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Can nanomaterials induce reproductive toxicity in male mammals? A historical and critical review

机译:纳米材料可以诱导男性哺乳动物的生殖毒性吗? 历史和批评的评论

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摘要

The nanotechnology enabled the development of nanomaterials (NMs) with a variety of industrial, biomedical, and consumer applications. However, the mechanism of action (MoA) and toxicity of NMs remain unclear, especially in the male reproductive system. Thus, this study aimed to perform a bibliometric and systematic review of the literature on the toxic effects of different types of NMs on the male reproductive system and function in mammalian models. A series of 236 articles related to the in vitro and in vivo reproductive toxicity of NMs in mammalian models were analyzed. The data concerning the bioaccumulation, experimental conditions (types of NMs, species, cell lines, exposure period, and routes of exposure), and the MoA and toxicity of NMs were summarized and discussed. Results showed that this field of research began in 2005 and has experienced an exponential increase since 2012. Revised data confirmed that the NMs have the ability to cross the blood-testis barrier and bioaccumulate in several organs of the male reproductive system, such as testis, prostate, epididymis, and seminal vesicle. A similar MoA and toxicity were observed after in vitro and in vivo exposure to NMs. The NM reproductive toxicity was mainly related to ROS production, oxidative stress, DNA damage and apoptosis. In conclusion, the NM exposure induces bioaccumulation and toxic effects on male reproductive system of mammal models, confirming its potential risk to human and environmental health. The knowledge concerning the NM reproductive toxicity contributes to safety and sustainable use of nanotechnology.
机译:纳米技术使纳米材料(NMS)的开发具有各种工业,生物医学和消费者应用。然而,NMS的作用机制(MOA)和毒性仍然不清楚,特别是在雄性生殖系统中。因此,本研究旨在对文献进行对不同类型NMS对哺乳动物模型的雄性生殖系统的毒性作用的文献和系统审查。分析了与哺乳动物模型中的体外和体内繁殖毒性有关的236篇文章。关于生物积累,实验条件(NMS,物种,细胞系,暴露时段和曝光途径的类型的数据,并讨论了NMS的MOA和毒性。结果表明,这项研究领域于2005年开始,自2012年以来一直经历了指数增长。修订后的数据证实,NMS有能力在男性生殖系统的几个器官中穿过血液睾丸屏障和生物累积,例如睾丸,前列腺,附睾和精囊。在体外和体内接触NMS后观察到类似的MOA和毒性。 NM繁殖毒性主要与ROS生产,氧化应激,DNA损伤和凋亡有关。总之,NM暴露对哺乳动物模型的雄性生殖系统产生生物累积和毒性作用,证实了对人类和环境健康的潜在风险。关于NM生殖毒性的了解有助于安全和可持续利用纳米技术。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|144354.1-144354.33|共33页
  • 作者单位

    Laboratory of Physiology and Pharmacology of Reproduction Institute of Biological Sciences Federal University of Goias Goias Brazil Laboratory of Environmental Biotechnology and Ecotoxicology Institute of Tropical Pathology and Public Health Federal University of Goias Goias Brazil;

    Laboratory of Physiology and Pharmacology of Reproduction Institute of Biological Sciences Federal University of Goias Goias Brazil;

    Laboratory of Environmental Biotechnology and Ecotoxicology Institute of Tropical Pathology and Public Health Federal University of Goias Goias Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanomaterials; Reproductive toxicity; Male reproduction; Mammals; Testis; Sperm;

    机译:纳米材料;生殖毒性;男性繁殖;哺乳动物;睾丸;精子;

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