Crevillén A González, Avila Mónica, Pumera Martin, González María Cristina, Escarpa Alberto
Department of Analytical Chemistry and Chemical Engineering, University of Alcalá, E-28871 Alcalá de Henares, Madrid, Spain.
Anal Chem. 2007 Oct 1;79(19):7408-15. doi: 10.1021/ac071247i. Epub 2007 Sep 7.
Microfluidic devices using carbon nanotube (CNT) materials (single-walled and two multiwalled (MWCNT)) for the analysis of selected analyte groups of significance in foods such as dietary antioxidants, water-soluble vitamins, vanilla flavors, and isoflavones involved in representative food samples have been explored for the first time. Ultrafast separations resulted in well-defined and resolved peaks with enhanced voltammetric current in comparison with those obtained from unmodified screen-printed electrodes, turning MWCNT into an ideal material for electrochemical sensing in food analysis. Resolution was improved by a factor of 2, and sensitivity was dramatically enhanced with amplification factors toward calibration slopes from 4- to 16-fold. In both qualitative and quantitative domains, this impressive performance of CNTs integrated on microfluidics allowed solving specific challenges in food environments such as the direct detection of analytes in complex natural samples and unambiguous analytes in the control of fraud, which was not possible on nonmodified surfaces, avoiding the integration of complex preconcentration steps on these microdevices. The use of these unique materials in microfluidics for food analysis has opened new expectations in "lab-on-a-chip" domains.
首次探索了使用碳纳米管(CNT)材料(单壁碳纳米管和两种多壁碳纳米管(MWCNT))的微流控装置,用于分析代表性食品样品中具有重要意义的特定分析物组,如膳食抗氧化剂、水溶性维生素、香草香料和异黄酮。与未修饰的丝网印刷电极相比,超快分离产生了定义明确且分离良好的峰,同时伏安电流增强,这使得MWCNT成为食品分析中电化学传感的理想材料。分离度提高了2倍,灵敏度显著增强,校准斜率的放大倍数为4至16倍。在定性和定量方面,集成在微流控装置上的碳纳米管的这种出色性能能够解决食品环境中的特定挑战,如直接检测复杂天然样品中的分析物以及控制欺诈行为中的明确分析物,这在未修饰的表面上是不可能实现的,同时避免了在这些微器件上集成复杂的预浓缩步骤。在微流控中使用这些独特材料进行食品分析,为“芯片实验室”领域带来了新的期望。