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Probing nanoantenna-directed photothermal destruction of tumors using noninvasive laser irradiation

机译:使用无创激光照射探测纳米天线导向的光热破坏肿瘤

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摘要

Plasmonic nanomaterials have tremendous potential to improve the tumor specificity of traditional cancer ablation practices, yet little effort has been directed toward quantitatively understanding their photothermal energy conversion in tumor tissues. In the present work, we develop a predictive model for plasmonic nanomaterial assisted tumor destruction under extracorporeal laser irradiation. Instead of appealing to heuristically based laser intensification models with tunable, tissue absorption and scattering coefficients, we consider fundamental characteristics of optoelectrothermal energy conversion and heat dissipation for plasmonic nanomaterials within living tumor tissues to construct a simulation tool that accurately reproduces our experimental findings, including aspects of delayed time-temperature characteristics. We believe the comprehensive modeling strategy outlined here provides a groundwork for the development of anticipatory therapeutic planning tools with individually tailored treatment plans, resulting in an ultimate benefit to ailing cancer patients.
机译:等离子体纳米材料具有改善传统癌症消融方法的肿瘤特异性的巨大潜力,但很少有努力致力于定量了解其在肿瘤组织中的光热能转化。在目前的工作中,我们为体外激光照射下等离子体纳米材料辅助肿瘤破坏的预测模型。我们没有考虑具有启发性的,具有可调的组织吸收和散射系数的基于启发式的激光增强模型,而是考虑了活肿瘤组织内等离子纳米材料的光电热能转换和散热的基本特征,以构建能够准确再现我们实验结果的仿真工具,包括各个方面延迟的时间-温度特性。我们认为,这里概述的综合建模策略为开发具有个性化定制治疗计划的预期治疗计划工具提供了基础,从而为患病的癌症患者带来了最终的收益。

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