Czerwieniec Gregg A, Russell Scott C, Lebrilla Carlito B, Coffee Keith R, Riot Vincent, Steele Paul T, Frank Matthias, Gard Eric E
Department of Chemistry, University of California-Davis, One Shields Avenue, Davis, CA 95616, USA.
J Am Soc Mass Spectrom. 2005 Nov;16(11):1866-75. doi: 10.1016/j.jasms.2005.06.013. Epub 2005 Sep 29.
Bioearosol mass spectrometry (BAMS) analyzes single particles in real time from ambient air, placing strict demands on instrument sensitivity. Modeling of the BAMS reflectron time of flight (TOF) with SIMION revealed design limitations associated with ion transmission and instrument sensitivity at higher masses. Design and implementation of a BAMS linear TOF with electrostatic ion guide and delayed extraction capabilities has greatly increased the sensitivity and mass range relative to the reflectron design. Initial experimental assessment of the new instrument design revealed improved sensitivity at high masses as illustrated when using standard particles of cytochrome C (m/z approximately 12,000), from which the compound's monomer, dimer (m/z approximately 24,000) and trimer (m/z approximately 36,000) were readily detected.
生物气溶胶质谱分析法(BAMS)可对环境空气中的单个颗粒进行实时分析,这对仪器灵敏度提出了严格要求。利用SIMION对BAMS反射式飞行时间(TOF)进行建模,结果显示在较高质量下存在与离子传输和仪器灵敏度相关的设计局限性。具有静电离子导向和延迟提取功能的BAMS线性TOF的设计与实现,相对于反射式设计,极大地提高了灵敏度和质量范围。新仪器设计的初步实验评估表明,在使用细胞色素C标准颗粒(质荷比约为12,000)时,高质量下的灵敏度有所提高,从中很容易检测到该化合物的单体、二聚体(质荷比约为24,000)和三聚体(质荷比约为36,000)。