Ugarov Michael V, Egan T, Khabashesku Dmitry V, Schultz J Albert, Peng Haiqing, Khabashesku Valery N, Furutani Hiroshi, Prather Kimberley S, Wang H-W J, Jackson S N, Woods Amina S
Ionwerks, Inc., 2472 Bolsover, Suite 255, Houston, Texas 77005, USA.
Anal Chem. 2004 Nov 15;76(22):6734-42. doi: 10.1021/ac049192x.
When used in small molar ratios of matrix to analyte, derivatized fullerenes and single wall nanotubes are shown to be efficient matrices for matrix-assisted laser desorption/ionization (MALDI) mass spectrometry. The mixing of an acidic functionalized fullerene with a solution of bioanalyte, depositing a dried droplet, and irradiating with a pulsed nitrogen laser yields protonated or cationized molecular ions. Derivatized fullerenes could offer several advantages over conventional MALDI matrices: a high analyte ionization efficiency, a small molar ratios (less than 1) of matrix/analyte, and a broader optical absorption spectrum, which should obviate specific wavelength lasers for MALDI acquisitions. The major disadvantage to the use of fullerenes is the isobaric interference between matrix and analyte ions; however, it is overcome by using MALDI-ion mobility time-of-flight (IM-oTOF) mass spectrometry to preseparate carbon cluster ions from bioanalyte ions prior to TOF mass analysis. However, an alternative to the dried droplet preparation of fullerene MALDI samples is the aerosolization of matrix-analyte solutions (or slurries) followed by impacting the aerosol onto a stainless surface. We also demonstrate that the fullerene matrices can be used to acquire spectra from rat brain tissue.
当以基质与分析物的小摩尔比使用时,衍生化的富勒烯和单壁纳米管被证明是基质辅助激光解吸/电离(MALDI)质谱的有效基质。将酸性官能化富勒烯与生物分析物溶液混合,沉积干燥液滴,并用脉冲氮激光照射,可产生质子化或阳离子化的分子离子。衍生化富勒烯相对于传统MALDI基质可能具有几个优点:高分析物电离效率、小的基质/分析物摩尔比(小于1)以及更宽的光吸收光谱,这应该无需用于MALDI采集的特定波长激光。使用富勒烯的主要缺点是基质离子和分析物离子之间的等压干扰;然而,通过在TOF质量分析之前使用MALDI-离子淌度飞行时间(IM-oTOF)质谱将碳簇离子与生物分析物离子预分离来克服这一问题。然而,富勒烯MALDI样品干燥液滴制备的一种替代方法是将基质-分析物溶液(或浆料)雾化,然后将气溶胶撞击到不锈钢表面上。我们还证明了富勒烯基质可用于获取大鼠脑组织的光谱。