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Increasing sensitivity and decreasing spot size using an inexpensive, removable hydrophobic coating for matrix-assisted laser desorption/ionisation plates

机译:使用便宜的可移动疏水涂层用于基质辅助激光解吸/电离板,提高灵敏度并减小光斑尺寸

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摘要

Spot size reduction and increased detection sensitivity in matrix-assisted laser desorption/ionisation (MALDI) of small molecules are accomplished by using an inexpensive and removable hydrophobic coating for MALDI targets, based on 3M Scotch Gard(TM) surface treatment. Several variations in sample preparation were explored, such as surface coating technique, identity of the matrix, solvent composition, and the type of metal support plate used. These were investigated on both uncoated and coated surfaces and their impact on spot size, crystal coverage, and sensitivity is presented here. Additionally, crystallisation behaviour obtained on coated plates is compared with that on uncoated plates using scanning electron microscope analysis. To demonstrate the potential of the new coating technique, erythromycin A and valinomycin are studied to determine the increase in detection sensitivity of coated plates in comparison to uncoated plates, and to reveal the suitability of the plates for application in combined high-performance liquid chromatography/MALDI (HPLC/MALDI), where widely varying solvent compositions and droplet volumes are observed. It is shown that enhancements in detection sensitivities correlate very well with the achieved spot size reduction. The versatility of the coated plates is also exhibited by the ease of removing the surface layer, after which the plates can be rigorously cleaned without worry about damaging the hydrophobic surface, followed by a quick reapplication of new hydrophobic coating material. This makes the non-polar coating superior to more expensive commercial hydrophobic-coated targets, which are much more delicate to clean. Furthermore, cleaning and reapplication eliminate potential carry-over effects and the easy application procedure also makes the fabrication of inexpensive, disposable MALDI targets readily possible. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 28]
机译:通过基于3M Scotch GardTM表面处理,对MALDI目标使用廉价且可拆卸的疏水涂层,可以实现小分子的基质辅助激光解吸/电离(MALDI)中的斑点尺寸减小和检测灵敏度的提高。探索了样品制备中的几种变化,例如表面涂覆技术,基质的身份,溶剂组成以及所用金属支撑板的类型。在未镀膜和镀膜的表面上对它们进行了研究,并在此介绍了它们对光斑尺寸,晶体覆盖率和灵敏度的影响。另外,使用扫描电子显微镜分析将在涂覆板上获得的结晶行为与未涂覆板上获得的结晶行为进行比较。为了证明新涂层技术的潜力,对红霉素A和缬霉素进行了研究,以确定涂层板与未涂层板相比检测灵敏度的提高,并揭示了该板适用于组合高效液相色谱/ MALDI(HPLC / MALDI),观察到溶剂组成和液滴体积变化很大。结果表明,检测灵敏度的提高与斑点尺寸的减小非常相关。涂层板的多功能性还体现在易于去除表面层之后,然后可以对板进行严格清洁,而不必担心会损坏疏水表面,然后快速重新涂覆新的疏水涂层材料。这使得非极性涂层优于更昂贵的商业疏水涂层靶材,后者更易于清洁。此外,清洁和重新涂抹消除了潜在的残留效应,易于涂抹的程序也使廉价,一次性MALDI靶的制造变得容易。版权所有(C)2003 John Wiley Sons,Ltd. [引用:28]

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