研究目的
To develop a new ultrasound contrast agent containing nano-rGO encapsulated nanobubbles for visualization and enhanced photothermal therapy in hepatocellular carcinoma, targeting glypican-3 (GPC3) on HepG2 cells.
研究成果
The NBs-GPC3-rGO complex effectively targets HepG2 cells, enhances photothermal therapy under UTND and NIR irradiation, and allows real-time visualization, showing promise for noninvasive cancer treatment with a cell viability rate of 2.26% at 72 hours.
研究不足
The study is conducted in vitro, limiting direct applicability to in vivo or clinical settings. Potential optimizations include scaling up for animal studies and improving stability and dispersivity of the complexes.
1:Experimental Design and Method Selection:
The study involved synthesizing avidinylated nanobubbles (NBs) via a modified emulsification process, PEGylated reduced graphene oxide (rGO-PEG) using chemical reduction and functionalization, and biotinylated rGO-GPC3 for targeting. The biotin-avidin system was used to link components. Ultrasound-targeted nanobubble destruction (UTND) and near-infrared (NIR) irradiation were applied for therapy.
2:Sample Selection and Data Sources:
Human hepatocellular carcinoma HepG2 cells were used, purchased from Shanghai Yu Bo Biotech Co. Ltd. Materials included phospholipids, antibodies, and chemicals from specified suppliers.
3:List of Experimental Equipment and Materials:
Equipment included dental amalgamator (YJT Medical Apparatuses and Instruments), microscopes (DM3000, Leica; S-4100L, Hitachi), TEM (JEM-1011, JEOL), FTIR (Nicolet 380, Thermo Electron), XRD (Empyrean, Malvern Panalytical), UV-vis spectrometer (Lambda 35, PerkinElmer), Zetasizer Nano ZS90 (Malvern Instruments), flow cytometer (Becton Dickinson), microplate reader (BioTek), spectrophotometer (U-4100, Hitachi), and ultrasound equipment. Materials included DSPC, DSPE-PEG2000, DSPE-PEG2000-biotin (Avanti Polar Lipids), perfluoropropane gas, biotinylated antibodies, PEG, hydrazine monohydrate, etc.
4:Experimental Procedures and Operational Workflow:
Synthesis of NBs, rGO-PEG, and rGO-GPC3; conjugation via biotin-avidin; cell culture; binding assays; ultrasound destructibility tests; cytotoxicity assessment (CCK-8 assay); ROS detection; and in vitro photothermal therapy with UTND and NIR laser.
5:Data Analysis Methods:
Statistical analysis using SPSS 13.0 with ANOVA and Student's t-tests, significance at P<0.05.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
microscope
DM3000
Leica
Observation of nanobubbles
-
transmission electron microscope
JEM-1011
JEOL
Examination of nanobubble morphology
-
Fourier transform infrared spectrometer
Nicolet 380
Thermo Electron Corporation
Confirmation of covalent bonds in nano-GO-PEG and nano-rGO-PEG
-
X-ray diffractometer
Empyrean
Malvern Panalytical B.V.
Analysis of sample structure
-
UV-vis spectrometer
Lambda 35
PerkinElmer
Measurement of absorption spectra
-
Zetasizer
Nano ZS90
Malvern Instruments Ltd.
Determination of size distribution and zeta potential
-
spectrophotometer
U-4100
Hitachi
Measurement of optical absorbance
-
scanning electron microscope
S-4100L
Hitachi
Examination of cell and nanoparticle binding
-
dental amalgamator
YJT Medical Apparatuses and Instruments
Mechanical vibration for nanobubble synthesis
-
flow cytometer
Becton Dickinson
Assessment of fluorescence intensity
-
microplate reader
BioTek
Measurement of cell viability
-
hemocytometer
Bürker-Türk
Estimation of nanobubble concentration
-
Amicon centrifugal filters
EMD Millipore
Purification and removal of unconjugated materials
-
Raman Microprobe
LabRAM HR800
Horiba Scientific
Raman spectroscopy analysis
-
登录查看剩余12件设备及参数对照表
查看全部