Bustos E, García J E, Bandala Y, Godínez Luis A, Juaristi E
Chemistry Department, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, P.O. Box 14-740, C.P. 07000 México, D.F., Mexico.
Talanta. 2009 Jun 15;78(4-5):1352-8. doi: 10.1016/j.talanta.2009.02.010. Epub 2009 Feb 20.
Enantiomeric alanine was covalently grafted onto modified gold electrodes with mercaptopropionic acid and PAMAM dendrimers G4.0 with amine terminal groups. Cyclic voltammetric experiments in the presence of monocarboxylic ferrocene as a probe molecule proved that the alanine (Ala) was immobilized as a monolayer on the gold electrodes. Electron transfer to Ru(NH3)6Cl3 in solutions of different pH was studied by cyclic voltammetry (CV). Changes in solution pH resulted in the variation of the charge state of the terminal group and surface pKa values were estimated on the basis of these results. Because of electrostatic interactions between the positive charged groups on the electrode surface and the Ala, enantioselective recognition was possible. The interaction between enantiomers can be proven with molecular simulation. The electro-oxidation peak current was linearly dependent on Ala concentration over the range 0-10 microM with slopes between 143 and 187 microAcm(-2)/microM. The detection limit (3sigma) was 0.4059 microM for PAMAM G4.0-D(+)Ala-L(-)Ala and 0.4172 microM for PAMAM G4.0-L(-)Ala-D(+)Ala.
将对映体丙氨酸通过巯基丙酸和带有胺端基的聚酰胺-胺(PAMAM)树形分子G4.0共价接枝到修饰的金电极上。以单羧基二茂铁作为探针分子进行的循环伏安实验证明,丙氨酸(Ala)以单层形式固定在金电极上。通过循环伏安法(CV)研究了在不同pH值溶液中向六氯合钌(III)酸铵的电子转移。溶液pH值的变化导致端基电荷状态的改变,并基于这些结果估算了表面pKa值。由于电极表面带正电的基团与丙氨酸之间的静电相互作用,实现了对映体选择性识别。对映体之间的相互作用可以通过分子模拟得到证实。在0 - 10 microM范围内,电氧化峰电流与丙氨酸浓度呈线性关系,斜率在143至187 microAcm(-2)/microM之间。对于PAMAM G4.0 - D(+)Ala - L(-)Ala,检测限(3σ)为0.4059 microM,对于PAMAM G4.0 - L(-)Ala - D(+)Ala,检测限为0.4172 microM。