首页> 外文学位 >Interpretation of Delta9-tetrahydrocannabinol (THC), 11-hydroxy-THC (11-OH-THC) & 11-nor-9-carboxy-THC (THCCOOH) concentrations in blood and urine of frequent cannabis users.
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Interpretation of Delta9-tetrahydrocannabinol (THC), 11-hydroxy-THC (11-OH-THC) & 11-nor-9-carboxy-THC (THCCOOH) concentrations in blood and urine of frequent cannabis users.

机译:经常吸食大麻者的血液和尿中Delta9-四氢大麻酚(THC),11-羟基-THC(11-OH-THC)和11-nor-9-羧基-THC(THCCOOH)浓度的解释。

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摘要

Background. Whole blood, plasma and urine Delta9-tetrahydrocannabinol (THC), 11-hydroxy-THC (11-OH-THC) and Delta9-carboxy-THC (THCCOOH) concentrations document cannabis exposure. Clinical data generally are derived from specimens obtained after single THC administrations. Few data are available from daily cannabis smokers. Moreover, predicting new cannabis use from urinary creatinine-normalized (CN) THCCOOH concentrations in two specimens has, until now, only been possible for occasional users. Methods. Specimens were collected from chronic daily cannabis smokers enrolled in multiple clinical protocols. Whole blood and plasma were analyzed by two-dimensional gas-chromatography/mass-spectrometry (2DGCMS). Analysis of fortified samples stored at -20C, 4C and room temperature up to two weeks evaluated cannabinoid stability. Plasma was collected multiple times daily during eight days of escalating total daily oral THC doses up to 120mg/day to evaluate free and glucuronidated plasma cannabinoids. Models for predicting new cannabis use were developed and validated from CN THCCOOH concentrations in urine (N=2,377) collected during inpatient and outpatient studies. RESULTS: Cannabinoid concentration decreases >20% were observed in fortified samples stored at -20C, room temperature, but not 4C. THC intra- and inter-subject whole blood/plasma ratio variances were large (0.14 and 0.09 for THC, 0.14 and 0.28 for THCCOOH). Escalating daily oral THC yielded 11-OH-THC and THCCOOH, but not THC, accumulation in plasma. THC concentrations remained >1ng/mL, 19.5h after admission and 22.5h after the last dose. Models for predicting new cannabis use in daily cannabis smokers (>123,000 comparisons) were developed at four prediction probabilities (80, 90, 95 and 99%). Rules were devised to account for high %predictions, explained by peak concentrations occurring up to 40h after unit entry, and CN THCCOOH concentrations >200ng/mg up to 14d after unit entry in some participants. CONCLUSIONS: 2DGCMS with cryofocusing reliably quantified cannabinoids in whole blood and plasma. It is unknown whether instability (>20% losses) would occur in similarly stored authentic specimens. Plasma cannabinoids during escalating daily oral THC improves interpretation of free and glucuronidated concentrations achieved during daily THC administration. The urinary model will be extensively employed in multiple drug testing programs. In total, these data are valuable for interpreting whole blood, plasma and urine cannabinoid concentrations in chronic, daily cannabis users.
机译:背景。全血,血浆和尿液中的Delta9-四氢大麻酚(THC),11-羟基-THC(11-OH-THC)和Delta9-羧基-THC(THCCOOH)浓度记录了大麻的暴露。临床数据通常来自单次THC给药后获得的标本。每日大麻吸烟者的数据很少。此外,到目前为止,仅通过偶尔的使用者才可以从两个样本中的尿肌酐标准化(CN)THCCOOH浓度预测新大麻的使用。方法。从参加多种临床方案的慢性每日吸烟者中收集标本。用二维气相色谱/质谱(2DGCMS)分析全血和血浆。在-20°C,4°C和室温下保存最多两周的强化样品的分析评估了大麻素的稳定性。在将每日口服THC总剂量提高到每天120mg的八天内,每天多次收集血浆,以评估游离和葡萄糖醛酸化的血浆大麻素。根据住院和门诊研究期间收集的尿液中CN THCCOOH浓度(N = 2,377),开发并验证了预测新大麻使用的模型。结果:在-20℃,室温而不是4℃下储存的强化样品中,大麻素浓度降低> 20%。 THC受试者内和受试者间全血/血浆比率差异较大(THC为0.14和0.09,THCCOOH为0.14和0.28)。每天口服THC升高,会在血浆中产生11-OH-THC和THCCOOH,但没有THC积累。入院后19.5小时和最后一次给药后22.5小时,THC浓度保持> 1ng / mL。以四种预测概率(80%,90%,95%和99%)开发了预测每日吸烟者中新大麻使用量的模型(比较> 123,000)。设计规则以解释高百分比预测,这是由一些参与者在进入单位后40h出现峰值浓度和进入单位后14d时CN THCCOOH浓度> 200ng / mg所解释的。结论:2DGCMS和冷冻聚焦技术能可靠地定量全血和血浆中的大麻素。未知在类似存放的真实样本中是否会发生不稳定(损失超过20%)。每日口服THC逐步升高期间的血浆大麻素可改善对每日THC给药期间获得的游离和葡萄糖醛酸化浓度的解释。泌尿模型将在多种药物测试程序中广泛采用。总的来说,这些数据对于解释长期每天使用大麻的人的全血,血浆和尿中的大麻素浓度是有价值的。

著录项

  • 作者

    Schwilke, Eugene W.;

  • 作者单位

    University of Maryland, Baltimore.;

  • 授予单位 University of Maryland, Baltimore.;
  • 学科 Health Sciences Toxicology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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