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Potential of GHB phase-II-metabolites to complement current approaches in GHB post administration detection

机译:GHB期 - II代谢物的潜力,以补充GHB后给药检测中的电流方法

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Recently, phase-II-metabolites of gamma-hydroxybutyric acid (GHB), namely GHB-beta-O-glucuronide and GHB-4-sulfate, were implemented in the scope of drug testing methods The clearance of GHB from the circulation is extremely fast due to its incorporation into the metabolic pathway of the citrate cycle. The elimination half-life of GHB from blood was reported to be dose dependent between 30 and 50 min resulting in narrow detection windows of less than 12 h after illicit administration or cases of drug facilitated sexual assault regardless of the biological matrix used. As sulfated metabolites tend to show prolonged half-lives and slower elimination kinetics compared to unmodified or glucuronidated drugs, the potential of GHB-4-sulfate in prolonging the detection of GHB administration was assessed. Its urinary concentrations were determined in n = 100 samples from athletes and n = 50 samples from sport students, and the resulting data were used to calculate a preliminary reference population-based threshold for urinary GHB-sulfate concentration. The threshold was then compared to concentrations found in post-administration urine samples collected from 3 volunteers who administered GHB within the setting of a clinical trial. Due to the large inter-individual variability of concentrations found in the reference population, GHB-4-sulfate itself was not suitable to prolong the detection times for GHB applications, even when specific gravity-corrected values were used.
机译:最近,在药物检测方法的范围内实施了γ-羟基丁酸(GHB),即GHB-β-O-葡糖醛酸和GHB-4-硫酸酯的相二代谢物,即GHB-β-O-葡糖醛酸和GHB-4-硫酸盐。来自循环的GHB的间隙非常快由于其掺入柠檬酸盐循环的代谢途径。据报道,在非法给药或药物促进性侵犯的情况下,据报道,从血液中依赖于30%至50分钟的剂量依赖于30%至50分钟的剂量窄检测窗。由于硫酸化代谢物倾向于显示延长的半衰期和较慢的消除动力学与未修饰或葡糖酸化药物相比,评估了GHB-4-硫酸盐的潜力。评估了GHB-4-硫酸盐的潜力。其尿浓度在N = 100个来自运动员的样品中测定,N = 50个来自体育学生的样本,并且所得到的数据用于计算尿基硫酸盐浓度的基于初步参考群体的阈值。然后将阈值与在临床试验的设置内给予的3志愿者收集的给药后尿液中发现的浓度进行比较。由于参考群中发现的浓度的较大的间单个可变异,即使使用特异性重力校正值,GHB-4-硫酸盐本身不适合延长GHB应用的检测时间。

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