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基于石墨烯材料的表面功能化:生物行为、毒理学和安全设计方面。

Surface Functionalization of Graphene-Based Materials: Biological Behavior, Toxicology, and Safe-By-Design Aspects.

机构信息

School of Geography, Earth and Environmental Sciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

Department of Biological Engineering, Indian Institute of Technology, Gandhinagar, Gujarat, 382355, India.

出版信息

Adv Biol (Weinh). 2021 Sep;5(9):e2100637. doi: 10.1002/adbi.202100637. Epub 2021 Jul 20.

Abstract

The increasing exploitation of graphene-based materials (GBMs) is driven by their unique properties and structures, which ignite the imagination of scientists and engineers. At the same time, the very properties that make them so useful for applications lead to growing concerns regarding their potential impacts on human health and the environment. Since GBMs are inert to reaction, various attempts of surface functionalization are made to make them reactive. Herein, surface functionalization of GBMs, including those intentionally designed for specific applications, as well as those unintentionally acquired (e.g., protein corona formation) from the environment and biota, are reviewed through the lenses of nanotoxicity and design of safe materials (safe-by-design). Uptake and toxicity of functionalized GBMs and the underlying mechanisms are discussed and linked with the surface functionalization. Computational tools that can predict the interaction of GBMs behavior with their toxicity are discussed. A concise framing of current knowledge and key features of GBMs to be controlled for safe and sustainable applications are provided for the community.

摘要

基于石墨烯的材料(GBMs)的日益开发利用是由其独特的性质和结构驱动的,这激发了科学家和工程师的想象力。与此同时,正是这些使它们在应用中非常有用的特性,导致人们越来越关注它们对人类健康和环境的潜在影响。由于 GBMs 对反应惰性,因此会进行各种表面功能化尝试,以使它们具有反应性。本文通过纳米毒性和安全材料设计(安全设计)的角度综述了 GBMs 的表面功能化,包括那些专为特定应用而设计的,以及那些从环境和生物区系中无意获得的(例如,蛋白质冠形成)。讨论了功能化 GBMs 的摄取和毒性及其潜在机制,并将其与表面功能化联系起来。还讨论了可以预测 GBMs 行为与其毒性相互作用的计算工具。为了安全和可持续应用,为该领域提供了当前知识的简明框架和 GBMs 的关键特征,需要加以控制。

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