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Stability of heroin 6-monoacetylmorphine and morphine in biological samples and validation of an LC–MS assay for delayed analyses of pharmacokinetic samples in rats

机译:在生物样品中的海洛因6-单乙酰常规和吗啡的稳定性和LC-MS测定的验证用于延迟大鼠药代动力学样本的延迟分析

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摘要

Degradation of heroin to 6-monoacetylmorphine (6-MAM) and then morphine happens rapidly in vivo and in vitro. The rates of heroin and 6-MAM degradation depend on the type of biological samples, and the duration and conditions of storage. In order to optimize conditions for measuring heroin and its metabolites in samples collected for pharmacokinetic studies in rats, we investigated the time course of degradation of heroin, 6-MAM, and morphine in four biological matrices: rat blood, rat brain homogenate, bovine serum, and human plasma under various conditions. Analyte concentrations were measured by LC-MS. The goal was to identify conditions that allow maximum flexibility in scheduling sample collection and analysis, as well as gain more information on the stability of heroin in blood and tissue samples. A solid-phase extraction method with ice-cold solvents, sodium fluoride (NaF) and a low pH (3.0) maintained sample stability. Quality controls were within 94.0–105% of the target value. Variability was 4.0–8.9% for all analytes within the range of 5–200 ng/mL for heroin, 5–1000 ng/mL for 6-MAM, and 10–200 ng/mL for morphine. Heroin degradation to 6-MAM was faster in rat whole blood than in plasma, and faster in rat plasma than in rat brain homogenate. Maintaining NaF at 4 mg/mL throughout processing enhanced stability; higher NaF concentrations added to whole blood caused hemolysis. Samples processed through solid phase extraction and stored as dried pellets at 80°C constituted the most stable environment for heroin, and was superior to the storing of samples in solution prior to or after extraction. Nevertheless, post-extraction heroin and 6-MAM levels declined by 6.7–8.3% over one week in rat plasma under these conditions, and by <1–4.7% in bovine serum or human plasma.
机译:海洛因在体内和体外迅速降解为6-一乙酰基吗啡(6-MAM),然后发生吗啡。海洛因和6-MAM降解的速率取决于生物样品的类型以及储存时间和条件。为了优化在大鼠药代动力学研究中收集的样品中测量海洛因及其代谢物的条件,我们调查了四种生物基质中海洛因,6-MAM和吗啡的降解时间过程:大鼠血液,大鼠脑匀浆和牛血清以及各种条件下的人体血浆。通过LC-MS测量分析物浓度。目的是确定可在安排样品收集和分析日程上提供最大灵活性的条件,并获得有关血液和组织样品中海洛因稳定性的更多信息。使用冰冷的溶剂,氟化钠(NaF)和低pH(3.0)的固相萃取方法可保持样品的稳定性。质量控制在目标值的94.0–105%之内。海洛因在5-200 ng / mL,6-MAM在5-1000 ng / mL和吗啡在10-200 ng / mL范围内的所有分析物的变异性为4.0-8.9%。大鼠全血中海洛因降解为6-MAM的速度比血浆中要快,大鼠血浆中的海洛因要比大鼠脑匀浆中的更快。在整个加工过程中将NaF维持在4 mg / mL可以增强稳定性;全血中添加较高的NaF浓度会导致溶血。通过固相萃取处理并作为干燥小丸保存在80°C的样品构成了海洛因最稳定的环境,并且优于在萃取之前或之后在溶液中储存样品。尽管如此,在这种情况下,大鼠血浆提取海洛因和6-MAM的水平在一周内下降了6.7–8.3%,在牛血清或人血浆中下降了<1-4.7%。

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