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Porous Silicon Biosensors Using Quantum Dot Signal Amplifiers

机译:使用量子点信号放大器的多孔硅生物传感器

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We demonstrate the use of colloidal quantum dots (QDs) as refractive index signal amplifiers for the dual-mode, optical detection of biotin in streptavidin-functionalized porous silicon (PSi) biosensors. The nanoporous silicon host matrix was first analyzed to determine the relationship between different formation conditions, the resulting pore size distributions, and the efficiency with which different sized target molecules infiltrate and bind to the pore walls. Nonspecific detection of glutathione conjugated with QDs was then demonstrated using PSi films with different average pore diameters. The specific detection of small biotin molecules was confirmed when the QD-biotin conjugates resulted in a six-fold increase in the reflectance fringe shift and a distinctive fluorescence spectrum upon exposure to an optimized, streptavidin-functionalized PSi sensor. A biotin detection limit of 0.5 fg/mm~2 is achievable.
机译:我们演示了在链霉亲和素功能化的多孔硅(PSi)生物传感器中生物素的双模光学检测中,将胶体量子点(QD)用作折射率信号放大器。首先分析了纳米多孔硅基质,以确定不同形成条件,所得孔径分布以及不同尺寸目标分子渗透并结合至孔壁的效率之间的关系。然后使用具有不同平均孔径的PSi膜证明了与QDs共轭的谷胱甘肽的非特异性检测。当QD-生物素偶联物暴露于优化的链霉亲和素官能化的PSi传感器后,反射条纹漂移和独特的荧光光谱增加了6倍,从而证实了对小生物素分子的特异性检测。生物素的检出限为0.5 fg / mm〜2。

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