CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, and CAS Key Laboratory of Nuclear Analytical Techniques, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China.
Metallomics. 2013 Jun;5(7):793-803. doi: 10.1039/c3mt00093a.
With the rapid development of engineered nanomaterials (NMs) and wide biomedical applications for new types of multifunctional NMs, an understanding of the behavior patterns of NMs in vivo and clarification of their potential health impact as a result of their novel physicochemical properties is essential for ensuring safety in biomedical applications of nanotechnology. NMs have heterogeneous characteristics in that they combine the bulk properties of solids with the mobility of molecules, and present phase transformation, dissolution, oxidation/reduction as well as nano-bio interface reactions in biological milieu, which affect their in vivo behaviors and biological effects. The accurate study of identification, quantification, transformation state of NMs and their biological effects in vivo remains a challenge. This review aims to provide a "metallomics" (an integrated metal-assisted function bioscience) insight into the in vivo behavior and biological effects of NMs, particularly for metal-based nanomaterials (MNMs) and is based mainly on our own research and other previous works.
随着工程纳米材料(NMs)的快速发展和新型多功能 NMs 在生物医学领域的广泛应用,了解 NMs 在体内的行为模式,并阐明其由于新颖的物理化学性质而产生的潜在健康影响,对于确保纳米技术在生物医学应用中的安全性至关重要。NMs 具有异质特性,因为它们将固体的体相性质与分子的迁移性结合在一起,并在生物环境中表现出相转变、溶解、氧化/还原以及纳米-生物界面反应,从而影响它们在体内的行为和生物效应。准确研究 NMs 的鉴定、定量、转化状态及其在体内的生物效应仍然是一个挑战。本综述旨在提供一个“金属组学”(一种综合的金属辅助功能生物科学)的视角,了解 NMs 的体内行为和生物效应,特别是针对基于金属的纳米材料(MNMs),主要基于我们自己的研究和其他以前的工作。