研究目的
Investigating the relationship between light and heat, bio-stability, and reaction temperature in lanthanide-based nanocomposites for photothermal therapy under near-infrared laser irradiation.
研究成果
The research concludes that PTT agents’ temperature increase curves under NIR laser are in line with the absorption peaks, NIR absorption quenches the visible UCL emission, and the stability of the composite may be decided by the synthesized temperature. UCNP@MnO2 is highlighted as the most suitable for cancer diagnosis and treatment due to its stimuli-response to the micro-acid environment of tumor cells.
研究不足
The study focuses on the relationship between light and heat, bio-stability, and reaction temperature in specific lanthanide-based nanocomposites. The generalizability to other materials and the long-term effects of PTT are not fully explored.
1:Experimental Design and Method Selection:
Designed several typical inorganic and organic PTT nanocomposites combined with UCL or NIR II imaging rare earth nanomaterials.
2:Sample Selection and Data Sources:
Used NaYF4:Yb,Er as the core UCNP coated with different organic/inorganic hybrids.
3:List of Experimental Equipment and Materials:
Included TEM for morphology images, UV-vis spectrophotometer for absorbance spectra, and Edinburgh FLS980 apparatus for UCL emission spectra.
4:Experimental Procedures and Operational Workflow:
Synthesized various nanocomposites, characterized their properties, and evaluated their photothermal effects in vitro and in vivo.
5:Data Analysis Methods:
Analyzed the relationship between morphology/absorption/luminescence/biostability and photothermal effect.
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Transmission electron microscopy
FEI Tecnai G2 STwin
FEI
Obtaining morphology images of nanoparticles.
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Edinburgh FLS980 apparatus
FLS980
Edinburgh
Obtaining UCL emission spectra.
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UV-1601 ultraviolet visible spectrophotometer
UV-1601
Recording absorbance spectra.
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980 nm laser diode module
MDL-III-980-2W
Irradiation source for UCL emission spectra.
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808 nm laser diode module
MDL-III-800-2.5W
Irradiation source for UCL emission spectra.
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inVision128 multi-spectral optoacoustic tomographic imaging system
MSOT
iTheraMedica
Photoacoustic imaging experiments.
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