Medicinal Plants and Drugs Research Institute, Shahid Beheshti University, G.C., Evin, Tehran 1983969411, Iran.
Department of Physics, Shahid Beheshti University, G.C., Evin, Tehran 1983969411, Iran.
J Am Soc Mass Spectrom. 2022 Jun 1;33(6):907-916. doi: 10.1021/jasms.1c00337. Epub 2022 May 6.
Many studies are focused on using plasma in mass spectrometry as an ionization source or postionization method. In this study, the effect of plasma treatment in the sample preparation step of desorption electrospray ionization (DESI) has been investigated. The plasma treatment of polar samples, including morphine, codeine, captopril, theophylline, fructose, and amphiphilic compounds such as phosphatidylethanolamine (PE) in bacteria, as well as nonpolar compounds, including thebaine, papaverine, and noscapine, has been followed for ionization efficiency in DESI technique. An atmospheric-pressure glow discharge plasma (GDP) along with the electrospray ionization technique is examined. Plasma treatment before ambient ionization has a dramatic effect on polar and nonpolar sample signals in DESI-TOF mass spectrometry. The intensity of the mass spectrum shows an increase of 1.9-3.4 times for polar compounds, 2.1-2.5 times for nonpolar compounds, and 3.0 times for PE in bacteria ( = 4). Plasma is a source of reactive atoms, molecules, ions, radicals, and ultraviolet radiation. Plasma surface treatment before DESI analysis by energetic species through momentum/energy transfer yields higher energy surface molecules, leading to more/easier desorption. Under optimal treatment conditions, an improved ion signal intensity is observed without any fragmentation, decomposition, or chemical changes. Ion signals are increased possibly by both increased ionization through protonation of molecules and enhanced subsequent desorption during DESI analysis.
许多研究都集中在将等离子体用作质谱分析中的离子源或后电离方法。在这项研究中,研究了等离子体处理在解吸电喷雾电离(DESI)样品制备步骤中的影响。研究了等离子体处理极性样品(包括吗啡、可待因、卡托普利、茶碱、果糖和细菌中的两性化合物如磷脂酰乙醇胺(PE))以及非极性化合物(包括蒂巴因、罂粟碱和那可丁)对 DESI 技术中离子化效率的影响。考察了大气压辉光放电等离子体(GDP)与电喷雾电离技术的结合。大气压辉光放电等离子体预处理对 DESI-TOF 质谱中的极性和非极性样品信号有显著影响。质谱强度显示极性化合物的强度增加了 1.9-3.4 倍,非极性化合物的强度增加了 2.1-2.5 倍,细菌中的 PE 增加了 3.0 倍(n = 4)。等离子体是活性原子、分子、离子、自由基和紫外辐射的来源。通过动量/能量转移,高能物质在进行 DESI 分析之前对等离子体表面进行处理,产生具有更高能量的表面分子,从而导致更多/更容易解吸。在最佳处理条件下,观察到离子信号强度提高,而没有任何碎片化、分解或化学变化。离子信号的增加可能是由于分子的质子化导致的离子化增加,以及在 DESI 分析过程中随后的解吸增强。