School of Mechanical Engineering, Tel Aviv University, 69978, Israel.
Sackler Faculty of Medicine, Tel Aviv University, 69978, Israel.
J Hazard Mater. 2022 Jun 15;432:128661. doi: 10.1016/j.jhazmat.2022.128661. Epub 2022 Mar 11.
The growing in manufacturing and applications of graphene oxide (GO), a two-dimensional nanomaterial, highlights the need for a better understanding of its environmental impact and toxicity. This work investigates the interaction of GO with cell membrane models as an indication for GO's potential harmfulness. A wide range of biologically-relevant membrane parameters (size, charge and, cholesterol content) and simple optical techniques were used to evaluate the outcome of interactions of vesicular cell membrane models with GO. Loss of membrane integrity was found to be positively correlated with electrostatic attraction and negatively correlated with cholesterol content. The size of vesicle-GO aggregates increased as a function of initial vesicle size, while cholesterol content was found to have a negligible effect on aggregation. Interestingly, charged vesicles reduced vesicle-GO aggregate size either by electrostatic repulsion of negatively charge vesicles or by GO folding following attachment of positively charge vesicles. Overall, by examining how key biologically-relevant parameters of membrane models affect interactions with GO, we have augmented the understanding of the potential threats of GO towards biological cell and to the environment.
氧化石墨烯(GO)作为一种二维纳米材料,其制造和应用日益增多,这凸显了人们需要更好地了解其对环境的影响和毒性。本研究以细胞膜模型作为指示物,研究了 GO 与细胞膜模型的相互作用,以评估 GO 的潜在危害性。研究采用了多种与生物学相关的膜参数(大小、电荷和胆固醇含量)和简单的光学技术来评估囊泡细胞膜模型与 GO 相互作用的结果。研究发现,细胞膜完整性的丧失与静电吸引呈正相关,与胆固醇含量呈负相关。囊泡 - GO 聚集体的大小随初始囊泡大小的增加而增加,而胆固醇含量对聚集的影响可以忽略不计。有趣的是,带电荷的囊泡通过带负电荷的囊泡的静电排斥或带正电荷的囊泡附着后 GO 的折叠来减小囊泡 - GO 聚集体的大小。总的来说,通过研究细胞膜模型的关键生物学相关参数如何影响与 GO 的相互作用,我们增加了对 GO 对生物细胞和环境的潜在威胁的理解。