Detection of Endotoxin Concentration Using Piezoelectric Based Biosensor System

Xing-Liang Xiong, S. Wang, Yan Zhang, Longcong Chen
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引用次数: 5

Abstract

Endotoxins are ubiquitous in the environment and represent important pathogenic molecules. In this paper, we present a sensitive and reliable method for quantitation and detection of endotoxin based on piezoelectric biosensors, which monitor the gel formation (causing viscosity change) when Limulus Amoebocyte Lysate (LAL) mixed with endotoxin. The resonance frequency shifts of the sensors in contact with different concentration endotoxin were recorded as a function of time. Results showed that there has good relationship between the logarithmic concentration of endotoxin and the maximum clotting rate as well as the corresponding clotting time. The detection limits could be gone down to 0.1pg/ml and the time-consuming is about 1 hour using this system. By comparison of the traditional methods (rabbit pyrogen test and LAL test) for detection of endotoxin, the proposed sensor is much simpler, more precise and lower detection limits.
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利用压电生物传感器系统检测内毒素浓度
内毒素在环境中普遍存在,是重要的致病分子。在本文中,我们提出了一种基于压电生物传感器的内毒素定量检测方法,该方法监测鲎试剂(LAL)与内毒素混合时的凝胶形成(引起粘度变化)。记录了传感器与不同浓度内毒素接触时共振频率随时间的变化。结果表明,内毒素的对数浓度与最大凝血率及相应的凝血时间有良好的关系。该系统的检出限可降至0.1pg/ml,耗时约1小时。通过与传统内毒素检测方法(兔热原法和LAL法)的比较,该传感器更简单、更精确、检出限更低。
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