Jokinen Ville, Aura Susanna, Luosujärvi Laura, Sainiemi Lauri, Kotiaho Tapio, Franssila Sami, Baumann Marc
Protein Chemistry Unit, Institute of Biomedicine, University of Helsinki, Helsinki, Finland.
J Am Soc Mass Spectrom. 2009 Sep;20(9):1723-30. doi: 10.1016/j.jasms.2009.05.013. Epub 2009 May 29.
Matrix-free laser desorption/ionization was studied on two-layered sample plates consisting of a substrate and a thin film coating. The effect of the substrate material was studied by depositing thin films of amorphous silicon on top of silicon, silica, polymeric photoresist SU-8, and an inorganic-organic hybrid. Des-arg(9)-bradykinin signal intensity was used to evaluate the sample plates. Silica and hybrid substrates were found to give superior signals compared with silicon and SU-8 because of thermal insulation and compatibility with amorphous silicon deposition process. The effect of surface topography was studied by growing amorphous silicon on hybrid micro- and nanostructures, as well as planar hybrid. Compared with planar sample plates, micro- and nanostructures gave weaker and stronger signals, respectively. Different coating materials were tested by growing different thin film coatings on the same substrate. Good signals were obtained from titania and amorphous silicon coated sample plates, but not from alumina coated, silicon nitride coated, or uncoated sample plates. Overall, the strongest signals were obtained from oxygen plasma treated and amorphous silicon coated inorganic-organic hybrid, which was tested for peptide-, protein-, and drug molecule analysis. Peptides and drugs were analyzed with little interference at low masses, subfemtomole detection levels were achieved for des-arg(9)-bradykinin, and the sample plates were also suitable for ionization of small proteins.
在由基底和薄膜涂层组成的双层样品板上研究了无基质激光解吸/电离。通过在硅、二氧化硅、聚合物光刻胶SU-8和无机-有机杂化材料上沉积非晶硅薄膜来研究基底材料的影响。使用去精氨酸(9)-缓激肽信号强度来评估样品板。由于隔热以及与非晶硅沉积工艺的兼容性,发现二氧化硅和杂化基底比硅和SU-8能产生更好的信号。通过在杂化微结构和纳米结构以及平面杂化材料上生长非晶硅来研究表面形貌的影响。与平面样品板相比,微结构和纳米结构分别产生较弱和较强的信号。通过在同一基底上生长不同的薄膜涂层来测试不同的涂层材料。在二氧化钛和非晶硅涂层的样品板上获得了良好的信号,但在氧化铝涂层、氮化硅涂层或未涂层的样品板上没有获得。总体而言,从经氧等离子体处理和非晶硅涂层的无机-有机杂化材料获得了最强的信号,该材料用于肽、蛋白质和药物分子分析。对肽和药物进行了分析,在低质量下干扰很小,去精氨酸(9)-缓激肽的检测水平达到亚飞摩尔,并且样品板也适用于小蛋白质的电离。