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介绍一种基于生物传感器的技术,用于实时生物特异性相互作用分析。

Introducing a biosensor based technology for real-time biospecific interaction analysis.

作者信息

Jönsson U, Fägerstam L, Löfas S, Stenberg E, Karlsson R, Frostell A, Markey F, Schindler F

机构信息

Pharmacia Biosensor AB, Uppsala, Sweden.

出版信息

Ann Biol Clin (Paris). 1993;51(1):19-26.

PMID:8338253
Abstract

This report describes a system for real-time biospecific interaction analysis, using biosensor technology based on the optical phenomenon surface plasmon resonance. The biospecific interface is a sensor chip consisting of a thin gold film deposited on a glass support and covered with a hydrogel matrix. One component of the interaction being studied is attached covalently to the hydrogel, and other interactants are passed over the chip in solution. The interaction is followed in real time in terms of changes in the mass concentration of biomolecules at the sensor surface. Surface concentrations down to 10 pg/mm2 can be measured. The technique does not require molecular labels such as isotopes or spectroscopic markers, and purification of interacting components can often be avoided. Repeated analyses can be performed on the same sensor chip. With this system, the same general procedure can be used for a wide range of different applications, including concentration determination, kinetic measurements and multi-site binding studies. The sensitivity of the technique can be adjusted by choice of reagents and experimental procedure: determination of specific proteins in serum down to 20 ng/ml and macromolecular association constants from 10(7) M-1 up to 4 x 10(11) M-1 are documentated examples. No other single analytical system has the same versatility and general applicability to biospecific interaction analysis. The system is developed and marketed by Pharmacia Biosensor AB, Sweden.

摘要

本报告描述了一种用于实时生物特异性相互作用分析的系统,该系统采用基于光学现象表面等离子体共振的生物传感器技术。生物特异性界面是一种传感器芯片,由沉积在玻璃载体上的薄金膜组成,并覆盖有水凝胶基质。正在研究的相互作用的一个组分共价连接到水凝胶上,其他相互作用物在溶液中通过芯片。根据传感器表面生物分子质量浓度的变化实时跟踪相互作用。可以测量低至10 pg/mm2的表面浓度。该技术不需要同位素或光谱标记等分子标签,并且通常可以避免相互作用组分的纯化。可以在同一传感器芯片上进行重复分析。使用该系统,相同的一般程序可用于广泛的不同应用,包括浓度测定、动力学测量和多位点结合研究。该技术的灵敏度可以通过选择试剂和实验程序来调节:血清中特定蛋白质低至20 ng/ml的测定以及10(7) M-1至4 x 10(11) M-1的大分子缔合常数的测定都是已记录的示例。没有其他单一分析系统对生物特异性相互作用分析具有相同的多功能性和普遍适用性。该系统由瑞典的Pharmacia Biosensor AB公司开发和销售。

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