Ross Charles W, Simonsick William J, Bogusky Michael J, Celikay Recep W, Guare James P, Newton Randall C
Merck & Co. Inc., Merck Research Laboratories, Dept. of Medicinal Chemistry, West Point, PA 19486, USA.
DuPont Marshall R & D Laboratories, Philadelphia, PA 19146, USA.
Int J Mol Sci. 2016 Jun 28;17(7):1024. doi: 10.3390/ijms17071024.
Ceramides are a central unit of all sphingolipids which have been identified as sites of biological recognition on cellular membranes mediating cell growth and differentiation. Several glycosphingolipids have been isolated, displaying immunomodulatory and anti-tumor activities. These molecules have generated considerable interest as potential vaccine adjuvants in humans. Accurate analyses of these and related sphingosine analogues are important for the characterization of structure, biological function, and metabolism. We report the complementary use of direct laser desorption ionization (DLDI), sheath flow electrospray ionization (ESI) Fourier transform ion cyclotron resonance mass spectrometry (FTICR MS) and high-field nuclear magnetic resonance (NMR) analysis for the rapid, accurate identification of hexacosanoylceramide and starting materials. DLDI does not require stringent sample preparation and yields representative ions. Sheath-flow ESI yields ions of the product and byproducts and was significantly better than monospray ESI due to improved compound solubility. Negative ion sheath flow ESI provided data of starting materials and products all in one acquisition as hexacosanoic acid does not ionize efficiently when ceramides are present. NMR provided characterization of these lipid molecules complementing the results obtained from MS analyses. NMR data was able to differentiate straight chain versus branched chain alkyl groups not easily obtained from mass spectrometry.
神经酰胺是所有鞘脂的核心单元,已被确定为细胞膜上介导细胞生长和分化的生物识别位点。几种糖鞘脂已被分离出来,具有免疫调节和抗肿瘤活性。这些分子作为人类潜在的疫苗佐剂引起了极大的关注。对这些及相关鞘氨醇类似物进行准确分析对于其结构、生物学功能和代谢的表征很重要。我们报告了直接激光解吸电离(DLDI)、鞘流电喷雾电离(ESI)傅里叶变换离子回旋共振质谱(FTICR MS)和高场核磁共振(NMR)分析的互补使用,用于快速、准确地鉴定二十六烷酰神经酰胺及其起始原料。DLDI不需要严格的样品制备,并且能产生代表性离子。鞘流ESI能产生产物和副产物的离子,并且由于化合物溶解度的提高,明显优于单喷雾ESI。负离子鞘流ESI在一次采集中就能提供起始原料和产物的数据,因为当存在神经酰胺时,二十六烷酸不易有效电离。NMR对这些脂质分子进行了表征,补充了从质谱分析中获得的结果。NMR数据能够区分质谱不易获得的直链与支链烷基。