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Cerium dioxide nanoparticles affect in vitro fertilization in mice

机译:二氧化铈纳米颗粒影响小鼠的体外受精

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摘要

Due to their catalytic and oxidative properties, cerium dioxide nanoparticles (CeO(2)NPs) are widely used as diesel additive or as promising therapy in cancerology; yet, scarce data are available on their toxicity, and none on their reproductive toxicity. We showed a significant decrease of fertilization rate, assessed on 1272 oocytes, during in vitro fertilization (IVF) carried out in culture medium containing CeO2NP at very low concentration (0.01mg.l(-1)). We also showed significant DNA damage induced in vitro by CeO2NP on mouse spermatozoa and oocytes at 0.01mg.l(-1) using Comet assay. Transmission Electron Microscopy did not detect any nanoparticles in the IVF samples at 0.01mg.l(-1), but showed, at high concentration (100mg.l(-1)), their endocytosis by the cumulus cells surrounding oocytes and their accumulation along spermatozoa plasma membranes and oocytes zona pellucida. We did not observe any nanoparticles in the cytoplasm of spermatozoa, oocytes or embryos. This study demonstrates for the first time the impact of CeO2NP on in vitro fertilization, as well as their genotoxicity on mouse spermatozoa and oocytes, at low nanoparticle concentration exposure. Decreased fertilization rates may result from: (1) CeO2NP's genotoxicity on gametes; (2) a mechanical effect, disrupting gamete interaction and (3) oxidative stress induced by CeO2NP. These results add new and important insights with regard to the reproductive toxicity of nanomaterials requesting urgent evaluation, and support several publications on metal nanoparticles reprotoxicity. Our data highlight the need for in vivo studies after low-dose exposure.
机译:由于其催化和氧化特性,二氧化铈纳米颗粒(CeO(2)NPs)被广泛用作柴油添加剂或在癌症学中有希望的疗法;但是,尚缺乏关于其毒性的数据,也没有关于其生殖毒性的数据。我们显示,在含极低浓度CeO2NP(0.01mg.l(-1))的培养基中进行体外受精(IVF)时,对1272个卵母细胞进行了评估,受精率显着降低。我们还显示,使用彗星试验,CeO2NP在0.01mg.l(-1)处对小鼠精子和卵母细胞产生了明显的DNA损伤。透射电子显微镜未检测到浓度为0.01mg.l(-1)的IVF样品中的任何纳米颗粒,但显示出高浓度(100mg.l(-1))时,它们被卵母细胞周围的卵丘细胞内吞并沿其积累精子质膜和卵母细胞透明带。我们没有在精子,卵母细胞或胚胎的细胞质中观察到任何纳米颗粒。这项研究首次证明了在低纳米颗粒浓度下,CeO2NP对体外受精的影响以及它们对小鼠精子和卵母细胞的遗传毒性。受精率下降可能是由于:(1)CeO2NP对配子的遗传毒性; (2)机械作用,破坏配子相互作用和(3)CeO2NP诱导的氧化应激。这些结果为要求紧急评估的纳米材料的生殖毒性提供了新的重要见解,并支持了有关金属纳米颗粒生殖毒性的若干出版物。我们的数据强调了低剂量暴露后体内研究的必要性。

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