Department of Mechanical Engineering, Ajou University, Suwon 16499, Gyeonggi-do, Korea.
Int J Mol Sci. 2021 Oct 14;22(20):11091. doi: 10.3390/ijms222011091.
Recently, photothermal therapy has attracted attention as an alternative treatment to conventional surgical techniques because it does not lead to bleeding and patients quickly recover after treatment compared to incisional surgery. Photothermal therapy induces tumor cell death through an increase in the temperature using the photothermal effect, which converts light energy into thermal energy. This study was conducted to perform numerical analysis based on heat transfer to induce apoptosis of tumor tissue under various heating conditions in photothermal therapy. The Monte Carlo method was applied to evaluate a multi-layered skin structure containing squamous cell carcinoma. Tissue-equivalent phantom experiments verified the numerical model. Based on the effective apoptosis retention ratio, the numerical analysis results showed the quantitative correlation for the laser intensity, volume fraction of gold nanorods injected into the tumor, and cooling time. This study reveals optimal conditions for maximizing apoptosis within tumor tissue while minimizing thermal damage to surrounding tissues under various heating conditions. This approach may be useful as a standard treatment when performing photothermal therapy.
最近,光热疗法作为一种替代传统手术技术的治疗方法引起了关注,因为与切开手术相比,它不会导致出血,并且患者在治疗后很快就能恢复。光热疗法通过光热效应将光能转化为热能来提高温度,从而诱导肿瘤细胞死亡。本研究旨在通过传热进行数值分析,以在光热疗法的各种加热条件下诱导肿瘤组织凋亡。蒙特卡罗方法被应用于评估包含鳞状细胞癌的多层皮肤结构。组织等效性体模实验验证了数值模型。基于有效的凋亡保留率,数值分析结果显示了激光强度、注入肿瘤的金纳米棒体积分数和冷却时间的定量相关性。本研究揭示了在各种加热条件下,在最大限度地提高肿瘤组织内凋亡的同时,最小化周围组织热损伤的最佳条件。这种方法在进行光热疗法时可能是一种有用的标准治疗方法。