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首页> 外文期刊>Analytica chimica acta >Separation of carboxylic acids in human serum by isotachophoresis using a commercial field-deployable analytical platform combined with in-house glass microfluidic chips
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Separation of carboxylic acids in human serum by isotachophoresis using a commercial field-deployable analytical platform combined with in-house glass microfluidic chips

机译:使用商业现场可部署的分析平台结合室内玻璃微流控芯片,通过等速电泳分离人血清中的羧酸

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摘要

Portable and field deployable analytical instruments are attractive in many fields including medical diagnostics, where point of care and on-site diagnostics systems capable of providing rapid quantitative results have the potential to vastly improve the productivity and the quality of medical care. Isotachophoresis (ITP) is a well known electrophoretic separation technique previously demonstrated as suitable for miniaturization in microfluidic chip format (chip-ITP). In this work, a purpose-designed ITP chip compatible with a commercial end-used targeted microfluidic system was used to study different injection protocols and to evaluate the effect of the length of the separation channel on the analytical performance. The in-house ITP chips were made from Corning glass and compared to the commercial DNA chip for the ITP separation of anions from the hydrodynamic injection of human serum. Using the in-house ITP chip the isotachophoretic step of lactate from human serum was approximately two times longer. The results of this research suggested that microfluidic ITP with indirect fluorescence detection is a viable technique for separation of organic acids in human serum samples, especially when a chip with suitable design is used.
机译:便携式和可现场部署的分析仪器在包括医学诊断在内的许多领域中都很有吸引力,在这些领域中,能够提供快速定量结果的即时医疗点和现场诊断系统具有极大地提高生产力和医疗质量的潜力。等速电泳(ITP)是一种众所周知的电泳分离技术,先前已证明适用于微流控芯片形式(chip-ITP)的小型化。在这项工作中,使用了与商业最终使用的靶向微流体系统兼容的专门设计的ITP芯片,以研究不同的进样方案并评估分离通道的长度对分析性能的影响。内部ITP芯片是由康宁玻璃制成的,并与商业DNA芯片进行了比较,用于从人血清的流体动力注射中分离阴离子的ITP。使用内部ITP芯片,人血清中乳酸的等速电泳步骤大约要长两倍。这项研究的结果表明,带有间接荧光检测的微流控ITP是一种分离人血清样品中有机酸的可行技术,尤其是在使用具有适当设计的芯片时。

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