Ramasamy Mohankandhasamy, Kim Sanghyo, Lee Su Seong, Yi Dong Kee
J Nanosci Nanotechnol. 2016 Jan;16(1):555-61. doi: 10.1166/jnn.2016.10603.
We describe the nucleophilic hybridization technique for fabricating magnetic nanoparticle (MNP) around gold nanorod (AuNR) for desired photo-thermal lysis on pathogenic bacteria. From the electromagnetic energy conversion into heat to the surrounding medium, a significant and quicker temperature rise was noted after light absorption on nanohybrids, at a controlled laser light output and optimum nanoparticle concentration. We observed a similar photo-thermal pattern for more than three times for the same material up on repeated magnetic separation. Regardless of the cell wall nature, superior pathogenic cell lysis has been observed for the bacteria suspensions of individual and mixed samples of Salmonella typhi (S.typhi) and Bacillus subtilis (B.subtilis) by the photo-heated nanoparticles. The synthesis of short gold nanorod, conjugation with magnetic nanoparticle and its subsequent laser exposure provides a rapid and reiterated photo-thermal effect with enhanced magnetic separation for efficient bactericidal application in water samples. Resultant novel properties of the nano-aggregates makes them a candidate to be used for a rapid, effective, and re-iterated photo-thermal agent against a wide variety of pathogens to attain microbe free water.
我们描述了一种亲核杂交技术,用于在金纳米棒(AuNR)周围制备磁性纳米颗粒(MNP),以实现对病原菌的理想光热裂解。从电磁能转化为周围介质的热量,在可控的激光输出和最佳纳米颗粒浓度下,纳米杂化物吸收光后观察到显著且更快的温度升高。在对相同材料进行重复磁分离时,我们观察到类似的光热模式超过三次。无论细胞壁性质如何,通过光热纳米颗粒已观察到对伤寒沙门氏菌(S.typhi)和枯草芽孢杆菌(B.subtilis)的单个和混合样品的细菌悬浮液具有优异的病原菌细胞裂解作用。短金纳米棒的合成、与磁性纳米颗粒的共轭及其随后的激光照射提供了快速且反复的光热效应,并增强了磁分离效果,以便在水样中进行高效杀菌应用。纳米聚集体产生的新特性使其成为一种候选材料,可用于针对多种病原体的快速、有效且反复的光热剂,以获得无微生物的水。