Fernandez Renny Edwin, Hareesh Vemulachedu, Bhattacharya Enakshi, Chadha Anju
Department of Electrical Engineering, Indian Institute of Technology Madras, Chennai 600036, India.
Biosens Bioelectron. 2009 Jan 1;24(5):1276-80. doi: 10.1016/j.bios.2008.07.054. Epub 2008 Aug 5.
Sensitive biosensors for detection of triglyceride concentration are important. In this paper we report on two types of silicon based triglyceride sensors: an electrolyte-insulator-semiconductor capacitor (EISCAP) which is a potentiometric device and a polysilicon microcantilever. The detection principle for both sensors is based on the enzymatic hydrolysis of triglyceride though the sensing mechanisms are different: electronic for the EISCAP and mechanical for the microcantilever. The characteristics and performances of the two sensors are critically compared. The EISCAP sensor necessitates the presence of a buffer for stable measurements which limits the sensitivity of the sensor at low concentrations of the bioanalyte to 1mM. The cantilever sensor works without a buffer which improves the lower level of sensitivity to 10 microm. Both sensors are found to give reproducible and reliable results.
用于检测甘油三酯浓度的灵敏生物传感器很重要。在本文中,我们报告了两种基于硅的甘油三酯传感器:一种是电解质-绝缘体-半导体电容器(EISCAP),它是一种电位式器件;另一种是多晶硅微悬臂梁。两种传感器的检测原理均基于甘油三酯的酶促水解,不过传感机制不同:EISCAP为电子传感,微悬臂梁为机械传感。对这两种传感器的特性和性能进行了严格比较。EISCAP传感器需要存在缓冲液才能进行稳定测量,这将低浓度生物分析物时传感器的灵敏度限制在1mM。悬臂梁传感器无需缓冲液即可工作,从而将最低灵敏度提高到10微摩尔。发现两种传感器都能给出可重复且可靠的结果。