研究目的
To achieve synergistic chemo-photothermal therapy for cancer ablation by co-loading BPQDs and GA in PLLA-PEG-PLLA nanocomposites using SC-CO2 technology, enhancing photothermal stability and NIR-responsive drug release.
研究成果
The BGP nanocomposites fabricated using the SCF technology demonstrated enhanced photothermal stability and NIR-responsive release of GA, leading to effective synergistic chemo-photothermal therapy. This approach significantly downregulated HSP90 expression, reducing thermoresistance and promoting cancer cell apoptosis, offering a promising strategy for cancer therapy.
研究不足
The study focuses on the synergistic effects of BPQDs and GA in vitro and in vivo, but the long-term biodegradation and potential toxicity of BPQDs in humans require further investigation. The penetration depth of NIR light for deep-seated tumors is also a limitation.
1:Experimental Design and Method Selection:
Fabrication of BPQDs using liquid exfoliation combined with probe ultrasonication technique. Encapsulation of BPQDs and GA in PLLA-PEG-PLLA using the SAS process.
2:Sample Selection and Data Sources:
Human breast cancer cells (MCF-7, T47D) and human normal mammary epithelial cells (MCF-10A) were used.
3:List of Experimental Equipment and Materials:
TEM, SEM, UV-vis-NIR spectrophotometer, PXRD, XPS, Raman microscope, FTIR spectrophotometer, DLS, NIR laser, infrared thermal imaging camera.
4:Experimental Procedures and Operational Workflow:
Synthesis of BPQDs, encapsulation process, characterization, in vitro and in vivo evaluations including PA imaging, photothermal conversion efficiency, drug release, cytotoxicity, and Western blot analysis.
5:Data Analysis Methods:
Statistical analysis using one-way ANOVA followed by Bonferroni’s multiple comparison post hoc tests.
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X-ray Photoelectron Spectroscope
Thermo EscaLab 250Xi
Thermo
Chemical composition and valence analysis of BPQDs.
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Fourier-transform Infrared Spectrophotometer
Nicolet iS50
Thermo Fisher Scientific
FTIR spectra recording of nanocomposites.
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Dynamic Light Scattering
Nano-ZS
Malvern Instruments
Particle size distribution and zeta potential measurement of nanocomposites.
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Infrared Thermal Imaging Camera
Tis65
Fluke
Temperature recording during photothermal therapy.
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Transmission Electron Microscope
H-7650
Hitachi
Morphological assessment of BPQDs and nanocomposites.
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Scanning Electron Microscope
S4800
Hitachi
Morphological assessment and EDX spectroscopy of nanocomposites.
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UV-vis-NIR Spectrophotometer
TU-1810
PERSEE
Absorption spectra recording of nanocomposites.
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Powder X-ray Diffractometer
D8 Advance
Bruker AXS
PXRD patterns recording of BPQDs and nanocomposites.
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Raman Microscope
Horiba Jobin-Yvon Lab Ram HR VIS
Renishaw
Raman scattering analysis of BPQDs.
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NIR Laser
MDL-N-808 nm-10 W
New Industries Optoelectronics Technology
NIR irradiation for photothermal therapy.
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