Multifunctional upconversion nanoparticles based on NaYGdF4 for laser induced heating, non-contact temperature sensing and controlled hyperthermia with use of pulsed periodic laser excitation

Publication typeProceedings Article
Publication date2018-04-26
Abstract
For clinical application in photothermal therapy the nanoparticles should be efficient light-to-heat converters and luminescent markers. In this work, we investigate upconversion nanoparticles with NaYxGd1-xF4 (x=0-1) host lattice as self-monitored thermo-agents for bioimaging and local laser hyperthermia with real-time temperature control. The ability of non-contact temperature sensing using NaYxGd1-xF4 on one hand and laser induced heating on the other hand was shown. It was found, that the heat conversion luminescence efficiency is strongly affected by the concentration ratio of Gd3+ to Y3+ ions in host lattice. The optimal composition among the studied is NaY0.4Gd0.4Yb0.17Er0.03 with luminescence efficiency of 3.5% under 1 W/cm2 pumping power. Higher Gd3+ concentrations lead to higher heating temperature, but also to the decrease of the luminescence intensity and the accuracy of the ratiometric temperature determination. It was also shown that the optimization of Yb3+ doping concentration is one of the possible ways for optimization of the conditions of laser induced photothermal effects. Experimental in vitro study of hyperthermia with use of upconversion nanoparticles on HeLa and C6 cell lines was performed. The investigated nanoparticles are capable of in vitro photothermal heating, luminescent localization and thermal sensing.
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Pominova D. V. et al. Multifunctional upconversion nanoparticles based on NaYGdF4 for laser induced heating, non-contact temperature sensing and controlled hyperthermia with use of pulsed periodic laser excitation // Saratov Fall Meeting 2017. 2018.
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Pominova D. V., Ryabova A. V., Romanishkin I. D., Grachev P. V., Burmistrov I. A., Kuznetsov S. V. Multifunctional upconversion nanoparticles based on NaYGdF4 for laser induced heating, non-contact temperature sensing and controlled hyperthermia with use of pulsed periodic laser excitation // Saratov Fall Meeting 2017. 2018.
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TY - CPAPER
DO - 10.1117/12.2312484
UR - https://doi.org/10.1117/12.2312484
TI - Multifunctional upconversion nanoparticles based on NaYGdF4 for laser induced heating, non-contact temperature sensing and controlled hyperthermia with use of pulsed periodic laser excitation
T2 - Saratov Fall Meeting 2017
AU - Pominova, Daria V.
AU - Ryabova, Anastasia V
AU - Romanishkin, Igor D
AU - Grachev, Pavel V
AU - Burmistrov, Ivan A
AU - Kuznetsov, Sergei V
PY - 2018
DA - 2018/04/26
ER -
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@inproceedings{2018_Pominova,
author = {Daria V. Pominova and Anastasia V Ryabova and Igor D Romanishkin and Pavel V Grachev and Ivan A Burmistrov and Sergei V Kuznetsov},
title = {Multifunctional upconversion nanoparticles based on NaYGdF4 for laser induced heating, non-contact temperature sensing and controlled hyperthermia with use of pulsed periodic laser excitation},
year = {2018},
month = {apr}
}