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单壁碳纳米管与近红外激光联用用于细菌细胞的灭活

Single-walled carbon nanotubes coupled with near-infrared laser for inactivation of bacterial cells.

作者信息

Mamouni Jaouad, Tang Yongan, Wu Marvin, Vlahovic Branislav, Yang Liju

机构信息

Biomanufacturing Research Institute and Technology Enterprises (BRITE) and Department of Pharmaceutical Sciences, North Carolina Central University, Durham, NC 27707, USA.

出版信息

J Nanosci Nanotechnol. 2011 Jun;11(6):4708-16. doi: 10.1166/jnn.2011.4163.

Abstract

In this study, single-walled carbon nanotubes (SWCNTs) coupled with near infrared (NIR) laser treatment to enhance SWCNT's antimicrobial activity were studied. Salmonella, agram-negative pathogenic bacteria, was used as a model bacteria in this study. We found that NIR treatment (800 nm, 475 mW, for 20 min) to bacterial suspension with 50 microg/ml SWCNTs reduced the cell growth by approximately 55.5% compared with the cell sample with 50 microg/ml SWCNTs alone. Determined by the plating method, the viable cell number in the SWCNTs-NIR treated samples reduced by 2.2 log, while SWCNTs alone only had 0.7 log reduction. Imaging analysis of bacterial cells with and without NIR treatment correlated well with the growth and viable cell reduction measurement. We also found that the enhancement of SWCNTs' antimicrobial activity by NIR treatment was related to the NIR power, the NIR treatment time, and SWCNTs' concentration. The localized heating of SWCNTs under NIR treatment was the likely mechanism to enhance the antimicrobial efficiency of SWCNTs beyond its intrinsic antimicrobial activity. The results of this study suggested that SWCNTs-NIR treatment has the potential to be an effective antimicrobial method.

摘要

在本研究中,对单壁碳纳米管(SWCNTs)与近红外(NIR)激光处理相结合以增强SWCNTs抗菌活性进行了研究。本研究中使用革兰氏阴性病原菌沙门氏菌作为模型细菌。我们发现,用50微克/毫升SWCNTs处理细菌悬液后进行近红外处理(800纳米,475毫瓦,20分钟),与仅含50微克/毫升SWCNTs的细胞样品相比,细胞生长减少了约55.5%。通过平板计数法测定,经SWCNTs-近红外处理的样品中活细胞数量减少了2.2个对数级,而仅SWCNTs处理的样品活细胞数量仅减少了0.7个对数级。对有无近红外处理的细菌细胞进行成像分析,结果与生长和活细胞减少测量结果高度相关。我们还发现,近红外处理增强SWCNTs的抗菌活性与近红外功率、近红外处理时间以及SWCNTs的浓度有关。近红外处理下SWCNTs的局部加热可能是增强SWCNTs抗菌效率超越其固有抗菌活性的机制。本研究结果表明,SWCNTs-近红外处理有可能成为一种有效的抗菌方法。

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