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商业生物传感器在临床、食品、环境以及生物威胁/生物战分析中的应用。

Applications of commercial biosensors in clinical, food, environmental, and biothreat/biowarfare analyses.

作者信息

Bahadır Elif Burcu, Sezgintürk Mustafa Kemal

机构信息

Scientific and Technological Research Center, Namık Kemal University, 59030 Merkez, Tekirdağ, Turkey.

Biochemistry Division, Chemistry Department, Faculty of Science, Namık Kemal University, 59030 Merkez, Tekirdağ, Turkey.

出版信息

Anal Biochem. 2015 Jun 1;478:107-20. doi: 10.1016/j.ab.2015.03.011. Epub 2015 Mar 16.

Abstract

The lack of specific, low-cost, rapid, sensitive, and easy detection of biomolecules has resulted in the development of biosensor technology. Innovations in biosensor technology have enabled many biosensors to be commercialized and have enabled biomolecules to be detected onsite. Moreover, the emerging technologies of lab-on-a-chip microdevices and nanosensors offer opportunities for the development of new biosensors with much better performance. Biosensors were first introduced into the laboratory by Clark and Lyons. They developed the first glucose biosensor for laboratory conditions. Then in 1973, a glucose biosensor was commercialized by Yellow Springs Instruments. The commercial biosensors have small size and simple construction and they are ideal for point-of-care biosensing. In addition to glucose, a wide variety of metabolites such as lactate, cholesterol, and creatinine can be detected by using commercial biosensors. Like the glucose biosensors (tests) other commercial tests such as for pregnancy (hCG), Escherichia coli O157, influenza A and B viruses, Helicobacter pylori, human immunodeficiency virus, tuberculosis, and malaria have achieved success. Apart from their use in clinical analysis, commercial tests are also used in environmental (such as biochemical oxygen demand, nitrate, pesticide), food (such as glutamate, glutamine, sucrose, lactose, alcohol, ascorbic acid), and biothreat/biowarfare (Bacillus anthracis, Salmonella, Botulinum toxin) analysis. In this review, commercial biosensors in clinical, environmental, food, and biowarfare analysis are summarized and the commercial biosensors are compared in terms of their important characteristics. This is the first review in which all the commercially available tests are compiled together.

摘要

生物分子缺乏特异性、低成本、快速、灵敏且简便的检测方法,促使了生物传感器技术的发展。生物传感器技术的创新使得许多生物传感器得以商业化,并能够现场检测生物分子。此外,芯片实验室微器件和纳米传感器等新兴技术为开发性能更优的新型生物传感器提供了机遇。生物传感器最早由克拉克和莱昂斯引入实验室。他们开发了首款用于实验室条件的葡萄糖生物传感器。1973年,一款葡萄糖生物传感器由黄泉仪器公司实现商业化。商业化的生物传感器体积小、结构简单,非常适合即时检测生物传感。除了葡萄糖,使用商业化生物传感器还能检测多种代谢物,如乳酸、胆固醇和肌酐。与葡萄糖生物传感器(检测)一样,其他商业化检测,如用于妊娠(人绒毛膜促性腺激素)、大肠杆菌O157、甲型和乙型流感病毒、幽门螺杆菌、人类免疫缺陷病毒、结核病和疟疾的检测都取得了成功。除了用于临床分析,商业化检测还用于环境(如生化需氧量、硝酸盐、农药)、食品(如谷氨酸、谷氨酰胺、蔗糖、乳糖、酒精、抗坏血酸)以及生物威胁/生物战(炭疽芽孢杆菌、沙门氏菌、肉毒杆菌毒素)分析。在这篇综述中,总结了临床、环境、食品和生物战分析中的商业化生物传感器,并比较了这些商业化生物传感器的重要特性。这是首次将所有市售检测方法汇总在一起的综述。

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