Tian Hua, Wucher Andreas, Winograd Nicholas
Department of Chemistry, The Pennsylvania State University, 104 Chemistry Building, PA 16802, USA.
Faculty of Physics, University Duisburg-Essen, 47048 Duisburg, Germany.
Surf Interface Anal. 2014 Nov;46(1):115-117. doi: 10.1002/sia.5509.
An Ar ( = 1-6000) gas cluster ion source has been utilized to map the chemical distribution of lipids in a mouse brain tissue section. We also show that the signal from high mass species can be further enhanced by doping a small amount of CH into the Ar cluster to enhance the ionization of several biologically important molecules. Coupled with secondary ion mass spectrometry instrumentation which utilizes a continuous Ar cluster ion projectile, maximum spatial resolution and maximum mass resolution can be achieved at the same time. With this arrangement, it is possible to achieve chemically resolved molecular ion images at the 4-µm resolution level. The focused Ar /[Ar (CH) ] beams (4-10 µm) have been applied to the study of untreated mouse brain tissue. A high signal level of molecular ions and salt adducts, mainly from various phosphocholine lipids, has been seen and directly used to map the chemical distribution. The signal intensity obtained using the pure Ar cluster source, the CH-doped cluster source and C is also presented.
已使用一个Ar(=1-6000)气体团簇离子源来绘制小鼠脑组织切片中脂质的化学分布图。我们还表明,通过向Ar团簇中掺杂少量CH以增强几种生物重要分子的电离,可以进一步增强高质量物种的信号。与利用连续Ar团簇离子射弹的二次离子质谱仪器相结合,可以同时实现最大空间分辨率和最大质量分辨率。通过这种配置,有可能在4微米分辨率水平上获得化学分辨的分子离子图像。聚焦的Ar /[Ar (CH) ]束(4-10微米)已应用于未处理的小鼠脑组织研究。已观察到主要来自各种磷酸胆碱脂质的分子离子和盐加合物的高信号水平,并直接用于绘制化学分布图。还给出了使用纯Ar团簇源、CH掺杂团簇源和C获得的信号强度。