Prinz Christelle, Höök Fredrik, Malm Jakob, Sjövall Peter
Division of Solid State Physics, Department of Physics, Lund University, SE-221 00 Lund, Sweden.
Langmuir. 2007 Jul 17;23(15):8035-41. doi: 10.1021/la7004634. Epub 2007 Jun 15.
We contribute to the rapidly emerging interest in the application of time-of-flight secondary ion mass spectrometry (TOF-SIMS) for chemical analysis of biological materials by presenting a careful TOF-SIMS investigation of structurally different SiO2-supported phospholipid assemblies. Freeze-dried supported 1-oleoyl-2-palmitoyl-sn-glycero-3-phosphocholine (POPC) bilayers, Langmuir-Blodgett POPC monolayers, and disordered thick POPC films were investigated. Compared with the two latter structures, the supported bilayer showed a strong (5-10 times) enhancement in the yield of both the molecular and the dimer ion peaks of POPC, suggesting that the molecular peak may be used as a sensitive indicator for changes in the membrane structure and, in particular, an indicator for the presence of bilayer structures in, e.g., cell and tissue samples. The detection efficiency and the useful lateral resolution indicate that a lateral resolution of around 100 nm can be obtained on all structures by imaging the phosphocholine ion at 184 u using Bi3+ primary ions. For the chemically specific molecular peak at 760 u, the measured detection efficiencies correspond to a useful lateral resolution of around 2 microm for the bilayer structure. The results are discussed in relation to recent dynamic SIMS (nano-SIMS) analysis of freeze-dried supported lipid bilayers, displaying similar or higher lateral resolution, but which in contrast to TOF-SIMS requires isotopic labeling of the analyzed lipids.
我们通过对结构不同的二氧化硅负载磷脂组装体进行细致的飞行时间二次离子质谱(TOF-SIMS)研究,推动了人们对将TOF-SIMS应用于生物材料化学分析的迅速兴起的兴趣。研究了冻干的负载1-油酰基-2-棕榈酰基-sn-甘油-3-磷酸胆碱(POPC)双层膜、朗缪尔-布洛杰特POPC单层膜和无序的厚POPC膜。与后两种结构相比,负载双层膜中POPC的分子离子峰和二聚体离子峰的产率都有显著提高(5-10倍),这表明分子峰可作为膜结构变化的敏感指标,特别是作为例如细胞和组织样品中双层结构存在的指标。检测效率和有用的横向分辨率表明,使用Bi3+ 初级离子对184 u处的磷酸胆碱离子进行成像,可以在所有结构上获得约100 nm的横向分辨率。对于760 u处的化学特异性分子峰,测得的检测效率对应于双层结构约2微米的有用横向分辨率。结合最近对冻干负载脂质双层膜的动态二次离子质谱(nano-SIMS)分析讨论了结果,nano-SIMS显示出相似或更高的横向分辨率,但与TOF-SIMS不同的是,它需要对分析的脂质进行同位素标记。