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Label-Free Detection of Leptin Antibody-Antigen Interaction by Using LSPR-Based Optical Biosensor

机译:基于LSPR的光学生物传感器的无标签检测瘦素抗体-抗原相互作用。

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In the recent research, the development of optical biosensing devices has been focused on finding new method and technologies to exploit the optical properties of noble metal nanostructure, especially localized surface plasmon resonance (LSPR). In this study, we fabricated a LSPR-based label-free optical biosensor with the multi-spot gold-capped nanoparticle array (MG-NPA) biochip based on the deposition of a thin gold (Au) film on the silica nanoparticles layer with the simple process. The MG-NPA biochip used the silica nanoparticles as the core and a thin Au film as a shell on the surface. This structure can excite the LSPR signal easily with the high reproducibility. The anti-leptin antibody was immobilized on the surface of MG-NPA biochip, which could recognize only leptin antigen. The leptin antibody-antigen interaction was performed by the introduction of different concentration (1 pg/mL~100 μg/mL) of leptin antigen solutions for 1 h. The detection limit was found to be 100 pg/mL by using the anti-leptin antibody immobilized MG-NPA biochip. This LSPR-based label-free optical biosensor employing the MG-NPA biochip brings several advantages such as low cost, easy to fabricate, using a simple optical system and can be applied in a wide immunoassay with the similar antibody-antigen model.
机译:在最近的研究中,光学生物传感装置的开发一直集中在寻找利用贵金属纳米结构的光学性质,特别是局部表面等离子体激元共振(LSPR)的新方法和技术上。在这项研究中,我们基于在二氧化硅纳米颗粒层上沉积了金(Au)薄膜的情况,利用多点金封顶纳米颗粒阵列(MG-NPA)生物芯片制造了基于LSPR的无标记光学生物传感器。简单的过程。 MG-NPA生物芯片使用二氧化硅纳米颗粒作为核心,并在表面形成一层Au薄膜。这种结构可以容易地以高再现性激发LSPR信号。抗瘦素抗体被固定在只能识别瘦素抗原的MG-NPA生物芯片表面。通过引入不同浓度(1 pg / mL〜100μg/ mL)的瘦素抗原溶液1 h进行瘦素抗体-抗原相互作用。通过使用抗瘦素抗体固定的MG-NPA生物芯片,发现检测限为100 pg / mL。这种采用MG-NPA生物芯片的基于LSPR的无标记光学生物传感器具有多个优点,例如成本低,易于制造,使用简单的光学系统,并且可以在具有相似抗体-抗原模型的广泛免疫测定中应用。

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