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首页> 外文期刊>Nanoscale >Antibacterial action of dispersed single-walled carbon nanotubes on Escherichia coli and Bacillus subtilis investigated by atomic force microscopy
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Antibacterial action of dispersed single-walled carbon nanotubes on Escherichia coli and Bacillus subtilis investigated by atomic force microscopy

机译:抗菌作用分散单壁碳纳米管在大肠杆菌和芽孢杆菌微小原子力显微镜研究

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摘要

Single-walled carbon nanotubes (SWCNTs) exhibit strong antibacterial activities. Direct contact between bacterial cells and SWCNTs may likely induce cell damages. Therefore, the understanding of SWCNT-bacteria interactions is essential in order to develop novel SWCNT-based materials for their potential environmental, imaging, therapeutic, and military applications. In this preliminary study, we utilized atomic force microscopy (AFM) to monitor dynamic changes in cell morphology and mechanical properties of two typical bacterial models (gram-negative Escherichia coli and gram-positive Bacillus subtilis) upon incubation with SWCNTs. The results demonstrated that individually dispersed SWCNTs in solution develop nanotube networks on the cell surface, and then destroy the bacterial envelopes with leakage of the intracellular contents. The cell morphology changes observed on air dried samples are accompanied by an increase in cell surface roughness and a decrease in surface spring constant. To mimic the collision between SWCNTs and cells, a sharp AFM tip of 2 nm was chosen to introduce piercings on the cell surface. No clear physical damages were observed if the applied force was below 10 nN. Further analysis also indicates that a single collision between one nanotube and a bacterial cell is unlikely to introduce direct physical damage. Hence, the antibacterial activity of SWCNTs is the accumulation effect of large amount of nanotubes through interactions between SWCNT networks and bacterial cells.
机译:单壁碳纳米管(SWCNTs)展览强大的抗菌活性。细菌细胞和SWCNTs之间也许有可能诱导细胞的损害。SWCNT-bacteria交互至关重要以开发新型SWCNT-based材料他们的潜在环境,成像,治疗和军事应用。初步研究中,我们利用原子力显微镜(AFM)监测动态变化细胞形态和力学性能的两个典型的细菌模型(革兰氏阴性大肠杆菌和革兰氏阳性杆菌细小)在与SWCNTs孵化。结果表明,单独分散SWCNTs在解决方案开发纳米管网络细胞表面,然后破坏细菌信封与细胞内的泄漏内容。风干样品都伴随着增加在细胞表面粗糙度和减少表面弹簧常数。SWCNTs和细胞之间,一把锋利的AFM的2海里被选为穿孔在细胞介绍吗表面。如果应用力低于10 nN。分析还表明,一个碰撞纳米管和一个细菌细胞之间可能介绍直接的物理伤害。因此,SWCNTs的抗菌活性大量的积累效应纳米管通过SWCNT之间的相互作用网络和细菌细胞。

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