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飞行时间二次离子质谱成像显示十溴二苯醚残留在暴露大鼠的卵巢和肾上腺中的特定定位。

Time-of-flight secondary ion mass spectrometry imaging demonstrates the specific localization of deca-bromo-diphenyl-ether residues in the ovaries and adrenal glands of exposed rats.

机构信息

Centre de recherche de Gif, Institut de Chimie des Substances Naturelles, CNRS, Gif-sur-Yvette, France.

出版信息

J Am Soc Mass Spectrom. 2010 Nov;21(11):1836-45. doi: 10.1016/j.jasms.2010.06.019. Epub 2010 Jul 7.

Abstract

Deca-bromo-diphenyl ether (DBDE) is one of the most efficient brominated flame retardant (BFR) available on the market. We recently demonstrated that when administered to female rat by oral route, DBDE is efficiently absorbed, with the highest residual concentrations found in two endocrine glands, namely the adrenal glands and the ovaries. Time-of-flight secondary ion mass spectrometry (TOF-SIMS) imaging, a technique usually used for the study of endogenous compounds, was applied for the first time to a persistent organic pollutant, allowing to detect and to precisely localize DBDE residues in these two target tissues. The detection of the bromide ion ((81)Br isotope) by TOF-SIMS mass spectrometry imaging allowed us to demonstrate a marked cortical tropism of DBDE residues for the adrenal glands in female rats dosed per os 2 mg·kg(-1) DBDE, daily, over 96 h. In ovaries, DBDE residues were found to be concentrated in spots corresponding to part of the corpora lutea. Hepatic residues of DBDE were found to be homogeneously distributed. Due to the intrinsic toxicity of DBDE, its accumulation in the adrenal glands and the ovaries may be connected to the mechanisms of actions by which DBDE could trigger endocrine disruption in mammals.

摘要

十溴二苯醚 (DBDE) 是市场上最有效的溴化阻燃剂 (BFR) 之一。我们最近的研究表明,当 DBDE 通过口服途径给予雌性大鼠时,其能够被高效吸收,在两种内分泌腺(即肾上腺和卵巢)中发现了最高的残留浓度。飞行时间二次离子质谱成像(TOF-SIMS)成像技术,通常用于内源性化合物的研究,首次应用于持久性有机污染物,能够检测和精确定位这两种靶组织中的 DBDE 残留。TOF-SIMS 质谱成像中溴化物离子((81)Br 同位素)的检测表明,在口服给予 2mg·kg(-1) DBDE 后,DBDE 残留在雌性大鼠的肾上腺中有明显的皮质亲向性,每日一次,持续 96 小时。在卵巢中,DBDE 残留被发现集中在与部分黄体对应的斑点中。DBDE 在肝脏中的残留呈均匀分布。由于 DBDE 的固有毒性,其在肾上腺和卵巢中的积累可能与 DBDE 引发哺乳动物内分泌紊乱的作用机制有关。

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