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Plasmonic Nanocomposite Implants for Interstitial Thermotherapy: Experimental and Computational Analysis

机译:质位纳米复合材料植入物适用于间质热疗:实验和计算分析

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摘要

The ferromagnetic implant (thermoseeds) technique offers desirable features for interstitial thermotherapy. However, its efficacy has been reported to be limited by issues that are related to the properties of the metal alloys that are used to fabricate them and the high number of thermoseeds needed to achieve therapeutic temperature levels. Here, we present the results of a combination of experimental and computational analysis of plasmonic nanocomposite implants (photoseeds)—a combination of Au nanoparticles (NPs) and poly-dimethylsiloxane (PDMS)—as a model material. We performed structural and optical characterization of the Au NPs and repared Au-PDMS nanocomposites, followed by an elucidation of the heat generation capabilities of the Au-PDMS photoseeds in aqueous solution and in-vitro cancer cell suspension. Based on the experimental results, we developed a three-dimensional (3D) finite element method (FEM) model to predict in-vivo thermal damage profiles in breast tissue. The optical absorbance of the Au-PDMS photoseeds were increasing with the concentration of Au NPs. The photothermal measurements and the in-vivo predictions showed that the photothermal properties of the photoseeds, characteristics of the laser sources, and the duration of heating can be tuned to achieve therapeutic temperature levels under in-vitro and in-vivo conditions. Collectively, the results demonstrate the feasibility of using photoseeds for interstitial thermotherapy.
机译:铁磁植入物(热糖)技术为间质热疗提供了理想的特征。然而,据报道,它的功效受到与用于制造它们的金属合金的性质的问题和实现治疗温度水平所需的大量热寄生剂的问题。这里,我们介绍了等离子体纳米复合材料植入物的实验和计算分析的组合结果(光呈列)-A - A纳米颗粒(NPS)和聚二甲基硅氧烷(PDMS)的组合-A - 一种模型材料。我们对Au NPS和Repared的AU-PDMS纳米复合材料进行了结构和光学表征,然后阐明了在水溶液和体外癌细胞悬浮液中的AU-PDMS光素的发热能力。基于实验结果,我们开发了一种三维(3D)有限元方法(FEM)模型,以预测乳腺组织中的体内热损伤曲线。使用Au nps的浓度增加Au-pdms光度的光学吸光度。光热测量和体内预测结果表明,光递合,激光源的特性以及加热持续时间的光热性质可以调整,以在体外和体内条件下实现治疗温度水平。总的来说,结果证明了使用光性热疗法使用柔光剂的可行性。

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