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便携式光纤生物传感器的检测方法开发。

Assay development for a portable fiberoptic biosensor.

作者信息

Anderson G P, Breslin K A, Ligler F S

机构信息

Center for Bio/Molecular Science and Engineering, Naval Research Laboratory, Washington, DC 20375-5348, USA.

出版信息

ASAIO J. 1996 Nov-Dec;42(6):942-6. doi: 10.1097/00002480-199642060-00004.

Abstract

The fiberoptic biosensor with tapered optical probes has been developed to perform rapid and sensitive fluoroimmunoassays. A number of assays for biologic analytes were developed using a laboratory breadboard device that employed a large, 514 nm argon ion laser. These assays, with limits of detection of 5-50 ng/ml for protein antigens, showed promise for clinical use because of their demonstrated lack of matrix effects from plasma, seru, or blood. However, such a large device was impractical for on-site diagnostics, so a new, portable, multichannel biosensor was developed. To test this new biosensor, which uses 635 nm laser diodes, the assays were converted to use the cyanine dye, Cy5. The detection antibodies were labeled with Cy5 and assays performed to detect the F1 antigen of Yersinia pestis and the protective antigen of Bacillus anthracis. The limit of detection was found to improve by a factor of 10 for each assay. The portable biosensor was then evaluated in a blind test containing F1 antigen spiked into 30 of 173 serum samples. One hundred percent detection was achieved for samples with 100 ng/ml or more F1 antigen, with a specificity of 88%.

摘要

带有锥形光学探头的光纤生物传感器已被开发用于进行快速且灵敏的荧光免疫测定。使用一个采用大型514纳米氩离子激光器的实验室实验平台装置,开发了多种针对生物分析物的测定方法。这些测定方法对蛋白质抗原的检测限为5 - 50纳克/毫升,由于已证明其不受血浆、血清或血液的基质效应影响,显示出临床应用前景。然而,如此大型的装置对于现场诊断不实用,因此开发了一种新型的便携式多通道生物传感器。为了测试这种使用635纳米激光二极管的新型生物传感器,将测定方法转换为使用花菁染料Cy5。检测抗体用Cy5标记,并进行测定以检测鼠疫耶尔森菌的F1抗原和炭疽芽孢杆菌的保护性抗原。发现每种测定方法的检测限提高了10倍。然后在一项盲测中对便携式生物传感器进行评估,该盲测中在173份血清样本中的30份中加入了F1抗原。对于F1抗原浓度为100纳克/毫升或更高的样本,检测成功率达到100%,特异性为88%。

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