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Highly Sensitive Diagnostic Assay for the Detection of Protein Biomarkers Using Microresonators and Multifunctional Nanoparticles

机译:使用微谐振器和多功能纳米颗粒检测蛋白质生物标志物的高灵敏度诊断分析

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摘要

We developed a novel gravimetric immunoassay for sensitive detection of multiple protein biomarkers using silicon microcantilever arrays and multifunctional hybrid nanoparticles. Magnetic—photocatalytic hybrid nanoparticles with a highly crystalline TiO_2 shell were synthesized using a solvothermal reaction without a calcination process. After functionalizing the hybrid nanoparticles and silicon cantilevers with antibodies, the nanoparticles were used to magnetically separate target biomarkers from human serum. Frequency changes of the microcantilevers due to the binding of the nanoparticles were measured using a dip-and-dry method. Frequency changes were further amplified using a photocatalytic silver reduction reaction. Several biomarkers, including interleukin-6, interferon-γ, and alpha-fetoprotein, were selectively detected using arrays of eight silicon microcantilevers. The detection limit of this assay was ~0.1 pg/mL, which is superior to the clinical threshold of the biomarkers.
机译:我们开发了一种新型的重量分析免疫测定法,用于使用硅微悬臂梁阵列和多功能杂化纳米粒子灵敏检测多种蛋白质生物标记。使用溶剂热反应无需煅烧过程即可合成具有高结晶度TiO_2壳的磁性-光催化杂化纳米颗粒。在用抗体功能化杂化纳米颗粒和硅悬臂梁之后,纳米颗粒用于从人血清中磁性分离靶标生物标志物。使用浸没-干燥法测量由于纳米颗粒的结合而引起的微悬臂梁的频率变化。使用光催化银还原反应可进一步放大频率变化。使用八个硅微悬臂梁阵列,选择性检测了几种生物标志物,包括白介素6,干扰素-γ和甲胎蛋白。该检测方法的检出限为〜0.1 pg / mL,优于生物标志物的临床阈值。

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