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氧化石墨烯对人类病原体的矛盾作用。

The graphene oxide contradictory effects against human pathogens.

机构信息

Physics Institute, Catholic University of Sacred Hearth, L. go Francesco Vito 1, 00168 Rome, Italy. Institute for Complex Systems, National Research Council (ISC-CNR), Via dei Taurini 19, 00185 Rome, Italy.

出版信息

Nanotechnology. 2017 Apr 18;28(15):152001. doi: 10.1088/1361-6528/aa6150.

Abstract

Standing out as the new wonder bidimensional material, graphene oxide (GO) has aroused an exceptional interest in biomedical research by holding promise for being the antibacterial of future. First, GO possesses a specific interaction with microorganisms combined with a mild toxicity for human cells. Additionally, its antibacterial action seems to be directed to multiple targets in pathogens, causing both membranes mechanical injury and oxidative stress. Lastly, compared to other carbon materials, GO has easy and low-cost processing and is environment-friendly. This remarkable specificity and multi-targeting antibacterial activity come at a time when antibiotic resistance represents the major health challenge. Unfortunately, a comprehensive framework to understand how to effectively utilize this material against microorganisms is still lacking. In the last decade, several groups tried to define the mechanisms of interaction between GO flakes and pathogens but conflicting results have been reported. This review is focused on all the contradictions of GO antimicrobial properties in solution. Flake size, incubation protocol, time of exposure and species considered are examples of factors influencing results. These parameters will be summarized and analyzed with the aim of defining the causes of contradictions, to allow fast GO clinical application.

摘要

作为新型二维 wonder 材料,氧化石墨烯 (GO) 因其对未来具有抗菌作用而引起了生物医学研究的极大兴趣。首先,GO 与微生物具有特定的相互作用,同时对人类细胞的毒性较低。此外,其抗菌作用似乎针对病原体中的多个靶标,导致膜机械损伤和氧化应激。最后,与其他碳材料相比,GO 易于加工且成本低廉,对环境友好。当抗生素耐药性成为主要健康挑战时,这种显著的特异性和多靶点抗菌活性就显得尤为重要。不幸的是,目前仍然缺乏一个全面的框架来理解如何有效地利用这种材料来对抗微生物。在过去的十年中,已经有几个研究小组试图确定 GO 薄片与病原体之间的相互作用机制,但报告的结果却相互矛盾。这篇综述集中讨论了 GO 在溶液中抗菌性能的所有矛盾。薄片尺寸、孵育方案、暴露时间和考虑的物种都是影响结果的因素。这些参数将被总结和分析,目的是确定矛盾的原因,以允许 GO 快速应用于临床。

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