Kuswandi Bambang
Department of Chemistry, Faculty of Mathematics and Natural Sciences, University of Jember, 68121 Jember, Indonesia.
Anal Bioanal Chem. 2003 Aug;376(7):1104-10. doi: 10.1007/s00216-003-2001-3. Epub 2003 Jul 8.
A simple optical fibre biosensor based on immobilised enzyme for monitoring of trace heavy metal ions has been developed. The biosensor recognition system was designed based on the inhibition of urease activity, where the urease is immobilised on ultrabind membrane. The studies of inhibition by the heavy metal ions Hg(II), Ag(I), Cu(II), Ni(II), Zn(II), Co(II) and Pb(II) were performed using a fibre-optic biosensor configuration, where the pH change resulting from the bio-catalytic hydrolysis of urea was monitored at the wavelength 615 nm spectroscopically, using commercial pH indicator strip before and after the exposure to the heavy metal ions. The immobilised urease was regenerated by l-cysteine. The linear response range between 1 x 10(-9)-1 x 10(-5) M and the limit of detection 1 x 10(-9 )M (0.2 microg/L) for Hg(II) ions was achieved by employing the flow method. The optimisation of experimental parameters, including flow method, is also discussed.
一种基于固定化酶用于监测痕量重金属离子的简单光纤生物传感器已被研制出来。该生物传感器识别系统是基于脲酶活性的抑制设计的,其中脲酶被固定在超结合膜上。使用光纤生物传感器配置对重金属离子Hg(II)、Ag(I)、Cu(II)、Ni(II)、Zn(II)、Co(II)和Pb(II)的抑制作用进行了研究,在暴露于重金属离子前后,使用商业pH试纸在615 nm波长下通过光谱法监测尿素生物催化水解产生的pH变化。固定化脲酶用l-半胱氨酸再生。采用流动法实现了Hg(II)离子在1×10(-9)-1×10(-5) M之间的线性响应范围和1×10(-9) M(0.2 μg/L)的检测限。还讨论了包括流动法在内的实验参数的优化。