Nanomedicine Laboratory, Centre for Drug Delivery Research, UCL School of Pharmacy, University College London, Brunswick Square, London, WC1N 1AX, UK.
Adv Healthc Mater. 2013 Mar;2(3):433-41. doi: 10.1002/adhm.201200248. Epub 2012 Oct 4.
Prompted by the excitement from the description of single layer graphene, increased attention for potential applications in the biomedical field has been recently placed on graphene oxide (GO). Determination of the opportunities and limitations that GO offers in biomedicine are particularly prone to inaccuracies due to wide variability in the preparation methodologies of GO material in different laboratories, that results in significant variation in the purity of the material and the yield of the oxidation reactions, primarily the Hummers method used. Herein, the fabrication of highly pure, colloidally stable, and evenly dispersed GO in physiologically-relevant aqueous buffers in comparison to conventional GO is investigated. The purified GO material is thoroughly characterized by a battery of techniques, and is shown to consist of single layer GO sheets of lateral dimensions below 500 nm. The cytotoxic impact of the GO in vitro and its inflammation profile in vivo is investigated. The purified GO prepared and characterized here does not induce significant cytotoxic responses in vitro, or inflammation and granuloma formation in vivo following intraperitoneal injection. This is one of the initial steps towards determination of the safety risks associated with GO material that may be interacting with living tissue.
受单层石墨烯描述的启发,氧化石墨烯(GO)在生物医学领域的潜在应用引起了人们的极大关注。由于不同实验室制备 GO 材料的方法存在很大差异,导致材料的纯度和氧化反应的产率(主要是使用的 Hummers 法)存在显著差异,因此确定 GO 在生物医学中提供的机会和限制特别容易出现不准确的情况。在此,研究了与传统 GO 相比,在生理相关的水性缓冲液中制备高度纯净、胶体稳定且均匀分散的 GO。通过一系列技术对纯化后的 GO 材料进行了彻底的表征,结果表明其由横向尺寸小于 500nm 的单层 GO 片组成。研究了 GO 在体外的细胞毒性影响及其体内的炎症特征。体内腹腔注射后,这里制备和表征的纯化 GO 不会在体外引起明显的细胞毒性反应,也不会引起炎症和肉芽肿形成。这是确定与可能与活组织相互作用的 GO 材料相关的安全风险的初始步骤之一。