Carralero Verónica, González-Cortés Araceli, Yáñez-Sedeño Paloma, Pingarrón José M
Department of Analytical Chemistry, Faculty of Chemistry, University Complutense of Madrid, 28040 Madrid, Spain.
Anal Chim Acta. 2007 Jul 16;596(1):86-91. doi: 10.1016/j.aca.2007.05.046. Epub 2007 Jun 3.
A novel progesterone immunosensor using a colloidal gold-graphite-Teflon-tyrosinase composite biosensor as amperometric transducer is reported. A sequential competitive configuration between the analyte and progesterone labelled with alkaline phosphatase (AP) was used. Phenyl phosphate was employed as the AP-substrate and the enzyme reaction product, phenol, was oxidized by tyrosinase to o-quinone, which is subsequently reduced at -0.1 V at the biocomposite electrode. Variables such as the concentration of phenyl phosphate, the amount of antibody attached to the electrode surface, immersion time in a 2% BSA solution, working pH and incubation times in progesterone and AP conjugate were optimized. A linear calibration graph for progesterone was obtained between 0 and 40 ng mL(-1) with a slope value of -82.3 nA ng(-1) mL, and a detection limit of 0.43 ng mL(-1). The time needed to reach the steady-state current from the addition of phenyl phosphate was 30-40 s. These analytical characteristics improve substantially those reported for other progesterone immunosensors. A lifetime of 14 days with no need to apply any regeneration procedure was also achieved. The usefulness of the immunosensor was evaluated by determining progesterone in milk samples spiked with the analyte at 5.0 and 1.5 ng mL(-1) concentration levels. Following a very simple procedure, involving only sample dilution, mean recoveries (n=7) of 98+/-3% and 99+/-3%, respectively, were obtained.
报道了一种新型孕酮免疫传感器,该传感器使用胶体金-石墨-聚四氟乙烯-酪氨酸酶复合生物传感器作为安培换能器。采用分析物与碱性磷酸酶(AP)标记的孕酮之间的顺序竞争配置。使用苯基磷酸作为AP底物,酶反应产物苯酚被酪氨酸酶氧化为邻苯醌,随后在生物复合电极上于-0.1 V处被还原。优化了诸如苯基磷酸浓度、附着在电极表面的抗体量、在2%牛血清白蛋白溶液中的浸泡时间、工作pH值以及在孕酮和AP缀合物中的孵育时间等变量。获得了孕酮在0至40 ng mL⁻¹之间的线性校准曲线,斜率值为-82.3 nA ng⁻¹ mL,检测限为0.43 ng mL⁻¹。从添加苯基磷酸到达到稳态电流所需的时间为30 - 40秒。这些分析特性显著优于其他孕酮免疫传感器所报道的特性。还实现了14天的使用寿命,无需应用任何再生程序。通过测定添加了浓度为5.0和1.5 ng mL⁻¹分析物的牛奶样品中的孕酮来评估免疫传感器的实用性。遵循非常简单的程序,仅涉及样品稀释,分别获得了平均回收率(n = 7)为98±3%和99±3%。