首页> 美国卫生研究院文献>Journal of Analytical Toxicology >Determination of ∆-9-Tetrahydrocannabinol (THC) 11-hydroxy-THC 11-nor-9-carboxy-THC and Cannabidiol in Human Plasma using Gas Chromatography–Tandem Mass Spectrometry
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Determination of ∆-9-Tetrahydrocannabinol (THC) 11-hydroxy-THC 11-nor-9-carboxy-THC and Cannabidiol in Human Plasma using Gas Chromatography–Tandem Mass Spectrometry

机译:气相色谱-串联质谱法测定人血浆中的Δ-9-四氢大麻酚(THC)11-羟基-THC11-nor-9-羧基-THC和大麻二酚

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摘要

Two marijuana compounds of particular medical interest are delta-9-tetrahydrocannabinol (THC) and cannabidiol (CBD). A gas chromatography–tandem mass spectrometry (GC–MS-MS) method was developed to test for CBD, THC, hydroxy-THC (OH-THC) and carboxy-THC (COOH-THC) in human plasma. Calibrators (THC and OH-THC, 0.1 to 100; CBD, 0.25 to 100; COOH-THC, 0.5–500 ng/mL) and controls (0.3, 5 and 80 ng/mL, except COOH-THC at 1.5, 25 and 400 ng/mL) were prepared in blank matrix. Deuterated (d3) internal standards were added to 1-mL samples. Preparation involved acetonitrile precipitation, liquid–liquid extraction (hexane:ethyl acetate, 9:1), and MSTFA derivatization. An Agilent 7890 A GC was interfaced with an Agilent 7000 MS Triple Quadrupole. Selected reaction monitoring was employed. Blood samples were provided from a marijuana smoking study (two participants) and a CBD ingestion study (eight participants). Three analytes with the same transitions (THC, OH-THC and COOH-THC) were chromatographically separated. Matrix selectivity studies showed endogenous chromatographic peak area ratios (PAR) at the analyte retention times were <20% of the analyte limit of quantitation PAR. The intra-assay accuracy ranged from 83.5% to 118% of target and the intra-run imprecision ranged from 2.0% to 19.1%. The inter-assay accuracy ranged from 90.3% to 104% of target and the inter-run imprecision ranged from 6.5% to 12.0%. Stability was established for 25 hours at room temperature, 207 days at −20°C, after three freeze-thaw cycles and for 26 days for rederivatized processed samples. After smoking marijuana predictable concentrations of THC, OH-THC and COOH-THC were seen; low concentrations of CBD were detected at early time points. In moderate users who had not smoked for at least 9 hours before ingesting an 800 mg oral dose of CBD, the method was sensitive enough to follow residual concentrations of THC and OH-THC; sustained COOH-THC concentrations over 50 ng/mL validated its higher analytical range.
机译:两种具有特别医学意义的大麻化合物是delta-9-四氢大麻酚(THC)和大麻二酚(CBD)。气相色谱-串联质谱(GC-MS-MS)方法被开发用于测试人血浆中的CBD,THC,羟基-THC(OH-THC)和羧基-THC(COOH-THC)。校准品(THC和OH-THC,0.1至100; CBD,0.25至100; COOH-THC,0.5–500 ng / mL)和对照品(0.3、5和80 ng / mL,但COOH-THC分别为1.5、25和在空白基质中制备400 ng / mL)。氘代(d3)内标添加到1-mL样品中。制备涉及乙腈沉淀,液-液萃取(己烷:乙酸乙酯,9:1)和MSTFA衍生化。将Agilent 7890 A GC与Agilent 7000 MS三重四极杆连接。使用选择的反应监测。从大麻吸烟研究(两名参与者)和CBD摄入研究(八名参与者)提供了血液样本。色谱分离了三种具有相同转变的分析物(THC,OH-THC和COOH-THC)。基质选择性研究表明,分析物保留时间的内源色谱峰面积比(PAR)小于PAR的分析物极限的20%。测定内准确度在目标的83.5%至118%之间,并且运行中不准确度在2.0%至19.1%之间。批间准确性介于目标的90.3%至104%之间,并且批间不准确性介于6.5%至12.0%之间。经过三个冻融循环后,在室温下建立了25小时的稳定度,在-20°C下建立了207天的稳定性,并且对于重新化处理的样品,建立了26天的稳定性。吸食大麻后,可观察到可预测的THC,OH-THC和COOH-THC浓度。在早期时间点检测到低浓度的CBD。在摄入800毫克口服CBD之前至少有9小时没有吸烟的中度使用者中,该方法足够灵敏,可以追踪残留的THC和OH-THC浓度。持续的COOH-THC浓度超过50 ng / mL证实了其较高的分析范围。

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