Size-dependent theoretical and experimental photothermal conversion efficiency of spherical gold nanoparticles

光热治疗 纳米颗粒 表面等离子共振 辐照 拉曼光谱 胶体金 激光器 透射电子显微镜 材料科学 等离子体子 光热效应 傅里叶变换红外光谱 光谱学 活力测定 纳米技术 化学 分析化学(期刊) 核化学 化学工程 光电子学 体外 光学 色谱法 物理 工程类 量子力学 生物化学 核物理学
作者
Joanna Depciuch,Małgorzata Stec,A. Maximienko,Jarosław Baran,Magdalena Parlińska‐Wojtan
出处
期刊:Photodiagnosis and Photodynamic Therapy [Elsevier]
卷期号:39: 102979-102979 被引量:12
标识
DOI:10.1016/j.pdpdt.2022.102979
摘要

Due to their biocompatible and plasmonic properties, gold nanoparticles (Au NPs) are good candidates to be photosensitizers in photothermal cancer therapy (PTT). In this paper, the dependence of the NIR-light-to-heat energy on Au NPs size was investigated. Moreover, to determine the photosensitizing properties of gold nanoparticles, PTT was conducted on two colon cell lines: SW480 and SW620 by irradiating them with two lasers having different wavelengths. Transmission electron microscopy showed that the respective sizes of Au NPs were 10 nm, 12 nm and 16 nm. Moreover, local as well as global structural measurements showed that all synthesized Au NPs were crystalline and UV-Vis spectroscopy revealed that with increasing nanoparticles size the position of the surface Plasmon resonance (SPR) peaks is shifted to higher wavelengths. Decrease of cells viability was observed, when they were cultured with Au NPs and irradiated by 650 nm and 808 nm lasers. Moreover, FTIR and Raman spectra of cells, showed structural changes in DNA, phospholipids, proteins and cholesterol caused by the addition of nanoparticles and laser irradiation. The chemical changes were more pronounced in the cells cultured with Au NPs and irradiated by 650 nm lasers and these changes were dependent on the nanoparticle size. Moreover, the viability of cells investigated by the MTS assay showed, that the percentage of dead cells (∼40%) is the highest for cells cultured with 8 nm Au NPs and irradiated by the 650 nm laser. The photothermal conversion efficiency calculated from the experimental results showed a decrease of this parameter from 70% to 55% and from 61% to 48% with increasing particle size, for 650 nm and 808 nm lasers, respectively. The obtained results showed that the photothermal conversion efficiency of Au NPs is size-tunable, and can be correlated with the absorption/extinction ratios calculated by the Mie theory.
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