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An Acoustic Trap for Bead Injection Attenuated Total Reflection Infrared Spectroscopy

机译:用于珠子注射的声学捕集器减弱全反射红外光谱

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摘要

In this work, we introduce a system combining an acoustic trap for bead injection with attenuated total reflection (ATR) infrared (IR) spectroscopy. By mounting an acoustofluidic cell hosting an ultrasound source on top of a custom-built ATR fixture we were able to trap beads labeled with the enzyme alkaline phosphatase without requiring any mechanical retention elements. Sequential injection analysis was employed for reproducible sample handling and bead injection into the acoustic trap. To showcase potential applications of the presented setup for kinetic studies, we monitored the conversion of p-nitrophenylphosphate into p-nitrophenol and phosphate via beads carrying the immobilized enzyme using ATR-IR spectroscopy. Retaining the labeled beads via ultrasound particle manipulation resulted in excellent experimental reproducibility (relative standard deviation, 3.91%). It was demonstrated that trapped beads remained stably restrained with up to eight cell volumes of liquid passing through the acoustofluidic cell. Beads could be discarded in a straightforward manner by switching off the ultrasound, in contrast to systems containing mechanical retention elements, which require backflushing. Multiple experiments were performed by employing different substrate concentrations with the same batch of trapped beads as well as varying the amount of enzyme present in the cell, enabling enzyme kinetic studies and emphasizing the application of the proposed setup in studies where enzymatic reuse is desired. This proves the potential of the acoustic trap combined with ATR-IR spectroscopy to monitor the activity of immobilized enzymes and its ability to perform complex bead-based assays.
机译:在这项工作中,我们引入了一个系统,将声阱与衰减的全反射(ATR)红外(IR)光谱分开。通过安装托管超声波源的声毒流体细胞在定制的ATR夹具的顶部,我们能够捕获用酶碱性磷酸酶标记的珠子,而不需要任何机械保持元件。使用顺序注射分析用于可重复的样品处理和珠子注射到声学阱中。为了展示所提出的动力学研究的潜在应用,我们通过使用ATR-IR光谱监测了通过携带固定化酶的珠粒将p-硝基苯磷酸盐转化为对硝基苯酚和磷酸盐。通过超声粒子操作保持标记的珠子导致优异的实验再现性(相对标准偏差,3.91%)。已经证明,捕获的珠粒保持稳定地抑制通过声流体细胞的多达八个细胞体积液体。通过关闭超声波,可以以直接的方式丢弃珠子,与含有反吹的机械保留元件的系统相比,偏离超声波。通过采用具有相同捕获的珠粒的不同底物浓度来进行多次实验以及改变细胞中存在的酶量,使酶动力学研究能够强调所需的提出的设置在所需的研究中的应用。这证明了声捕集的电位与ATR-IR光谱合并监测固定化酶的活性及其进行复合珠子的测定能力。

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  • 来源
    《Analytical chemistry》 |2019年第12期|共7页
  • 作者单位

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

    Tech Univ Wien Inst Chem Technol &

    Analyt Getreidemarkt 9-164-UPA A-1060 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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