Santhosh Poornima Budime, Hristova-Panusheva Kamelia, Petrov Todor, Stoychev Lyubomir, Krasteva Natalia, Genova Julia
Institute of Solid State Physics, Bulgarian Academy of Sciences, Tzarigradsko Chaussee 72, 1784 Sofia, Bulgaria.
Central Laboratory of Solar Energy and New Energy Sources, Tzarigradsko Chaussee 72, 1784 Sofia, Bulgaria.
Cells. 2024 Dec 23;13(24):2139. doi: 10.3390/cells13242139.
Laser-induced photothermal therapy using gold nanoparticles (AuNPs) has emerged as a promising approach to cancer therapy. However, optimizing various laser parameters is critical for enhancing the photothermal conversion efficacy of plasmonic nanomaterials. In this regard, the present study investigates the photothermal effects of dodecanethiol-stabilized hydrophobic ultrasmall spherical AuNPs (TEM size 2.2 ± 1.1 nm), induced by a 343 nm wavelength ultrafast femtosecond-pulse laser with a low intensity (0.1 W/cm) for 5 and 10 min, on the cell morphology and viability of human hepatocellular carcinoma (HepG2) cells treated in vitro. The optical microscopy images showed considerable alteration in the overall morphology of the cells treated with AuNPs and irradiated with laser light. Infrared thermometer measurements showed that the temperature of the cell medium treated with AuNPs and exposed to the laser increased steadily from 22 °C to 46 °C and 48.5 °C after 5 and 10 min, respectively. The WST-1 assay results showed a significant reduction in cell viability, demonstrating a synergistic therapeutic effect of the femtosecond laser and AuNPs on HepG2 cells. The obtained results pave the way to design a less expensive, effective, and minimally invasive photothermal approach to treat cancers with reduced side effects.
使用金纳米颗粒(AuNPs)的激光诱导光热疗法已成为一种很有前景的癌症治疗方法。然而,优化各种激光参数对于提高等离子体纳米材料的光热转换效率至关重要。在这方面,本研究调查了由343nm波长、低强度(0.1W/cm)的超快飞秒脉冲激光照射5分钟和10分钟所诱导的十二烷硫醇稳定的疏水性超小球形AuNPs(透射电子显微镜尺寸为2.2±1.1nm)对体外处理的人肝癌(HepG2)细胞的细胞形态和活力的光热效应。光学显微镜图像显示,用AuNPs处理并用激光照射的细胞的整体形态有相当大的改变。红外温度计测量表明,用AuNPs处理并暴露于激光的细胞培养基温度在5分钟和10分钟后分别从22°C稳步升至46°C和48.5°C。WST-1检测结果显示细胞活力显著降低,证明飞秒激光和AuNPs对HepG2细胞具有协同治疗作用。所获得的结果为设计一种成本更低、有效且微创的光热方法来治疗癌症并减少副作用铺平了道路。