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Oxygen plasma-enhanced covalent biomolecule immobilization on SU-8 thin films: A stable and homogenous surface biofunctionalization strategy

机译:氧等离子体增强的共价生物分子固定在SU-8薄膜上:稳定和均匀的表面生物功能化策略

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摘要

SU-8 is an attractive platform for the development of smart biochips owing to its high aspect ratio of micro/ nanostructures fabrication and remarkable optical and biocompatible properties. However, few works have explored sub-micron SU-8 thin films for applications in new generations of portable bioanalytical devices. In this work we discuss surface properties for the efficient immobilization of different bioanalytical components on SU-8 thin film surfaces. Short exposure time oxygen plasma treatment improved hydrophilicity and activation of surface carboxyl groups of 300 nm-thick SU-8 films, while maintaining surface roughness below 2 nm. Under these optimized surfaces conditions, covalent immobilization of Interleukin-6 and Prostate Specific Antigen antibodies on SU-8 surfaces was evaluated using quantitative fluorescence microscopy. The addition of standard crosslinker, 1-ethyl-3-(3-(dimethylamino)-propyl)-carbodiimide and N-hydroxysuccinimide mixture to our protocol yielded 15?20% higher antibody immobilization due to activation of surface carboxyl groups. The stability of the plasma treatment along time, and the ideal surface passivation of functionalized samples are demonstrated, along with the selective immobilization antibody to photolithographically-patterned SU-8 microstructures. Overall, our optimized protocol could find broad applications of functionalized SU-8 thin films in biomedical fields, particularly for the fabrication of SU-8 based miniaturized photonic and plasmonic biosensors.
机译:SU-8是由于其微/纳米结构制造和显着的光学和生物相容性的高纵横比而开发智能生物芯片的有吸引力平台。然而,很少有效探索了亚微米SU-8薄膜,用于新一代的便携式生物分析设备中的应用。在这项工作中,我们讨论了SU-8薄膜表面上不同生物分析组分的高效固定的表面性质。短曝光时间氧等离子体处理改善了300nm厚的SU-8膜的表面羧基的亲水性和活化,同时保持表面粗糙度低于2nm。在这些优化的表面条件下,使用定量荧光显微镜评估了在SU-8表面上的白细胞介素-6和前列腺特异性抗原抗体的共价固定。添加标准交联剂,1-乙基-3-(3-(二甲基氨基) - 丙基) - 碳二酰亚胺和N-羟基琥珀酰亚胺混合物,产生15μl20%的抗体固定,由于表面羧基活化。沿着时间的稳定性处理和官能化样品的理想表面钝化以及选择性固定抗体以光刻图案化的SU-8微结构。总的来说,我们的优化方案可以在生物医学领域中找到官能化SU-8薄膜的广泛应用,特别是对于基于SU-8的小型光子和等离子体化体的制造。

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