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Spatiotemporal temperature distribution and cancer cell death in response to extracellular hyperthermia induced by gold nanorods

机译:金纳米棒诱导的细胞外热反应的时空温度分布和癌细胞死亡

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Plasmonic nanoparticles have shown promise in hyperthermic cancer therapy, both in vitro and in vivo. Previous reports have described hyperthermic ablation using targeted and nontargeted nanoparticles internalized by cancer cells, but most reports do not describe a theoretical analysis for determining optimal parameters. The focus of the current research was first to evaluate the spatiotemporal temperature distribution and cell death induced by extracellular hyperthermia in which gold nanorods (GNRs) were maintained in the dispersion outside human prostate cancer cells. The nanorod dispersion was irradiated with near-infrared (NIR) laser, and the spatiotemporal distribution of temperature was determined experimentally. This information was employed to develop and validate theoretical models of spatiotemporal temperature profiles for gold nanorod dispersions undergoing laser irradiation and the impact of the resulting heat generation on the viability of human prostate cancer cells. A cell injury/death model was then coupled to the heat transfer model to predict spatial and temporal variations in cell death and injury. The model predictions agreed well with experimental measurements of both temperature and cell death profiles. Finally, the model was extended to examine the impact of selective binding of gold nanorods to cancer cells compared to nonmalignant cells, coupled with a small change in cell injury activation energy. The impact of these relatively minor changes results in a dramatic change in the overall cell death rate. Taken together, extracellular hyperthermia using gold nanorods is a promising strategy, and tailoring the cellular binding efficacy of nanorods can result in varying therapeutic efficacies using this approach.
机译:在体外和体内,等离子纳米颗粒在高温癌症治疗中已显示出希望。先前的报道描述了使用癌细胞内在化的靶向和非靶向纳米粒子进行的高温消融,但是大多数报道并未描述用于确定最佳参数的理论分析。当前研究的重点是首先评估由细胞外热引起的时空温度分布和细胞死亡,其中金纳米棒(GNR)保持在人前列腺癌细胞外的分散体中。用近红外(NIR)激光照射纳米棒分散液,并通过实验确定温度的时空分布。该信息用于开发和验证金纳米棒分散液经历激光辐照时空温度曲线的理论模型,以及由此产生的热量对人前列腺癌细胞生存力的影响。然后将细胞损伤/死亡模型与传热模型耦合,以预测细胞死亡和损伤的时空变化。模型预测与温度和细胞死亡曲线的实验测量非常吻合。最后,该模型被扩展以检查与非恶性细胞相比,金纳米棒对癌细胞的选择性结合的影响,以及细胞损伤激活能的微小变化。这些相对较小的变化的影响导致总体细胞死亡率的急剧变化。综上所述,使用金纳米棒进行细胞外热疗是一种有前途的策略,使用这种方法定制纳米棒的细胞结合功效可导致多种治疗效果。

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