Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University in Bratislava, 84215 Bratislava, Slovakia.
Department of Experimental Physics, Mathematics, Physics and Informatics, Comenius University in Bratislava, 84248 Bratislava, Slovakia.
Molecules. 2021 Oct 9;26(20):6094. doi: 10.3390/molecules26206094.
An online coupling of microchip isotachophoresis (µITP) with ion mobility spectrometry (IMS) using thermal evaporation interface is reported for the first time. This combination integrates preconcentration power of the µITP followed by unambiguous identification of trace compounds in complex samples by IMS. Short-chain carboxylic acids, chosen as model analytes, were first separated by the µITP in a discontinuous electrolyte system at pH 5-6, and subsequently evaporated at 130 °C during their transfer to the IMS analyzer. Various parameters, affecting the transfer of the separated sample components through the evaporation system, were optimized to minimize dispersion and loss of the analytes as well as to improve sensitivity. The following analytical attributes were obtained for carboxylic acids in the standard solutions: 0.1-0.3 mg L detection limits, 0.4-0.9 mg L quantitation limits, linear calibration range from the quantitation limit to 75 mg L, 0.2-0.3% RSD of the IMS response and 98-102% accuracy. The analytical potential of the developed µITP-IMS combination was demonstrated on the analysis of various food, pharmaceutical and biological samples, in which the studied acids are naturally present. These include: apple vinegar, wine, fish sauce, saliva and ear drops. In the real samples, 0.3-0.6% RSD of the IMS response and 93-109% accuracy were obtained.
首次报道了一种采用热蒸发接口将微芯片等速电泳(µITP)与离子迁移谱(IMS)在线耦合的方法。这种组合集成了µITP 的浓缩能力,随后通过 IMS 对复杂样品中的痕量化合物进行明确识别。短链羧酸被选为模型分析物,首先在 pH 5-6 的不连续电解质系统中通过 µITP 进行分离,然后在转移到 IMS 分析仪时在 130°C 下蒸发。优化了各种参数,以最小化分离样品成分通过蒸发系统的分散和损失,并提高灵敏度。对于标准溶液中的羧酸,获得了以下分析属性:检测限为 0.1-0.3mg/L,定量限为 0.4-0.9mg/L,从定量限到 75mg/L 的线性校准范围,IMS 响应的 0.2-0.3%RSD 和 98-102%的准确度。开发的µITP-IMS 组合的分析潜力在各种食品、制药和生物样品的分析中得到了证明,其中研究的酸是天然存在的。这些包括:苹果醋、葡萄酒、鱼露、唾液和滴耳液。在实际样品中,IMS 响应的 RSD 为 0.3-0.6%,准确度为 93-109%。