环伏安法和基于时间的电流分析法生成基质校准曲线。聚乙二醇的光刻图案用于在平面基板上制造交联的水凝胶微结构。证明了创建各种分子量和几何构型的高质量聚合物图案的能力。引入氯硅烷偶联化学以确保交联聚合物与基材的共价键合。另外,在金和聚合物材料上也对水凝胶微结构进行了构图。通过将水凝胶元素选择性沉积到金电极上,可以确定这种构图方法在安培感测中的潜在用途。此外,证明了水积膜的体外生物相容性。

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