Li Gang, Hu Rui, Kamijo Yuji, Nakajima Takero, Aoyama Toshifumi, Inoue Teruo, Node Koichi, Kannagi Reiji, Kyogashima Mamoru, Hara Atsushi
Department of Metabolic Regulation, Institute of Aging and Adaptation, Shinshu University Graduate School of Medicine, 3-1-1 Asahi, Matsumoto, Nagano 390-8621, Japan.
Anal Biochem. 2007 Mar 1;362(1):1-7. doi: 10.1016/j.ab.2006.12.024. Epub 2006 Dec 20.
Based on our previous measurements of sulfatides, we further developed a quantitative, qualitative, and high-throughput analytical method for serum sulfatides as forms of lysosulfatides by matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS). Using 0.1N NaOH in 90% MeOH for saponification instead of absolute MeOH, as previously used, we succeeded in eliminating the formation of lysosulfatide artifacts, facilitating much more sensitive detection. The use of MonoTip C18 allowed quantitation of serum sulfatides from 100 50-mul serum specimens within 1 working day. Purification of lysosulfatides with MonoTip C18 also gave rise to clear MALDI-TOF MS spectra, allowing overall analysis of sphingoid molecular species of sulfatides in serum. The composition was as follows: d18:1 (61.3+/-2.8%), d18:2 (13.3+/-1.7%), t18:0 (11.8+/-1.5%), d18:0 (7.6+/-0.8%), d20:0 (3.0+/-1.2%), t20:0 (2.3+/-0.8%), and d20:1 (1.6+/-0.5%). This is also the first detailed report on sphingoid molecular species of sulfatides in human serum. We believe that this method is suitable for daily clinical analysis of sulfatides in various clinical samples such as blood, urine, cerebrospinal fluid, and specimens from biopsies.
基于我们之前对硫苷脂的测量,我们进一步开发了一种定量、定性且高通量的分析方法,用于通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)分析血清中作为溶血硫苷脂形式存在的硫苷脂。与之前使用的无水甲醇不同,我们使用90%甲醇中的0.1N氢氧化钠进行皂化,成功消除了溶血硫苷脂假象的形成,从而实现了更灵敏的检测。使用MonoTip C18能够在1个工作日内对100份50微升血清样本中的血清硫苷脂进行定量分析。用MonoTip C18纯化溶血硫苷脂还能得到清晰的MALDI-TOF MS谱图,从而对血清中硫苷脂的鞘氨醇分子种类进行全面分析。其组成如下:d18:1(61.3±2.8%)、d18:2(13.3±1.7%)、t18:0(11.8±1.5%)、d18:0(7.6±0.8%)、d20:0(3.0±1.2%)、t20:0(2.3±0.8%)和d20:1(1.6±0.5%)。这也是关于人血清中硫苷脂鞘氨醇分子种类的首份详细报告。我们认为该方法适用于对血液、尿液、脑脊液以及活检样本等各种临床样本中的硫苷脂进行日常临床分析。