首页> 美国卫生研究院文献>Nanomaterials >Bifunctional Tm3+Yb3+:GdVO4@SiO2 Core-Shell Nanoparticles in HeLa Cells: Upconversion Luminescence Nanothermometry in the First Biological Window and Biolabelling in the Visible
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Bifunctional Tm3+Yb3+:GdVO4@SiO2 Core-Shell Nanoparticles in HeLa Cells: Upconversion Luminescence Nanothermometry in the First Biological Window and Biolabelling in the Visible

机译:HeLa细胞中的双功能Tm3 +Yb3 +:GdVO4 @ SiO2核壳纳米粒子:第一个生物窗口中的上转换发光纳米温度计和可见光中的生物标记

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摘要

The bifunctional possibilities of Tm,Yb:GdVO @SiO core-shell nanoparticles for temperature sensing by using the near-infrared (NIR)-excited upconversion emissions in the first biological window, and biolabeling through the visible emissions they generate, were investigated. The two emission lines located at 700 and 800 nm, that arise from the thermally coupled F and H energy levels of Tm , were used to develop a luminescent thermometer, operating through the Fluorescence Intensity Ratio ( ) technique, with a very high thermal relative sensitivity. Moreover, since the inert shell surrounding the luminescent active core allows for dispersal of the nanoparticles in water and biological compatible fluids, we investigated the penetration depth that can be realized in biological tissues with their emissions in the NIR range, achieving a value of 0.8 mm when excited at powers of 50 mW. After their internalization in HeLa cells, a low toxicity was observed and the potentiality for biolabelling in the visible range was demonstrated, which facilitated the identification of the location of the nanoparticles inside the cells, and the temperature determination.
机译:通过在第一个生物窗口中使用近红外(NIR)激发的上转换发射,并通过它们产生的可见发射进行生物标记,研究了Tm,Yb:GdVO @SiO核壳纳米粒子在温度传感中的双功能可能性。由Tm的F和H能级热耦合产生的两条分别位于700和800 nm处的发射线被用来开发一种发光温度计,通过荧光强度比()技术操作,具有很高的热相对灵敏度。 。此外,由于围绕发光活性核的惰性壳层允许纳米颗粒在水和生物相容性流体中分散,因此我们研究了在生物组织中实现的穿透深度,其发射在NIR范围内,达到0.8 mm的值。当以50 mW的功率激发时。它们在HeLa细胞中内化后,观察到低毒性,并证明了在可见光范围内进行生物标记的潜力,这有助于鉴定纳米粒子在细胞内的位置以及确定温度。

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