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首页> 外文期刊>Environmental Science & Technology >Degradation off Synthetic Androgens 17α- and 17β-Trenbolone and Trendione in Agricultural Soils
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Degradation off Synthetic Androgens 17α- and 17β-Trenbolone and Trendione in Agricultural Soils

机译:农业土壤中雄激素17α-和17β-群勃龙的合成及趋势

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17β-trenbolone acetate (TBA) is a synthetic androgenic steroid hormone administered as a subcutaneous implant for growth promotion in beef cattle. TBA is converted metabolically to primarily 17α-trenbolone and trendione, and excreted in manure from implanted cattle. To predict the persistence of synthetic androgens once land-applied, aerobic degradation rates in two contrasting agricultural soil types (clay loam and a sandy soil) of both trenbolone isomers (17α and 17β) and their primary metabolite trendione were measured and isomer interconversion was assessed. The impact of manure application was also evaluated in the clay loam soil. A pseudo first-order exponential decay model was derived assuming irreversible transformation and no impact of sorption on availability for degradation. The model generally resulted in good fits to the data. Both isomers degraded to trendione in a similar manner with half-lives (t_(1/2)) on the order of a few hours to 0.5 days at applied concentrations of ≤1 mg/kg. Similar degradation rates were observed in the presence and absence of manure applied at rates typical for land-application of cattle manure. Trenbolone degradation was concentration-dependent with degradation rates decreasing with increasing applied concentrations. Trendione, whether applied directly or produced from trenbolone, persisted longer than trenbolone with t_(1/2) values of 1 to 4 days. A small amount (1.5%) of conversion of trendione back to 17β-trenbolone was observed during aerobic incubation regardless of the applied concentration. A small amount of 17α-isomer also converted back to 17β-trenbolone, presumably through trendione. In autoclaved soils, no degradation of 17α- or 17β-trenbolone was observed during the first 3 days, and trendione degradation was relatively small compared to a microbially active soil.
机译:17β-群勃龙醋酸酯(TBA)是一种合成的雄激素类固醇激素,可作为皮下植入物施用,以促进肉牛的生长。 TBA在代谢上主要转化为17α-群勃龙和趋势,并从植入的牛粪中排泄。为了预测合成雄激素在土地上施用后的持久性,测量了两种群勃龙异构体(17α和17β)及其主要代谢物趋向性在两种相反的农业土壤类型(粘土壤土和沙土)中的需氧降解率,并评估了异构体相互转化。还评估了在壤土上施用肥料的影响。假定不可逆转换且吸附对降解的可用性没有影响,则得出伪一阶指数衰减模型。该模型通常可以很好地拟合数据。在≤1mg / kg的应用浓度下,两种异构体的半衰期(t_(1/2))都以类似的方式降解为趋向蛋白,数小时至0.5天。在有和没有施用粪肥的情况下,观察到相似的降解率,而粪肥的施用率通常是牛粪在土地上施用的典型速率。群勃龙降解是浓度依赖性的,降解速率随施加浓度的增加而降低。趋势蛋白,无论是直接施用还是由群勃龙生产,其持续时间都比群勃龙更长,t_(1/2)值为1至4天。在有氧孵育过程中,无论使用哪种浓度,都可以观察到少量的趋势蛋白转化为17β-群勃龙的趋势(1.5%)。少量的17α-异构体也可能会通过Trende转变回17β-群勃龙。在高压灭菌的土壤中,前3天未观察到17α-或17β-群勃龙的降解,与微生物活性土壤相比,趋势降解相对较小。

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