摘要
背景:纳米安全的目标是通过对纳米结构材料进行更安全的设计(和重新设计),优化性能和安全性,解决哪些结构特征导致所期望的性能,并对它们进行修改,以避免它们的有害影响,同时又不失去其所希望的纳米尺度性能。从已知的有毒NPs开始,最终目标应该是重新设计这种有害的特定NP特性,并重新定义从生命周期开始到结束的操作方式。方法:研究人员回顾了关于“设计安全”范式的新型纳米安全策略领域的文献。结果:基因工程NPs的潜在危害不仅取决于其自身的理化性质,还取决于这些NPs与周围环境的相互作用。通过传统研究无法实现促进及时、安全地发展国家预防措施的目标,因为这些研究同时涉及一种材料。为了开发一种更安全的工程NPs设计策略,需要了解其内在(合成)特性及其对外部刺激的外在反应。结论:我们总结了新的纳米安全策略的最新进展,该策略涉及优化性能和安全性的“按设计安全”模式,允许比较不同研究的结果,并最终为重新设计更安全的NPs提供指导。由此产生的讨论旨在为合成纳米化学家提供指导方针,说明如何设计NPs,使其在整个生命周期中安全,同时保持其父母期望的特性。
关键词: 纳米安全,纳米技术,工程无机纳米粒子,毒性机制,比表面积,组合库。
Current Medicinal Chemistry
Title:Nanosafety: Towards Safer Nanoparticles by Design
Volume: 25 Issue: 35
关键词: 纳米安全,纳米技术,工程无机纳米粒子,毒性机制,比表面积,组合库。
摘要: Background: Nanosafety aims for a solution through the safer design (and re-design) of nanostructured materials, optimizing both performance and safety, by resolving which structural features lead to the desired properties and modifying them to avoid their detrimental effects without losing their desired nanoscale properties in the process. Starting with known toxic NPs, the final aim should be the re-design of such detrimental specific NP characteristics and to redefine the way they should be manipulated from the beginning to the end of their life cycle.
Methods: The researchers reviewed literature in the area of novel nanosafety strategies addressing the “safe-by-design” paradigm.
Results: The potential hazards of engineered NPs are not only determined by the physicochemical properties of the engineered NPs per se but also on the interactions of these NPs with immediate surrounding environments. The aim of promoting the timely and safe development of NPs cannot be achieved via traditional studies as they address one material at one time. The development of a safer design strategy of engineered NPs requires an understanding of both intrinsic (synthetic) properties together with their extrinsic responses to external stimuli.
Conclusions: We have summarized recent developments of novel nanosafety strategies addressing the “safe-by-design” paradigm for optimizing both performance and safety, allowing the comparison of results of different studies and ultimately providing guidelines for the re-design of safer NPs. The resulting discussion is intended to provide guidelines for synthetic nanochemists on how to design NPs to be safe during their full life cycle while maintaining their parental desired properties.
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Cite this article as:
Nanosafety: Towards Safer Nanoparticles by Design, Current Medicinal Chemistry 2018; 25 (35) . https://dx.doi.org/10.2174/0929867324666170413124915
DOI https://dx.doi.org/10.2174/0929867324666170413124915 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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