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Antibody Immobilization in Zinc Oxide Thin Films as an Easy-Handle Strategy for Escherichia coli Detection

机译:氧化锌薄膜中的抗体固定为大肠杆菌检测的易于处理策略

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The antibody immobilization compatible with low-cost materials and label-free strategies is a challenge for biosensor device fabrication. In this study, ZnO thin film deposition was carried out on corning glass substrates by ultrasonic spray pyrolysis at 200 °C. The thin films were analyzed as platforms for enteropathogenic Escherichia coli (E. coli EPEC) antibody immobilization. The modification of thin films from the functionalization and antibody immobilization steps was visualized using Fourier transform infrared spectroscopy (FTIR) spectroscopy, and surface changes were observed by atomic force microscopy. The obtained FTIR spectra after functionalization showed a contribution of the amino group (NH_(2)) derived from silane (3-aminopropyltrimethoxysilane). The antibody immobilization showed an amide I conserved signal corresponding to the C═O stretching vibrations and the amide II signal related to the N–H scissor vibration mode. In this way, the signals observed are correlated with the presence of antibody immobilized on the film. The ZnO film morphology changes after every stage of the process and allows observing the antibody distribution on the immobilized surface. In order to validate the antibody recognition capability as well as the E. coli EPEC detection in situ , polymerase chain reaction was used.
机译:与低成本材料和无标签策略相容的抗体固定是对生物传感器器件制造的挑战。在该研究中,通过200℃的超声波喷雾热解在康宁玻璃基板上进行ZnO薄膜沉积。分析薄膜作为肠致死的平台大肠杆菌(Coli EPEC)抗体固定化的平台。使用傅里叶变换红外光谱(FTIR)光谱观察来自官能化和抗体固定步骤的薄膜的修饰,并通过原子力显微镜观察表面变化。官能化后获得的FTIR光谱显示出衍生自硅烷(3-氨基丙基三甲氧基硅烷)的氨基(NH_(2))的贡献。抗体固定化显示了对应于与N-H剪振动模式相关的C═O拉伸振动和酰胺II信号的酰胺I保守信号。以这种方式,观察到的信号与固定在薄膜上的抗体的存在相关。 ZnO薄膜形态在过程的每个阶段发生变化,并允许观察固定表面上的抗体分布。为了验证抗体识别能力以及 e。 Coli EPEC检测原位,使用聚合酶链式反应。

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