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离子诱导的AgS发光纳米温度计中的偏差。

Ion-induced bias in AgS luminescent nanothermometers.

作者信息

París Ogáyar Marina, Mendez-Gonzalez Diego, Zabala Gutierrez Irene, Artiga Álvaro, Rubio-Retama Jorge, Calderón Oscar G, Melle Sonia, Serrano Aida, Espinosa Ana, Jaque Daniel, Marin Riccardo

机构信息

NanoBIG, Departamento de Física de Materiales, Facultad de Ciencias, Universidad Autónoma de Madrid, C/Francisco Tomás y Valiente 7, Madrid, Spain.

Nanobiology Group, Instituto Ramón y Cajal de Investigación Sanitaria (IRYCIS), Ctra. De Colmenar Viejo, Km. 9100, Madrid, Spain.

出版信息

Nanoscale. 2023 Nov 16;15(44):17956-17962. doi: 10.1039/d3nr03728b.

Abstract

Luminescence nanothermometry allows measuring temperature remotely and in a minimally invasive way by using the luminescence signal provided by nanosized materials. This technology has allowed, for example, the determination of intracellular temperature and monitoring of thermal processes in animal models. However, in the biomedical context, this sensing technology is crippled by the presence of bias (cross-sensitivity) that reduces the reliability of the thermal readout. Bias occurs when the impact of environmental conditions different from temperature also modifies the luminescence of the nanothermometers. Several sources that cause loss of reliability have been identified, mostly related to spectral distortions due to interaction between photons and biological tissues. In this work, we unveil an unexpected source of bias induced by metal ions. Specifically, we demonstrate that the reliability of AgS nanothermometers is compromised during the monitoring of photothermal processes produced by iron oxide nanoparticles. The observed bias occurs due to the heat-induced release of iron ions, which interact with the surface of the AgS nanothermometers, enhancing their emission. The results herein reported raise a warning to the community working on luminescence nanothermometry, since they reveal that the possible sources of bias in complex biological environments, rich in molecules and ions, are more numerous than previously expected.

摘要

发光纳米测温法能够通过利用纳米材料提供的发光信号以微创方式远程测量温度。例如,这项技术已可用于测定细胞内温度以及监测动物模型中的热过程。然而,在生物医学环境中,这种传感技术因偏差(交叉敏感性)的存在而受到影响,这降低了热读数的可靠性。当与温度不同的环境条件的影响也改变纳米温度计的发光时,就会出现偏差。已经确定了几个导致可靠性丧失的来源,主要与光子和生物组织之间相互作用引起的光谱畸变有关。在这项工作中,我们揭示了金属离子引起的意外偏差来源。具体而言,我们证明了在监测由氧化铁纳米颗粒产生的光热过程中,AgS纳米温度计的可靠性受到损害。观察到的偏差是由于热诱导的铁离子释放,铁离子与AgS纳米温度计的表面相互作用,增强了它们的发射。本文报道的结果向从事发光纳米测温法的研究群体发出了警告,因为它们表明,在富含分子和离子的复杂生物环境中,可能的偏差来源比以前预期的要多。

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