Dock Eva, Christensen Jakob, Olsson Mattias, Tønning Erik, Ruzgas Tautgirdas, Emnéus Jenny
Department of Analytical Chemistry, Lund University, P.O. Box 124, SE-22100 Lund, Sweden.
Talanta. 2005 Jan 30;65(2):298-305. doi: 10.1016/j.talanta.2004.07.002.
In this paper, it is demonstrated that a single-receptor biosensor can be used to quantitatively determine each analyte in binary mixtures using multivariate data analysis tools based on the dynamic responses received from flow injection peaks. Mixtures with different concentrations of two phenolic compounds, catechol and 4-chlorophenol, were measured with a graphite electrode modified with tyrosinase enzyme at an applied potential of -50mV versus Ag/AgCl. A correction algorithm based on measurements of references in-between samples was applied to compensate for biosensor ageing as well as differences caused by deviations between biosensor preparations. After correction, the relative prediction errors with partial least squares regression (PLS-R) for catechol and 4-chlorophenol were 7.4 and 5.5%, respectively, using an analysis sequence measured on one biosensor. Additional validation mixtures of the two phenols were measured with a new biosensor, prepared with the same procedure but with a different batch of tyrosinase enzyme. Using the mixture responses for the first sensor as a calibration set in PLS-R, the relative prediction errors of the validation mixtures, after applying correction procedures, were 7.0% for catechol and 16.0% for 4-chlorophenol. These preliminary results indicate that by applying correction algorithms it could be possible to use less stable biosensors in continuous on-line measurements together with multivariate data analysis without time-consuming calibration procedures.
本文证明,基于流动注射峰的动态响应,利用多元数据分析工具,单受体生物传感器可用于定量测定二元混合物中的每种分析物。在相对于Ag/AgCl为-50mV的外加电位下,用酪氨酸酶修饰的石墨电极测量了含有不同浓度两种酚类化合物(邻苯二酚和4-氯苯酚)的混合物。应用基于样品间参比测量的校正算法,以补偿生物传感器老化以及生物传感器制备偏差引起的差异。校正后,使用在一个生物传感器上测量的分析序列,邻苯二酚和4-氯苯酚的偏最小二乘回归(PLS-R)相对预测误差分别为7.4%和5.5%。用相同程序但不同批次酪氨酸酶制备的新生物传感器测量了两种酚的额外验证混合物。在PLS-R中,将第一个传感器的混合物响应用作校准集,应用校正程序后,验证混合物中邻苯二酚的相对预测误差为7.0%,4-氯苯酚为16.0%。这些初步结果表明,通过应用校正算法,有可能在连续在线测量中使用稳定性较差的生物传感器,并结合多元数据分析,而无需耗时的校准程序。