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Electrospray micromixer chip for on-line derivatization and kinetic studies

机译:电喷雾微混合器芯片,用于在线衍生化和动力学研究

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摘要

An electrospray microchip for mass spectrometry comprising an integrated passive mixer to carry out on-chip chemical derivatizations is described. The microchip fabricated using UV-photoablation is composed of two microchannels linked together by a liquid junction. Downstream of this liquid junction, a mixing unit made of parallel oblique grooves is integrated to the microchannel in order to create flow perturbations. Several mixer designs are evaluated. The mixer efficiency is investigated both by fluorescence study and mass spectrometric monitoring of the tagging reaction of cysteinyl peptides with 1,4-benzoquinone. The comparisons with a microchip without a mixing unit and a kinetic model are used to assess the efficiency of the mixer showing tagging kinetics close to that of bulk reactions in an ideally mixed reactor. As an ultimate application, the electrospray micromixer is implemented in a LC-MS workflow. Online derivatization of albumin tryptic peptides after a reversed-phase separation and counting of their cysteines drastically enhance the protein identification.
机译:描述了一种用于质谱法的电喷雾微芯片,其包括集成的无源混合器以执行片上化学衍生化。使用紫外光烧蚀制造的微芯片由两个微通道组成,两个微通道通过液接连接在一起。在该液体连接的下游,由平行的斜槽制成的混合单元集成到微通道中,以产生流动扰动。评估了几种混合器设计。通过荧光研究和质谱监测半胱氨酰肽与1,4-苯醌的标记反应,研究了混合器效率。与没有混合单元和动力学模型的微芯片的比较用于评估混合器的效率,显示出理想的混合反应器中标签动力学接近本体反应的标签动力学。作为最终应用,电喷雾微混合器在LC-MS工作流程中实现。反相分离后的白蛋白胰蛋白酶肽的在线衍生化及其半胱氨酸的计数极大地增强了蛋白质鉴定。

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