研究目的
To develop a new photothermal therapy agent (PL-UC-C3 nanoparticles) that integrates low toxicity, deep tissue penetration, and high laser energy absorption for effective cancer treatment.
研究成果
PL-UC-C3 nanoparticles effectively absorb 980 nm laser energy, transform it to visible light for C3, generating cascade amplified hyperthermia that successfully eliminates tumors with low toxicity, showing promise for clinical cancer treatment guided by fluorescence and CT imaging.
研究不足
The study is limited to specific cell lines (4T1 and HUVECs) and mouse models; clinical applicability in humans is not yet established. Potential optimization areas include scaling up production and further reducing any residual toxicity.
1:Experimental Design and Method Selection:
Designed PL-UC-C3 nanoparticles by encapsulating UCNPs and C3 into PCL-PEG for cascade amplified photothermal therapy. Used a 980 nm laser for deep penetration and low energy.
2:Sample Selection and Data Sources:
Used murine mammary carcinoma cell lines (4T1) and human umbilical vein endothelial cells (HUVECs) for in vitro studies, and Balb/c mice with 4T1 tumors for in vivo studies.
3:List of Experimental Equipment and Materials:
Included transmission electron microscopy (TEM), dynamic light scattering (DLS), X-ray diffraction (XRD), UV-vis spectrophotometry, fluorescence instrument, MTT assay, confocal laser scanning microscope (CLSM), thermal imager, IVIS Spectrum imager, 64-Detector CT, inductively coupled plasma mass spectrometry, and various chemicals like thulium oxide, gadolinium oxide, etc.
4:Experimental Procedures and Operational Workflow:
Synthesized UCNPs and PL-UC-C3 nanoparticles, characterized them, conducted cytotoxicity assays, intracellular internalization analysis, photothermal therapy studies, fluorescence and CT imaging, biodistribution analysis, in vivo antitumor effects, and long-term toxicity studies.
5:Data Analysis Methods:
Used Student's t-test with GraphPad Prism software for statistical analysis, with significance level P<0.05.
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UV-vis Spectrophotometry
UV3100
Shimadzu
Recording UV-vis absorbance spectra
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Fluorescence Instrument
FLS 980
Edinburgh
Recording up-conversion fluorescence
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Confocal Laser Scanning Microscope
CLSM 700
Zeiss
Observing intracellular internalization
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Imager
IVIS Spectrum
Perkin Elmer
Fluorescence imaging in vivo
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Inductively Coupled Plasma Mass Spectrometry
Agilent 7500 ce
Agilent
Quantifying biodistribution of nanoparticles
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Transmission Electron Microscopy
Tecnai 12
Philips Co., Ltd.
Observing morphological characteristics of samples
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Dynamic Light Scattering
BI-90Plus
Brookhaven Instruments
Measuring size and size distribution of samples
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X-ray Diffraction
Karlsruhe
Determining crystalline phases of samples
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Enzyme Mark Instrument
iMark
Bio-Rad Laboratories Inc.
Analyzing cell viability in MTT assay
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Thermal Imager
IRS 600
Fotric
Recording thermal images during PTT
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CT Scanner
Discovery CT 750HD
GE Amersham Healthcare System
Computed tomography imaging
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Fluorescence Microscope
XD-202
Jiang Nan
Observing H&E and ki67 staining
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GraphPad Prism
version 7.5
GraphPad
Statistical analysis software
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