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首页> 外文期刊>Nanotoxicology >Oral, short-term exposure to titanium dioxide nanoparticles in Sprague-Dawley rat: focus on reproductive and endocrine systems and spleen
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Oral, short-term exposure to titanium dioxide nanoparticles in Sprague-Dawley rat: focus on reproductive and endocrine systems and spleen

机译:Sprague-Dawley大鼠经口短期暴露于二氧化钛纳米颗粒:关注生殖和内分泌系统及脾脏

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The study explored possible reproductive and endocrine effects of short-term (5 days) oral exposure to anatase TiO2 nanoparticles (0, 1, 2 mg/kg body weight per day) in rat. Nanoparticles were characterised by scanning electron microscopy (SEM) and transmission electron microscopy, and their presence in spleen, a target organ for bioaccumulation, was investigated by single-particle inductively coupled plasma mass spectrometry and SEM/energy-dispersive X-ray. Analyses included serum hormone levels (testosterone, 17-b-estradiol and triiodothyronine) and histopathology of thyroid, adrenals, ovary, uterus, testis and spleen. Increased total Ti tissue levels were found in spleen and ovaries. Sex-related histological alterations were observed at both dose levels in thyroid, adrenal medulla, adrenal cortex (females) and ovarian granulosa, without general toxicity. Altered thyroid function was indicated by reduced T3 (males). Testosterone levels increased in high-dose males and decreased in females. In the spleen of treated animals TiO2 aggregates and increased white pulp (high-dose females) were detected, even though Ti tissue levels remained low reflecting the low doses and the short exposure time. Our findings prompt to comprehensively assess endocrine and reproductive effects in the safety evaluation of nanomaterials.
机译:该研究探讨了大鼠短期(5天)口服锐钛矿型TiO2纳米颗粒(每天0、1、2 mg / kg体重)可能产生的生殖和内分泌作用。通过扫描电子显微镜(SEM)和透射电子显微镜对纳米颗粒进行表征,并通过单颗粒电感耦合等离子体质谱法和SEM /能量分散X射线研究了它们在脾脏中的存在,脾脏是生物蓄积的目标器官。分析包括血清激素水平(睾丸激素,17-b-雌二醇和三碘甲腺嘌呤)以及甲状腺,肾上腺,卵巢,子宫,睾丸和脾脏的组织病理学。在脾脏和卵巢中发现总的Ti组织水平增加。在甲状腺,肾上腺髓质,肾上腺皮质(女性)和卵巢颗粒中两种剂量水平均观察到性别相关的组织学改变,但无一般毒性。 T3降低(男性)表明甲状腺功能改变。高剂量男性睾丸激素水平升高,女性降低。在处理过的动物的脾脏中,尽管钛组织水平仍然很低,这反映了低剂量和短暴露时间,但仍检测到了TiO2聚集和增加的白浆(高剂量雌性)。我们的发现促使我们在纳米材料的安全性评估中全面评估内分泌和生殖作用。

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