研究目的
To develop a multifunctional theranostic nanoplatform for effective cancer therapy by combining chemotherapy, photothermal therapy, and gene therapy.
研究成果
The multifunctional nanoplatform demonstrated excellent biocompatibility, tumor targeting, and significant antitumor efficacy under the synergistic effect of chemotherapy, photothermal therapy, and gene therapy, providing a new approach for cancer theranostics.
研究不足
The study may have limitations in the scalability of the nanoplatform for clinical applications and the potential immunogenicity of the components used.
1:Experimental Design and Method Selection:
The study designed a multifunctional nanoplatform using Ag2S QD as the core and mesoporous silica as the shell, modified with folic acid and desthiobiotin for targeting and controlled drug release.
2:Sample Selection and Data Sources:
HeLa and A549 cells were used for in vitro studies, and HeLa tumor-bearing nude mice were used for in vivo studies.
3:List of Experimental Equipment and Materials:
Ag2S QD, mesoporous silica, doxorubicin (DOX), avidin, desthiobiotin-modified survivin antisense oligonucleotide (db-DNA), and folic acid were used.
4:Experimental Procedures and Operational Workflow:
The synthesis of nanoparticles, drug loading, in vitro and in vivo imaging, and therapeutic efficacy studies were conducted.
5:Data Analysis Methods:
Fluorescence imaging, confocal microscopy, flow cytometry, western blot, and immunohistochemistry were used for data analysis.
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Ag2S QD
Used as the core for fluorescence imaging and photothermal therapy.
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Mesoporous silica
Used as the shell for drug loading and controlled release.
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Doxorubicin
Chemotherapeutic drug loaded into the mesoporous silica pores.
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Avidin
Used as "gatekeeper" to prevent leakage of DOX via desthiobiotin-avidin interaction.
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Desthiobiotin
Modified on the surface of nanoparticles for controlled release of DOX and db-DNA.
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Survivin antisense oligonucleotide
db-DNA
Inhibits survivin expression to induce apoptosis in tumor cells.
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Folic acid
Modified on the surface of nanoparticles for targeting tumor cells.
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808 nm laser
Used for photothermal therapy and fluorescence imaging.
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