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Persistence and fate of 17β-estradiol and testosterone in agricultural soils

机译:17β-雌二醇和睾丸激素在农业土壤中的持久性和命运

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摘要

Steroidal hormones are constantly released into the environment by man-made and natural sources. The goal of this study was to examine the persistence and fate of 17β-estradiol and testosterone, the two primary natural sex hormones. Incubation experiments were conducted under aerobic and anaerobic conditions using [4-~(14)C]-radiolabeled 17β-estradiol and testosterone. The results indicated that 6% of 17β-estradiol and 63% of testosterone could be mineralized to ~(14)CO_2 in native soils under aerobic conditions. In native soils under anaerobic conditions, 2% of testosterone and no 17β-estradiol was methanogenized to ~(14)CH_4. Essentially, no mineralization of either testosterone or 17β-estradiol to ~(14)CO_2 occurred in autoclaved soils under aerobic or anaerobic condition. Results also indicated that 17β-estradiol could be transformed to an unidentified polar compound through abiotic chemical processes; however, 17β-estradiol was only oxidized to estrone via biological processes. The TLC results also indicated that testosterone was degraded, not by physical-chemical processes but by biological processes. Results also indicated that the assumed risks of estrogenic hormones in the environment might be over-estimated due to the soil's humic substances, which can immobilize majority of estrogenic hormones, and thereby reduce their bioavailability and toxicity.
机译:类固醇激素是通过人造和天然来源不断释放到环境中的。这项研究的目的是检查两种主要的自然性激素17β-雌二醇和睾丸激素的持久性和命运。使用[4-〜(14)C]-放射性标记的17β-雌二醇和睾丸激素在有氧和厌氧条件下进行孵育实验。结果表明,在有氧条件下,天然土壤中有17%的17β-雌二醇和63%的睾丸激素可矿化为〜(14)CO_2。在厌氧条件下的天然土壤中,2%的睾丸激素和17β-雌二醇均未甲烷化成〜(14)CH_4。基本上,在需氧或厌氧条件下,高压灭菌的土壤中没有睾丸激素或17β-雌二醇矿化成〜(14)CO_2的现象。结果还表明17β-雌二醇可通过非生物化学过程转化为未知的极性化合物。然而,17β-雌二醇仅通过生物过程被氧化为雌酮。 TLC结果还表明,睾丸激素的降解不是通过物理化学过程,而是通过生物过程。结果还表明,由于土壤中的腐殖质可将大多数雌激素固定化,从而降低其生物利用度和毒性,因此可能高估了环境中雌激素的假定风险。

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