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基于 X 射线吸收光谱的光激活纳米级温度梯度检测:一种直接的纳米测温方法。

Photoactivated Nanoscale Temperature Gradient Detection Using X-ray Absorption Spectroscopy as a Direct Nanothermometry Method.

机构信息

IMDEA Nanociencia, c/Faraday, 9, 28049 Madrid, Spain.

Nanobiotecnología (IMDEA-Nanociencia), Unidad Asociada al Centro Nacional de Biotecnología (CSIC), 28049 Madrid, Spain.

出版信息

Nano Lett. 2021 Jan 13;21(1):769-777. doi: 10.1021/acs.nanolett.0c04477. Epub 2020 Dec 31.

Abstract

Nanoparticle-mediated thermal treatments have demonstrated high efficacy and versatility as a local anticancer strategy beyond traditional global hyperthermia. Nanoparticles act as heating generators that can trigger therapeutic responses at both the cell and tissue level. In some cases, treatment happens in the absence of a global temperature rise, damaging the tumor cells even more selectively than other nanotherapeutic strategies. The precise determination of the local temperature in the vicinity of such nanoheaters then stands at the heart of thermal approaches to better adjust the therapeutic thermal onset and reduce potential toxicity-related aspects. Herein, we describe an experimental procedure by X-ray absorption spectroscopy, which directly and accurately infers the local temperature of gold-based nanoparticles, single and hybrid nanocrystals, upon laser photoexcitation, revealing significant nanothermal gradients. Such nanothermometric methodology based on the temperature-dependency of atomic parameters of nanoparticles can be extended to any nanosystem upon remote hyperthermal conditions.

摘要

基于纳米颗粒的热疗方法已被证明作为一种超越传统全身热疗的局部抗癌策略具有高效性和多功能性。纳米颗粒可以作为加热发生器,在细胞和组织水平上引发治疗反应。在某些情况下,即使在没有全局升温的情况下,治疗也会发生,从而比其他纳米治疗策略更具选择性地破坏肿瘤细胞。因此,精确确定纳米加热器附近的局部温度是热疗方法的核心,可以更好地调整治疗性热触发并降低潜在的毒性相关方面。在此,我们通过 X 射线吸收光谱描述了一种实验程序,该程序可以直接、准确地推断出金基纳米颗粒、单纳米晶体和混合纳米晶体在激光光激发下的局部温度,揭示了显著的纳米热梯度。这种基于纳米颗粒原子参数对温度依赖性的纳米温度测量方法可以在远程过热条件下扩展到任何纳米系统。

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