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睾酮暴露是否会显著改变海洋贻贝 Mytilus galloprovincialis 的内源性代谢?

Does exposure to testosterone significantly alter endogenous metabolism in the marine mussel Mytilus galloprovincialis?

机构信息

Environmental Chemistry Department, IDAEA-CSIC, Barcelona, Spain.

出版信息

Aquat Toxicol. 2010 Nov 15;100(4):313-20. doi: 10.1016/j.aquatox.2010.08.003. Epub 2010 Aug 19.

Abstract

Mussels (Mytilus galloprovincialis) were exposed to different concentrations of testosterone (T: 20, 200 and 2000ng/L) in a semi-static water regime (1-day dosing intervals) for up to 5 days in an attempt to see whether endogenous steroid levels and steroid metabolism were altered by exogenous exposure to testosterone. Whole tissue levels of total testosterone (free+esterified) sharply increased in a concentration-dependent manner, from 2ng/g in controls to 290ng/g in organisms exposed to the highest concentration. In contrast, levels of free testosterone were only significantly elevated at the high-exposure group (5-fold increase with respect to controls). Increased activity of palmitoyl-CoA:testosterone acyltransferase (ATAT) was detected in organisms exposed to the highest concentration of testosterone, while those exposed to low and medium concentrations showed significant alterations in their polyunsaturated fatty acid profiles. The obtained results suggest that esterification of the excess of T with fatty acids might act as a homeostatic mechanism to maintain endogenous levels of free T stable. Interestingly, a decrease in CYP3A-like activity was detected in T-exposed mussels together with a significant decrease in the metabolism of the androgen precursor androstenedione to dihydrotestosterone (5α-DHT). Overall, the work contributes to the better knowledge of androgen metabolism in mussels.

摘要

文蛤(Mytilus galloprovincialis)在半静态水培条件下(1 天给药间隔)暴露于不同浓度的睾酮(T:20、200 和 2000ng/L)中,持续 5 天,试图观察内源性类固醇水平和类固醇代谢是否因外源性睾酮暴露而改变。总睾酮(游离+酯化)的全组织水平呈浓度依赖性急剧增加,从对照组的 2ng/g 增加到暴露于最高浓度的生物体内的 290ng/g。相比之下,游离睾酮水平仅在高暴露组显著升高(与对照组相比增加了 5 倍)。在暴露于最高浓度睾酮的生物体内检测到棕榈酰辅酶 A:睾酮酰基转移酶(ATAT)的活性增加,而暴露于低浓度和中浓度的生物体内则显示出多不饱和脂肪酸谱的显著改变。研究结果表明,与脂肪酸酯化多余的 T 可能作为一种体内平衡机制,以维持游离 T 的内源性水平稳定。有趣的是,在暴露于 T 的贻贝类中检测到 CYP3A 样活性降低,以及雄激素前体雄烯二酮向二氢睾酮(5α-DHT)的代谢显著减少。总的来说,这项工作有助于更好地了解贻贝类中的雄激素代谢。

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