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纳米级金属有机框架有多安全?

How safe are nanoscale metal-organic frameworks?

作者信息

Menon Dhruv, Chakraborty Swaroop

机构信息

Cavendish Laboratory, Department of Physics, University of Cambridge, Cambridge, United Kingdom.

School of Geography, Earth and Environmental Sciences, The University of Birmingham, Birmingham, United Kingdom.

出版信息

Front Toxicol. 2023 Jun 23;5:1233854. doi: 10.3389/ftox.2023.1233854. eCollection 2023.

Abstract

Owing to the size scales that can be accessed, the nanoscale has opened doors to new physical and chemical properties, not seen in the bulk. These properties are leveraged by nanomaterials (NMs) across a plethora of applications. More recently, nanoscale metal-organic frameworks (nMOFs) have witnessed explosive growth due to the modularity of their chemical constituents, the ability to modify their composition and structure, and exceptional properties such as permanent porosity and high surface areas. These properties have prompted the investigation of these materials for applications in biological and environmental contexts. However, one aspect that is often ignored in these discussions is their safety at a nanoscale. In this mini review, we aim to initiate a discussion on the safety and toxicity of nMOFs, drawing parallels with the existing guidelines and literature on the safety of inorganic NMs. We first describe why nMOFs are of considerable interest to the scientific community followed by a discussion on routes through which they can be exposed to the environment and living organisms, particularly shedding light on their transformation mechanisms. The review also discusses the factors affecting toxicity of nMOFs, such as their size, shape, morphology, and composition. We briefly highlight potential mechanisms of toxicity and conclude with describing the need to transition towards data-intensive computational approaches such as machine learning to establish nMOFs as credible materials for their envisioned applications.

摘要

由于可触及的尺寸范围,纳米尺度开启了通往新的物理和化学性质的大门,这些性质在宏观材料中并不存在。纳米材料在众多应用中利用了这些性质。最近,纳米级金属有机框架(nMOF)因其化学成分的模块化、改变其组成和结构的能力以及诸如永久孔隙率和高表面积等特殊性质而经历了爆炸式增长。这些性质促使人们研究这些材料在生物和环境领域的应用。然而,在这些讨论中经常被忽视的一个方面是它们在纳米尺度下的安全性。在这篇小型综述中,我们旨在引发关于nMOF安全性和毒性的讨论,将其与现有的关于无机纳米材料安全性的指南和文献进行对比。我们首先描述为什么nMOF引起了科学界的极大兴趣,接着讨论它们可能进入环境和生物体的途径,特别是阐明它们的转化机制。该综述还讨论了影响nMOF毒性的因素,如它们的尺寸、形状、形态和组成。我们简要强调了潜在的毒性机制,并在结尾描述了转向数据密集型计算方法(如机器学习)的必要性,以便将nMOF确立为适用于其预期应用的可靠材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/427b/10326718/fbf7b2cd3d12/ftox-05-1233854-g001.jpg

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