Trauger Sunia A, Go Eden P, Shen Zhouxin, Apon Junefredo V, Compton Bruce J, Bouvier Edouard S P, Finn M G, Siuzdak Gary
Department of Molecular Biology, Scripps Center for Mass Spectrometry, Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.
Anal Chem. 2004 Aug 1;76(15):4484-9. doi: 10.1021/ac049657j.
Silylation chemistry on porous silicon provides for ultrahigh sensitivity and analyte specificity with desorption/ionization on silicon mass spectrometry (DIOS-MS) analysis. Here, we report that the silylation of oxidized porous silicon offers a DIOS platform that is resistant to air oxidation and acid/base hydrolysis. Furthermore, surface modification with appropriate hydrophobic silanes allows analytes to absorb to the surface via hydrophobic interactions for direct analyte extraction from complex matrixes containing salts and other nonvolatile interferences present in the sample matrix. This enables rapid cleanup by simply spotting the sample onto the modified DIOS target and removing the liquid phase containing the interferences. This approach is demonstrated in the analysis of protein digests and metabolites in biofluids, as well as for the characterizing of inhibitors from their enzyme complex. An unprecedented detection limit of 480 molecules (800 ymol) for des-Arg(9)-bradykinin is reported on a pentafluorophenyl-functionalized DIOS chip.
多孔硅上的硅烷化化学为硅基质辅助激光解吸/电离质谱(DIOS-MS)分析提供了超高灵敏度和分析物特异性。在此,我们报道氧化多孔硅的硅烷化提供了一个抗空气氧化和酸碱水解的DIOS平台。此外,用适当的疏水硅烷进行表面修饰可使分析物通过疏水相互作用吸附到表面,从而从含有样品基质中存在的盐和其他非挥发性干扰物的复杂基质中直接提取分析物。这通过简单地将样品点到修饰后的DIOS靶上并除去含有干扰物的液相来实现快速净化。这种方法在生物流体中蛋白质消化产物和代谢物的分析以及酶复合物中抑制剂的表征中得到了证明。在五氟苯基功能化的DIOS芯片上,报道了去精氨酸(9)-缓激肽前所未有的480个分子(800 ymol)的检测限。