首页> 外文会议>Conference on Biomedical Thermoacoustics, Optoacoustics, and Acousto-optics; 20080120-23; San Jose,CA(US) >OPTOACOUSTIC SENSING OF OCULAR BACTERIAL ANTIGEN USING TARGETED GOLD NANORODS
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OPTOACOUSTIC SENSING OF OCULAR BACTERIAL ANTIGEN USING TARGETED GOLD NANORODS

机译:有针对性的金纳米粒子对眼细菌抗原的光声传感

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Bacterial contamination can be detected using a minimally invasive optical method, based on laser-induced optoacoustic spectroscopy, to probe for specific antigens associated with a specific infectious agent. As a model system, we have used a surface antigen (Ag), isolated from Chlamydia trachomatis, and a complementary antibody (Ab). A preparation of 0.2 mg/ml of monoclonal Ab specific to the C. trachomatis surface Ag was conjugated to gold nanorods using standard commercial reagents, in order to produce a targeted contrast agent with a strong optoacoustic signal. The C. trachomatis Ag was absorbed in standard plastic microwells, and the binding of the complementary Ab-nanorod conjugate was tested in an immunoaffinity assay. Optoacoustic signals were elicited from the bound nanorods, using an optical parametric oscillator (OPO) laser system as the optical pump. The wavelength tuneability of the OPO optimized the spectroscopic measurement by exciting the nanorods at their optical absorption maxima. Optoacoustic responses were measured in the microwells using a probe beam deflection technique. Immunoaffinity assays were performed on several dilutions of purified C. trachomatis antigen ranging from 50 μg/ml to 1 pg/ml, in order to determine the detection limit for the optoacoustic-based assay. Only when the antigen was present, and the complementary Ab-NR reagent was introduced into the microwell, was an enhanced optoacoustic signal obtained, which indicated specific binding of the Ab-NR complex. The limit of detection with the current system design is between 1 and 5 pg/ml of bacterial Ag.
机译:可以使用基于激光诱导的光声光谱的微创光学方法检测细菌污染,以探测与特定感染因子相关的特定抗原。作为模型系统,我们使用了从沙眼衣原体分离的表面抗原(Ag)和互补抗体(Ab)。使用标准的市售试剂,将对沙眼衣原体表面Ag特异的0.2 mg / ml单克隆Ab制剂与金纳米棒偶联,以产生具有强光声信号的靶向造影剂。沙眼衣原体Ag被吸收在标准塑料微孔中,并在免疫亲和力测定中测试了互补的Ab-nanorod缀合物的结合。使用光学参量振荡器(OPO)激光系统作为光泵浦,从结合的纳米棒中发出光声信号。 OPO的波长可调谐性通过激发纳米棒的光吸收最大值来优化光谱测量。使用探针束偏转技术在微孔中测量光声响应。对纯化的沙眼衣原体抗原的数种稀释度(范围从50μg/ ml至1 pg / ml)进行免疫亲和力测定,以确定基于光声的测定的检测限。仅当存在抗原并将互补的Ab-NR试剂引入微孔时,才能获得增强的光声信号,这表明Ab-NR复合物具有特异性结合。当前系统设计的检测极限是1至5 pg / ml的细菌Ag。

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