Shi Fengjian, Flanigan Paul M, Archer Jieutonne J, Levis Robert J
Department of Chemistry, Temple University, 1901 N. 13th St., Philadelphia, PA, 19122, USA.
Center for Advanced Photonics Research, Temple University, 1901 N. 13th St., Philadelphia, PA, 19122, USA.
J Am Soc Mass Spectrom. 2016 Mar;27(3):542-51. doi: 10.1007/s13361-015-1302-z. Epub 2015 Dec 14.
Direct analysis of plant and animal tissue samples by laser electrospray mass spectrometry (LEMS) was investigated using low-energy, femtosecond duration laser vaporization at wavelengths of 800 and 1042 nm followed by nanospray postionization. Low-energy (<50 μJ), fiber-based 1042 nm LEMS (F-LEMS) allowed interrogation of the molecular species in fresh flower petal and leaf samples using 435 fs, 10 Hz bursts of 20 pulses from a Ytterbium-doped fiber laser and revealed comparable results to high energy (75-1120 μJ), 45 fs, 800 nm Ti:Sapphire-based LEMS (Ti:Sapphire-LEMS) measurements. Anthocyanins, sugars, and other metabolites were successfully detected and revealed the anticipated metabolite profile for the petal and leaf samples. Phospholipids, especially phosphatidylcholine, were identified from a fresh mouse brain section sample using Ti:Sapphire-LEMS without the application of matrix. These lipid features were suppressed in both the fiber-based and Ti:Sapphire-based LEMS measurements when the brain sample was prepared using the optimal cutting temperature compounds that are commonly used in animal tissue cryosections.
利用800纳米和1042纳米波长的低能量、飞秒持续时间激光汽化,随后进行纳米喷雾后电离,研究了激光电喷雾质谱法(LEMS)对植物和动物组织样本的直接分析。低能量(<50 μJ)、基于光纤的1042纳米LEMS(F-LEMS),使用掺镱光纤激光器发出的435飞秒、10赫兹、20个脉冲的脉冲串,对鲜花花瓣和叶片样本中的分子种类进行了检测,结果与高能量(75 - 1120 μJ)、45飞秒、800纳米钛宝石基LEMS(Ti:Sapphire-LEMS)测量结果相当。成功检测到了花青素、糖类和其他代谢物,并揭示了花瓣和叶片样本预期的代谢物谱。使用Ti:Sapphire-LEMS从新鲜小鼠脑切片样本中鉴定出了磷脂,尤其是磷脂酰胆碱,且未使用基质。当使用动物组织冷冻切片常用的最佳切割温度化合物制备脑样本时,在基于光纤和基于钛宝石的LEMS测量中,这些脂质特征均受到抑制。