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Unveiling in Vivo Subcutaneous Thermal Dynamics by Infrared Luminescent Nanothermometers

机译:红外发光纳米温度计的体内皮下热动力学研究

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摘要

The recent development of core/shell engineering of rare earth doped luminescent nanoparticles has ushered a new era in fluorescence thermal biosensing, allowing for the performance of minimally invasive experiments, not only in living cells but also in more challenging small animal models. Here, the potential use of active-core/active-shell Nd3+ - and Yb3+-doped nanoparticles as subcutaneous thermal probes has been evaluated. These temperature nanoprobes operate in the infrared transparency window of biological tissues, enabling deep temperature sensing into animal bodies thanks to the temperature dependence of their emission spectra that leads to a ratiometric temperature readout. The ability of active-core/active-shell Nd3+- and Yb3+-doped nanoparticles for unveiling fundamental tissue properties in in vivo conditions was demonstrated by subcutaneous thermal relaxation monitoring through the injected core/shell nanoparticles. The reported results evidence the potential of infrared luminescence nanothermometry as a diagnosis tool at the small animal level.
机译:稀土掺杂的发光纳米粒子的核/壳工程技术的最新发展开创了荧光热生物传感的新纪元,不仅允许在活细胞中而且在更具挑战性的小动物模型中进行微创实验。在这里,已评估了活性核/活性壳Nd3 +和Yb3 +掺杂的纳米粒子作为皮下热探针的潜在用途。这些温度纳米探针在生物组织的红外透明窗口中工作,这归因于其发射光谱的温度依赖性,从而可以进行比例温度读数,从而能够对动物体内进行深层温度感测。通过注射的核/壳纳米颗粒的皮下热松弛监测证明了活性核/活性壳Nd3 +和Yb3 +掺杂的纳米颗粒在体内条件下揭示基本组织特性的能力。报告的结果证明了红外发光纳米温度计在小动物水平上作为诊断工具的潜力。

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