Department of Mechanical Engineering and Mechanics, Drexel University, 3141 Chestnut Street, Philadelphia, PA 19104, USA.
Nanotechnology. 2013 May 17;24(19):195104. doi: 10.1088/0957-4484/24/19/195104. Epub 2013 Apr 17.
We evaluate a method for biofilm disinfection by raising biofilm temperature using the photothermal effect of a gold nanorod cluster. Gold nanorods (GNRs) are capable of generating enough heat to lyse bacteria by heating biofilm via laser irradiation. To test this, GNRs are synthesized using wet chemistry and a single GNR cluster is fabricated using photo-lithography technique. The GNR cluster is directly applied to the biofilm and its effects on bacteria are measured before and after laser irradiation. The photothermal effect of GNRs on the biofilm structure results in a considerable reduction of cell viability and biofilm thickness. Several quantitative measurements of bacterial mortality and biofilm destruction show an increase in efficacy with increasing durations of laser irradiation. Scanning electron microscopy images of the irradiated bacteria show obvious morphological damage such as rupture or collapse of the bacterial cell membrane in the biofilm. These results indicate that GNRs are useful and a potential material for use in photothermal treatments, particularly biofilm disinfection.
我们通过利用金纳米棒簇的光热效应来提高生物膜温度,评估了一种生物膜消毒方法。金纳米棒(GNRs)能够通过激光照射加热生物膜产生足够的热量来裂解细菌。为此,我们使用湿化学法合成了 GNRs,并使用光刻技术制造了单个 GNR 簇。将 GNR 簇直接应用于生物膜,并在激光照射前后测量其对细菌的影响。GNR 对生物膜结构的光热效应导致细胞活力和生物膜厚度明显降低。对细菌死亡率和生物膜破坏的几项定量测量表明,随着激光照射时间的增加,疗效增加。对受照射细菌的扫描电子显微镜图像显示,生物膜中细菌细胞膜破裂或崩溃等明显的形态损伤。这些结果表明,GNRs 是一种有用的、有潜力的光热治疗材料,特别是用于生物膜消毒。