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首页> 外文期刊>Indian Journal of Occupational and Environmental Medicine >Understanding the mechanism of toxicity of carbon nanoparticles in humans in the new millennium: A systemic review
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Understanding the mechanism of toxicity of carbon nanoparticles in humans in the new millennium: A systemic review

机译:了解新千年碳纳米颗粒对人体的毒性机理:系统综述

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Manmade nanoparticles range from the well-established multi-ton production of carbon black and fumed silica for applications in plastic fillers and car tyres to microgram quantities of fluorescent quantum dots used as markers in biological imaging. While benefits of nanotechnology are widely publicized, the discussion of the potential effects of their widespread use in the consumer and industrial products are just beginning to emerge. Acceptance of nanoparticle toxicity led to wide acceptance of the fact that nanotoxicology, as a scientific discipline shall be quite different from occupational hygiene in approach and context. Understanding the toxicity of nanomaterials and nano-enabled products is important for human and environmental health and safety as well as public acceptance. Assessing the state of knowledge about nanotoxicology is an important step in promoting comprehensive understanding of the health and environmental implications of these new materials. Very limited data exist for health effects secondary to inhalation of very fine respirable particles in the occupational environment. Nanomaterials may have effects on health due to their size, surface, shape, charge, or other factors, which are not directly predictable from mass concentration measurements. Numerous epidemiological studies have associated exposure to small particles such as combustion-generated fine particles with lung cancer, heart disease, asthma and/or increased mortality. The omnipresence of nanoparticles shifts focus of research toward efforts to mitigate the health effects of nanoparticles. Newer health assessment methods and newer techniques need to be developed for diagnosing sub-optimal health in populations exposed to carbon nanoparticles.Keywords: Environment, health and safety, literature review, nanotoxicology
机译:人造纳米颗粒的范围很广,从用于塑料填料和汽车轮胎的成熟的多吨炭黑和气相二氧化硅生产到微克数量的荧光量子点(用作生物成像的标记)。尽管人们广泛宣传纳米技术的好处,但在消费者和工业产品中广泛使用纳米技术的潜在影响的讨论才刚刚开始。接受纳米粒子毒性导致人们广泛接受以下事实:作为一门科学学科,纳米毒理学在方法和环境方面应与职业卫生大不相同。了解纳米材料和纳米产品的毒性对于人类和环境的健康与安全以及公众的接受度非常重要。评估有关纳米毒理学的知识状态是促进全面了解这些新材料对健康和环境影响的重要步骤。在职业环境中吸入非常细的可吸入颗粒会继而对健康产生非常有限的数据。纳米材料可能会因其尺寸,表面,形状,电荷或其他因素而对健康产生影响,而质量浓度测量无法直接预测这些因素。许多流行病学研究表明,暴露于小颗粒(如燃烧产生的细颗粒)与肺癌,心脏病,哮喘和/或死亡率增加有关。纳米粒子的无处不在将研究重点转向减轻纳米粒子健康影响的努力。需要开发更新的健康评估方法和新技术来诊断接触碳纳米颗粒的人群的次佳健康。关键词:环境,健康与安全,文献综述,纳米毒理学

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