Luz Rita de Cássia Silva, Moreira Adriano Benedito, Damos Flavio Santos, Tanaka Auro Atsushi, Kubota Lauro Tatsuo
Institute of Chemistry, UNICAMP, P.O. Box 6154, 13084-971 Campinas, SP, Brazil.
J Pharm Biomed Anal. 2006 Sep 18;42(2):184-91. doi: 10.1016/j.jpba.2006.03.036. Epub 2006 May 24.
The present work describes the development of a simple and efficient method for the amperometric determination of cysteine (CySH) in wild medium at an applied potential of 0.150 V versus Ag/AgCl. In this sense, the electrocatalytic oxidation of cysteine (CySH) was carried out on a glassy carbon electrode modified with cobalt tetrasulphonated phthalocyanine (CoTSPc) and poly-L-lysine (PLL) film. The immobilization of CoTSPc in PLL film was performed by a simple evaporation of the solvent. The CoTSPc/PLL film, formed on the GC electrode showed an electrocatalytic activity to the CySH oxidation. The sensor presented its best performance in 0.1 mol l(-1) Pipes at pH 7.5. Under optimized operational conditions, the sensor provided a wide linear response range for CySH from 0.50 up to 216.0 micromol l(-1) with a sensitivity and detection limit of 157 nA cm(-2) l micromol(-1) and 150 nmol l(-1), respectively. The proposed sensor presented higher sensitivity when compared to the other modified electrodes described in the literature and showed a stable response for at least 200 successive determinations. The repeatability of the measurements with the same sensor and different sensors, evaluated in term of relative standard deviation, were 4.1 and 5.2%, respectively, for n=10. The developed sensor was applied for the CySH determination in food supplement samples and the results were statistically the same to those obtained by a comparative method described in the literature at a confidence level of 95%.
本工作描述了一种简单高效的方法,用于在相对于Ag/AgCl为0.150 V的外加电位下,对野生培养基中的半胱氨酸(CySH)进行安培测定。从这个意义上说,半胱氨酸(CySH)的电催化氧化是在修饰有四磺酸钴酞菁(CoTSPc)和聚-L-赖氨酸(PLL)膜的玻碳电极上进行的。通过简单的溶剂蒸发将CoTSPc固定在PLL膜中。在玻碳电极上形成的CoTSPc/PLL膜对CySH氧化表现出电催化活性。该传感器在pH 7.5的0.1 mol l(-1) Pipes中表现出最佳性能。在优化的操作条件下,该传感器对CySH提供了0.50至216.0 μmol l(-1)的宽线性响应范围,灵敏度和检测限分别为157 nA cm(-2) l μmol(-1)和150 nmol l(-1)。与文献中描述的其他修饰电极相比,所提出的传感器具有更高的灵敏度,并且在至少200次连续测定中显示出稳定的响应。对于n = 10,用相同传感器和不同传感器进行测量的重复性,以相对标准偏差衡量,分别为4.1%和5.2%。所开发的传感器用于食品补充剂样品中CySH的测定,结果在95%的置信水平下与文献中描述的比较方法获得的结果在统计学上相同。