Spell J C, Srinivasan K, Stewart J T, Bartlett M G
Department of Pharmaceutical and Biomedical Sciences, College of Pharmacy, University of Georgia, Athens 30602-2352, USA.
Rapid Commun Mass Spectrom. 1998;12(13):890-4. doi: 10.1002/(SICI)1097-0231(19980715)12:13<890::AID-RCM251>3.0.CO;2-X.
Four commonly used barbiturates (phenobarbital, butalbital, pentobarbital and thiopental) were analyzed in human serum using supercritical fluid extraction (SFE) and negative ionization LC/ESI-MS/MS. Barbital was used as the internal standard. Carbon dioxide SFE was performed at 40 degrees C and 500 atm, with a total extraction time of 35 min. The analytes were collected off-line in a liquid trap containing absolute methanol. Samples were then concentrated by vacuum centrifugation. The high performance liquid chromatography separation utilized gradient elution with a total analysis time of 21 min. The precursor and major product ions for the four barbiturates were monitored on a triple quadrupole mass spectrometer with negative ion electrospray ionization (ESI) in the multiple reaction monitoring mode as follows: (1) thiopental (m/z 241.20-->58.00), (2) phenobarbital (m/z 231.10-->188.0), (3) pentobarbital (m/z 225.10-->181.90) and (4) butalbital (m/z 222.80-->179.90). In the case of phenobarbital, pentobarbital and butalbital, the most abundant product ion arises from the loss of 43 u (HCNO loss). However, in the case of thiopental, the most abundant product ion was observed at m/z 58.0 (the [M-183]-ion, or NCS-). Mechanisms for the formation of the collision induced dissociation reaction products of these barbiturates are proposed.
采用超临界流体萃取(SFE)和负离子液相色谱/电喷雾串联质谱(LC/ESI-MS/MS)法分析人血清中的四种常用巴比妥酸盐(苯巴比妥、布他比妥、戊巴比妥和硫喷妥钠)。以巴比妥作为内标。二氧化碳超临界流体萃取在40℃和500个大气压下进行,总萃取时间为35分钟。分析物离线收集于含有无水甲醇的液体捕集阱中。然后通过真空离心浓缩样品。高效液相色谱分离采用梯度洗脱,总分析时间为21分钟。在多反应监测模式下,使用负离子电喷雾电离(ESI)的三重四极杆质谱仪监测四种巴比妥酸盐的前体离子和主要产物离子,具体如下:(1)硫喷妥钠(m/z 241.20→58.00),(2)苯巴比妥(m/z 231.10→188.0),(3)戊巴比妥(m/z 225.10→181.90)和(4)布他比妥(m/z 222.80→179.90)。对于苯巴比妥、戊巴比妥和布他比妥,最丰富的产物离子是由于失去43 u(HCNO损失)产生的。然而,对于硫喷妥钠,最丰富的产物离子出现在m/z 58.0([M - 183]-离子,即NCS-)处。文中提出了这些巴比妥酸盐碰撞诱导解离反应产物的形成机制。