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Non-contact protein microarray fabrication using a procedure based on liquid bridge formation

机译:使用基于液桥形成的程序进行非接触蛋白质微阵列制备

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摘要

Contemporary microarrayers of contact or non-contact format used in protein microarray fabrication still suffer from a number of problems, e.g. generation of satellite spots, inhomogeneous spots, misplaced or even absent spots, and sample carryover. In this paper, a new concept of non-contact sample deposition that reduces such problems is introduced. To show the potential and robustness of this pressure-assisted deposition technique, different sample solutions known to cause severe problems or to be even impossible to print with conventional microarrayers were accurately printed. The samples included 200 mg mL–1 human serum albumin, highly concentrated sticky cell adhesion proteins, pure high-salt cell-lysis buffer, pure DMSO, and a suspension of 5-μm polystyrene beads. Additionally, a water-immiscible liquid fluorocarbon, which was shown not to affect the functionality of the capture molecules, was employed as a lid to reduce evaporation during microarray printing. The fluorocarbon liquid lid was shown to circumvent hydrolysis of water-sensitive activated surfaces during long-term deposition procedures.
机译:在蛋白质微阵列制造中使用的接触式或非接触形式的当代微阵列器仍然遭受许多问题,例如在生物医学领域中。卫星斑点,不均匀斑点,错位甚至不存在斑点以及样品残留的产生。在本文中,介绍了减少此类问题的非接触式样品沉积的新概念。为了显示这种压力辅助沉积技术的潜力和耐用性,准确地打印了已知会引起严重问题甚至无法用常规微阵列仪打印的不同样品溶液。样品包括200 mg mL–1 人血清白蛋白,高浓度粘性细胞粘附蛋白,纯高盐细胞裂解缓冲液,纯DMSO和5μm聚苯乙烯珠的悬浮液。另外,已证明与水不混溶的液态碳氟化合物不会影响捕获分子的功能,该碳氟化合物被用作盖子以减少微阵列打印过程中的蒸发。碳氟化合物液体盖已显示出在长期沉积过程中可避免水敏性活化表面的水解。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2009年第2期|591-598|共8页
  • 作者单位

    School of Chemical Science and Engineering Department of Analytical Chemistry Royal Institute of Technology 10044 Stockholm Sweden;

    School of Chemical Science and Engineering Department of Analytical Chemistry Royal Institute of Technology 10044 Stockholm Sweden;

    School of Chemical Science and Engineering Department of Analytical Chemistry Royal Institute of Technology 10044 Stockholm Sweden;

    School of Chemical Science and Engineering Department of Analytical Chemistry Royal Institute of Technology 10044 Stockholm Sweden;

    NMI Natural and Medical Sciences Institute University of Tübingen Reutlingen Germany;

    School of Chemical Science and Engineering Department of Analytical Chemistry Royal Institute of Technology 10044 Stockholm Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Non-contact microarrayer; Liquid lid; Fluorocarbon; Capillary microarrayer; Protein microarray;

    机译:非接触式微阵列;液盖;碳氟化合物;毛细管微阵列;蛋白质微阵列;

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