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Detectability of testosterone esters and estradiol benzoate in bovine hair and plasma following pour-on treatment

机译:灌注处理后牛毛和血浆中睾酮酯和苯甲酸雌二醇的可检测性

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The abuse of synthetic esters of natural steroids such as testosterone and estradiol in cattle fattening and sports is hard to detect via routine urine testing. The esters are rapidly hydrolysed in vivo into substances which are also endogenously present in urine. An interesting alternative can be provided by the analysis of the administered synthetic steroids themselves, i.e., the analysis of intact steroid esters in hair by liquid chromatography tandem mass spectrometry (LC/MS/MS). However, retrospective estimation of the application date following a non-compliant finding is hindered by the complexity of the kinetics of the incorporation of steroid esters in hair. In this study, the incorporation of intact steroid esters in hair following pour-on treatment has been studied and critically compared with results from intramuscular treatment. To this end animals were pour-on treated with a hormone cocktail containing testosterone cypionate, testosterone decanoate and estradiol benzoate in different carriers. The animals were either treated using injection and pour-on application once or three times having 1 week between treatments using injection and pour-on application. Animals were slaughtered from 10–12 weeks after the last treatment. Both hair and blood plasma samples were collected and analysed by LC/MS/MS. From the results, it is concluded that after single treatment the levels of steroid esters in hair drop to CCβ levels (5–20 μg/kg) after 5–7 weeks. When treatment is repeated two times, the CCβ levels are reached after 9–11 weeks. Furthermore, in plasma, no steroid esters were detected; not even at the low microgramme per litre level but—in contrast with the pour-on application—after i.m. injection, significant increase of 17β-testosterone and 17β-estradiol were observed. These observations suggest that transport of steroid esters after pour-on application is not only performed by blood but also by alternative fluids in the animal so probably the steroid esters are already hydrolysed and epimerized before entering the blood.
机译:通过常规尿液检测很难发现牛类育肥和运动中滥用天然类固醇的合成酯(例如睾丸激素和雌二醇)。酯在体内迅速水解成尿中也内源性存在的物质。可以通过分析所施用的合成类固醇本身来提供一种有趣的替代方法,即通过液相色谱串联质谱法(LC / MS / MS)分析头发中完整的类固醇酯。然而,由于在头发中掺入类固醇酯的动力学的复杂性,阻碍了在不符合要求的发现之后对施用日期的回顾性估计。在这项研究中,已经研究了泼水处理后头发中完整类固醇酯的掺入,并与肌肉内治疗的结果进行了严格比较。为此,将动物用荷尔蒙混合物倒入处理,所述荷尔蒙混合物在不同的载体中含有环丙酸睾丸酮,癸酸睾酮和苯甲酸雌二醇。使用注射和浇注施用对动物进行一次或三次治疗,在两次使用注射和浇注施用的治疗之间间隔1周。最后一次治疗后的10–12周将动物宰杀。收集头发和血浆样品,并通过LC / MS / MS进行分析。从结果可以得出结论,在单次治疗后,在5-7周后,头发中的类固醇酯水平降至CCβ水平(5-20​​μg/ kg)。如果重复治疗两次,则在9-11周后达到CCβ水平。此外,在血浆中未检测到甾类酯。甚至不是在低微克每升的水平上,而是与倒灌应用相反。注射后,观察到17β-睾丸激素和17β-雌二醇显着增加。这些观察结果表明,浇灌后类固醇酯的转运不仅通过血液进行,而且还通过动物体内的其他液体进行,因此类固醇酯很可能在进入血液之前已经被水解和游离。

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