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再谈纳米技术的安全问题。

Nanotechnology safety concerns revisited.

作者信息

Stern Stephan T, McNeil Scott E

机构信息

Nanotechnology Characterization Laboratory, Advanced Technology Program, SAIC-Frederick, Inc., NCI-Frederick, Frederick, Maryland 21702, USA.

出版信息

Toxicol Sci. 2008 Jan;101(1):4-21. doi: 10.1093/toxsci/kfm169. Epub 2007 Jun 30.

Abstract

Nanotechnology is an emerging science involving manipulation of matter at the nanometer scale. Due to concerns over nanomaterial risks, there has been a dramatic increase in focused safety research. The present review provides a summary of these published findings, identifying areas of agreement and discordance with regard to: (1) the potential for nanomaterial exposure, (2) the relative hazard nanomaterials pose to humans and the environment, and (3) the present deficits in our understanding of risk. Special attention is paid to study design and methodologies, offering valuable insight into the complexities encountered with nanomaterial safety assessment. Recent data highlight the impact of surface characteristics on nanomaterial biocompatibility and point to the inadequacy of the current size-dependent mechanistic paradigms, with nanoscale materials lacking unique or characteristic toxicity profiles. The available data support the ability of the lung, gastrointestinal tract, and skin to act as a significant barrier to the systemic exposure of many nanomaterials. Furthermore, the acute systemic toxicity of many nanomaterials appear to be low. By contrast, the potential pulmonary toxicity of certain nanomaterials, such as carbon nanotubes, is significant, requiring a better understanding of exposure to further evaluate their risk. While these findings arrive at an overall picture of material-specific rather than nanogeneralized risk, any conclusions should clearly be tempered by the fact that nanomaterial safety data are limited. Until such time as the exposures, hazards, and environmental life cycle of nanomaterials have been more clearly defined, cautious development and implementation of nanotechnology is the most prudent course.

摘要

纳米技术是一门新兴科学,涉及在纳米尺度上对物质进行操控。由于对纳米材料风险的担忧,针对性的安全性研究急剧增加。本综述总结了这些已发表的研究结果,确定了在以下方面的共识和分歧领域:(1)纳米材料暴露的可能性;(2)纳米材料对人类和环境构成的相对危害;(3)我们在风险认知方面目前存在的不足。特别关注研究设计和方法,为纳米材料安全性评估中遇到的复杂性提供了有价值的见解。最新数据突出了表面特性对纳米材料生物相容性的影响,并指出当前基于尺寸的机制范式存在不足,纳米级材料缺乏独特或典型的毒性特征。现有数据支持肺、胃肠道和皮肤能够对许多纳米材料的全身暴露起到重要屏障作用。此外,许多纳米材料的急性全身毒性似乎较低。相比之下,某些纳米材料,如碳纳米管,潜在的肺毒性很大,需要更好地了解暴露情况以进一步评估其风险。虽然这些发现得出了特定材料而非纳米材料普遍风险的总体情况,但任何结论都应清楚地受到纳米材料安全数据有限这一事实的影响。在纳米材料的暴露、危害和环境生命周期得到更明确界定之前,谨慎开发和应用纳米技术是最审慎的做法。

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