Yao Yanhua, Zhang Nannan, Liu Xiao, Dai Qiaofeng, Liu Haiying, Wei Zhongchao, Tie Shaolong, Li Yinyin, Fan Haihua, Lan Sheng
Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, School of Information and Optoelectronic Science and Engineering, South China Normal University, 510006 Guangzhou, China.
School of Chemistry and Environment, South China Normal University, 510006 Guangzhou, China.
Nanomaterials (Basel). 2018 Oct 28;8(11):880. doi: 10.3390/nano8110880.
In this paper, the plasmon resonance effects of gold nanorods was used to achieve rapid photothermal therapy for malignant melanoma cells (A375 cells). After incubation with A375 cells for 24 h, gold nanorods were taken up by the cells and gold nanorod clusters were formed naturally in the organelles of A375 cells. After analyzing the angle and space between the nanorods in clusters, a series of numerical simulations were performed and the results show that the plasmon resonance coupling between the gold nanorods can lead to a field enhancement of up to 60 times. Such high energy localization causes the temperature around the nanorods to rise rapidly and induce cell death. In this treatment, a laser as low as 9.3 mW was used to irradiate a single cell for 20 s and the cell died two h later. The cell death time can also be controlled by changing the power of laser which is focused on the cells. The advantage of this therapy is low laser treatment power, short treatment time, and small treatment range. As a result, the damage of the normal tissue by the photothermal effect can be greatly avoided.
在本文中,金纳米棒的等离子体共振效应被用于实现对恶性黑色素瘤细胞(A375细胞)的快速光热治疗。与A375细胞孵育24小时后,金纳米棒被细胞摄取,并在A375细胞的细胞器中自然形成金纳米棒簇。在分析簇中纳米棒之间的角度和间距后,进行了一系列数值模拟,结果表明金纳米棒之间的等离子体共振耦合可导致场增强高达60倍。如此高的能量局域化导致纳米棒周围的温度迅速升高并诱导细胞死亡。在这种治疗中,使用低至9.3 mW的激光照射单个细胞20秒,细胞在两小时后死亡。细胞死亡时间也可以通过改变聚焦在细胞上的激光功率来控制。这种治疗方法的优点是激光治疗功率低、治疗时间短、治疗范围小。因此,可以大大避免光热效应对正常组织的损伤。