College of Life Sciences, Graduate University of Chinese Academy of Sciences, Beijing, China.
Electrophoresis. 2012 Nov;33(21):3245-53. doi: 10.1002/elps.201200309. Epub 2012 Oct 12.
Five aminoglycoside antibiotics (AGs), namely spectinomycin, streptomycin, amikacin, paromomycin, and neomycin, were analyzed by microchip electrophoresis with amperometric detection. Although the electrophoretic separation of AGs was carried out under acidic conditions, the amperometric detection was performed under alkaline conditions with an electrode fabricated by electrodeposition of an alloy of Cu-Sn-Cr. To achieve this, an alkaline solution was introduced into the end of the separation channel through two auxiliary channels, allowing the use of different conditions for each analytical operation. Along with the proposed pH adjustment, the use of electrodes modified with Cu-Sn-Cr enabled extending the lifetime of the electrodes. The alloy was co-electrodeposited on a 25-μm diameter platinum wire, which was then integrated in the microchip and used as working electrode. Furthermore, the effects of the pH and composition of buffer, separation potential, injection time, and detention potential were investigated in an effort to optimize both the separation and detection of AGs. Under the optimum conditions, linear relationships between the signal and the concentration were obtained in the 4.9-316.8 μM range, with regression coefficients of at least 0.99 and LODs ranging from 2.1 μM for amikacin to 4.6 μM for spectinomycin. Applicability of the method was demonstrated by analyzing five aminoglycoside antibiotics in spiked milk samples. The results showed that this alternative method is rapid, sensitive, and portable and enables the analysis of aminoglycoside antibiotics in milk sample.
五种氨基糖苷类抗生素(AGs),即大观霉素、链霉素、阿米卡星、巴龙霉素和新霉素,通过微芯片电泳与安培检测进行了分析。尽管 AGs 的电泳分离是在酸性条件下进行的,但安培检测是在碱性条件下进行的,使用的是通过 Cu-Sn-Cr 合金电沉积制成的电极。为了实现这一点,通过两个辅助通道将碱性溶液引入分离通道的末端,从而可以为每个分析操作使用不同的条件。除了提出的 pH 调整外,使用修饰有 Cu-Sn-Cr 的电极还可以延长电极的寿命。合金在 25-μm 直径的铂丝上电共沉积,然后将其集成在微芯片中并用作工作电极。此外,还研究了 pH 和缓冲液组成、分离电位、注入时间和滞留电位对 AGs 分离和检测的影响,以优化分离和检测条件。在最佳条件下,在 4.9-316.8 μM 范围内,信号与浓度之间呈线性关系,相关系数至少为 0.99,LOD 范围为 2.1 μM(阿米卡星)至 4.6 μM(大观霉素)。通过对加标牛奶样品中的五种氨基糖苷类抗生素进行分析,验证了该方法的适用性。结果表明,这种替代方法快速、灵敏、便携,可用于分析牛奶样品中的氨基糖苷类抗生素。