Pan Jiongwei, Song Qi, Shi Haihong, King Melissa, Junga Heiko, Zhou Shaolian, Naidong Weng
Covance Bioanalytical Chemistry, Madison, WI 53704, USA.
Rapid Commun Mass Spectrom. 2004;18(21):2549-57. doi: 10.1002/rcm.1656.
A highly sensitive bioanalytical method based on a simple liquid/liquid extraction and hydrophilic interaction liquid chromatography with tandem mass spectrometry (HILIC/MS/MS) analysis has been developed, validated and transferred for the determination of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanol (NNAL), a tobacco-specific nitrosamine metabolite. Deuterated NNAL (NNAL-d(4)) was synthesized and used as the internal standard. This method can be used for the analysis of free and total NNAL (free NNAL plus NNAL-gluc) in K(3)-EDTA human plasma. Free NNAL and NNAL-d(4) are extracted from human plasma by liquid/liquid extraction. To analyze for total NNAL and the internal standard, a separate aliquot of the K(3)-EDTA human plasma is treated with beta-glucuronidase to deconjugate the NNAL-gluc; the total NNAL and internal standard are then extracted using liquid/liquid extraction. After drying down under nitrogen, the residue is reconstituted with acetonitrile and analyzed using positive ion electrospray and HILIC/MS/MS at a flow rate of 1.0 mL/min. The chromatographic run time is 1.0 min per injection, with retention time for both NNAL and NNAL-d(4) of 0.75 min with a capacity factor (k') of 2. The standard curve range for this assay is from 5.00-1000 pg/mL for both free and total NNAL, using a total plasma sample volume of 1.0 mL. The interday precision and accuracy of the quality control (QC) samples demonstrated <7.6% relative standard deviation (RSD) and <3.3% relative error (RE) for free NNAL. For total NNAL, the interday precision and accuracy of the QC samples demonstrated <11.7% RSD and <2.8% RE. Optimization of enzyme hydrolysis of NNAL-gluc is discussed in detail. The overall recoveries for free and total NNAL and IS were 68.2 and 71.5% (free) and 70.7 and 65.5% (total). No adverse matrix effects were noticed for this assay.
已开发、验证并转移了一种基于简单液/液萃取和亲水作用液相色谱-串联质谱(HILIC/MS/MS)分析的高灵敏度生物分析方法,用于测定烟草特异性亚硝胺代谢物4-(甲基亚硝胺基)-1-(3-吡啶基)-1-丁醇(NNAL)。合成了氘代NNAL(NNAL-d(4))并用作内标。该方法可用于分析K(3)-EDTA人血浆中的游离NNAL和总NNAL(游离NNAL加NNAL-葡糖苷)。游离NNAL和NNAL-d(4)通过液/液萃取从人血浆中提取。为了分析总NNAL和内标,取一份单独的K(3)-EDTA人血浆等分试样,用β-葡萄糖醛酸酶处理以使NNAL-葡糖苷解偶联;然后使用液/液萃取提取总NNAL和内标。在氮气下吹干后,残留物用乙腈复溶,并使用正离子电喷雾和HILIC/MS/MS以1.0 mL/min的流速进行分析。每次进样的色谱运行时间为1.0分钟,NNAL和NNAL-d(4)的保留时间均为0.75分钟,容量因子(k')为2。该测定的标准曲线范围为游离和总NNAL均为5.00 - 1000 pg/mL,使用的血浆样品总体积为1.0 mL。质量控制(QC)样品的日间精密度和准确度表明,游离NNAL的相对标准偏差(RSD)<7.6%,相对误差(RE)<3.3%。对于总NNAL,QC样品的日间精密度和准确度表明RSD<11.7%,RE<2.8%。详细讨论了NNAL-葡糖苷酶水解的优化。游离和总NNAL及内标的总体回收率分别为68.2%和71.5%(游离)以及70.7%和65.5%(总)。该测定未观察到不利的基质效应。