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Hybrid Surface Design of Organosilica Films for Laser Desorption/Ionization Mass Spectrometry: Low Free Energy Surface with Interactive Sites

机译:用于激光解吸/电离质谱的有机硅膜混合表面设计:具有互动部位的无自由能表面

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Laser desorption/ionization mass spectrometry (LDI-MS) assisted by solid substrates is useful for the facile and rapid analysis of low-molecular-weight compounds. The LDI performance of solid substrates depends on not only a surface morphology but also the surface functionalities dominating the surface-analyte interactions. In this study, we propose a hybrid surface design for LDI substrates, realizing both weak surface-analyte interaction and homogeneous distribution of analytes. The hybrid surface consisted of a mixture of fluoroalkylsilane (FAS), SiO2, and TiO2 and was formed on organosilica substrates containing UV-laser-absorbing naphthalimide moieties. To investigate the surface interactions, the hybrid surface as well as conventional hydrophobic surfaces treated with FAS only were prepared on flat organosilica films. Contact angle measurements and surface free energy analysis showed that the hybrid surface exhibited the highest hydrophobicity, while the contribution of the polar and hydrogen bonding terms in the surface free energy was clearly observed. The organosilica film with the hybrid surface demonstrated significant LDI performance for the detection of biorelated compounds (e.g., peptides, phospholipids, and medicines), and a high detection ability was particularly observed for peptides. The substrate surface promoted the desorption/ionization of analytes through a low surface free energy and uniform distribution of the analytes due to the interactive sites. The hybrid surface design was then applied to a nanostructured organosilica substrate consisting of a base film and a nanoparticle layer. The signal intensity of a peptide was further improved approximately 3-fold owing to the increased surface area of the nanostructured substrate, and the limit of detection reached the subfemtomole order. Our hybrid surface design is expected to improve the LDI performance of various nanostructured solid substrates.
机译:固体基质辅助激光解吸/电离质谱(LDI-MS)可用于低分子量化合物的简便快速分析。固体基质的LDI性能不仅取决于表面形态,还取决于主导表面分析物相互作用的表面功能。在这项研究中,我们提出了一种LDI基板的混合表面设计,实现了弱表面分析物相互作用和分析物均匀分布。杂化表面由氟烷基硅烷(FAS)、SiO2和TiO2的混合物组成,并在含有紫外激光吸收萘酰亚胺部分的有机硅基底上形成。为了研究表面相互作用,在平坦的有机硅薄膜上制备了经FAS处理的杂化表面和常规疏水表面。接触角测量和表面自由能分析表明,杂化表面表现出最高的疏水性,而极性和氢键项在表面自由能中的贡献被清楚地观察到。具有杂化表面的有机硅薄膜在检测生物相关化合物(例如肽、磷脂和药物)方面表现出显著的LDI性能,尤其是对肽的高检测能力。由于相互作用位点的存在,基质表面通过较低的表面自由能和分析物的均匀分布促进了分析物的解吸/电离。然后将混合表面设计应用于由基膜和纳米颗粒层组成的纳米结构有机二氧化硅基底。由于纳米结构底物的表面积增加,肽的信号强度进一步提高了约3倍,检测极限达到亚基序。我们的混合表面设计有望改善各种纳米结构固体基底的LDI性能。

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