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Detection of Echinococcus granulosus antigen by a quantum dot/porous silicon optical biosensor

机译:量子点/多孔硅光学生物传感器检测细粒棘球antigen抗原

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摘要

Highly sensitive labeled detection of Echinococcus granulosus using colloidal quantum dots (QDs) based on a porous silicon Bragg mirror sensor are demonstrated. Rabbit anti-p38 labeled CdSe/ZnS QDs was infiltrated in porous silicon pores immobilized Egp38 antigen. QD-antibodies are specifically bound to antigens linked covalently to the pore walls of PSi after the immune reaction. By the design of the transfer matrix method and the preparation of the electrochemical etching method, the fluorescence peak wavelength of the quantum dots is located in the forbidden band of the Bragg mirror. The fluorescence of QDs are enhanced by PSi Bragg mirror. Egp38 antigen detection limit of 300fg/mL is achievable. Our results exhibit that the biosensor combining PSi Bragg mirror and QDs can potentially be applied to the clinical detection of hydatid disease.
机译:证明了使用基于多孔硅布拉格镜传感器的胶体量子点(QD)进行的高灵敏度标记细粒棘球detection虫检测。兔抗p38标记的CdSe / ZnS QDs渗透到固定化Egp38抗原的多孔硅孔中。免疫反应后,QD抗体特异性结合至与PSi孔壁共价连接的抗原。通过转移矩阵方法的设计和电化学刻蚀方法的准备,量子点的荧光峰波长位于布拉格镜的禁带内。 QDs的荧光通过PSi Bragg反射镜增强。 Egp38抗原的检出限为300fg / mL。我们的结果表明,结合了PSi Bragg镜和QD的生物传感器可以潜在地应用于眼虫病的临床检测。

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