Szirmai M, Beck O, Stephansson N, Halldin M M
Division of Pharmacognosy, Uppsala University, Sweden.
J Anal Toxicol. 1996 Nov-Dec;20(7):573-8. doi: 10.1093/jat/20.7.573.
The major urinary metabolite of delta 1-tetrahydrocannabinol (delta 1-THC) (1), delta 1-THC-7-oic acid (2), has been extensively studied for several purposes, including testing in the workplace for drug abuse. Immunoassays in combination with more specific methods such as gas chromatography-mass spectrometry (GC-MS), are commonly used for verification of positive results in the screening. Two additional and recently synthesized acidic metabolites of 1, 4",5"-bisnor-delta 1-THC-7,3"-dioic acid (3) and 4"-hydroxy-delta 1-THC-7-oic acid (4), were studied to widen the scientific basis in the analysis. Five different derivatives were examined using GC-MS. In addition, a new deuterated internal standard for 2, [2H10]-2, was evaluated. According to our results, suitable derivatives of 2, 3, and 4, according to chromatographic properties, are the methyl ester/silyl ether (procedure a), the methyl ester/trifluoroacetate (procedure b), or the silyl ester/silyl ether (procedure c). The estimated recoveries of [2H5]-3 and [2H6]-4 using liquid-liquid extraction were 24% and 50%, respectively. The properties of [2H10]-2 as internal standard were equivalent to those of [2H9]-2 and, under the conditions used, did not appear to give rise to a significantly higher chromatographic resolution from that of 2. However, [2H10]-2 produces ions at different mass numbers, which makes it useful as a complement to the existing deuterated internal standards of 2.
δ1-四氢大麻酚(δ1-THC)(1)的主要尿液代谢物δ1-THC-7-酸(2)已出于多种目的进行了广泛研究,包括在工作场所进行药物滥用检测。免疫测定法与更具特异性的方法(如气相色谱-质谱联用仪(GC-MS))相结合,常用于筛查中阳性结果的验证。为拓宽分析的科学基础,对另外两种最近合成的1, 4",5"-双去甲-δ1-THC-7,3"-二酸(3)和4"-羟基-δ1-THC-7-酸(4)的酸性代谢物进行了研究。使用GC-MS检测了五种不同的衍生物。此外,还评估了一种用于2的新型氘代内标物[2H10]-2。根据我们的结果,根据色谱特性,2、3和4的合适衍生物为甲酯/硅烷基醚(方法a)、甲酯/三氟乙酸酯(方法b)或硅烷基酯/硅烷基醚(方法c)。采用液-液萃取法时,[2H5]-3和[2H6]-4的估计回收率分别为24%和50%。[2H10]-2作为内标物的特性与[2H9]-2相当,在所使用的条件下,与2相比,其色谱分辨率似乎没有显著提高。然而,[2H10]-2会产生不同质量数的离子,这使其可作为2现有氘代内标物的补充。