研究目的
To synthesize and apply a nano doxorubicin-indocyanine green matrix metalloproteinase-responsive hydrogel (NDIMH) for chemophototherapy in head and neck squamous cell carcinoma (HNSCC), aiming to achieve superior antitumor efficacy with minimal systemic toxicity.
研究成果
NDIMH with 808 nm NIR irradiation demonstrated effective synergistic antitumor activity, sustained drug release, excellent photosensitivity, and good biosafety in HNSCC models, making it a promising candidate for localized chemophototherapy with reduced systemic toxicity.
研究不足
The study is limited to in vitro and animal models (SCC-15 cells and nude mice), which may not fully translate to human clinical applications. The specific MMP-2 responsiveness might not cover all tumor microenvironments, and long-term biosafety and potential immune responses were not extensively studied.
1:Experimental Design and Method Selection:
The study involved synthesizing NDIMH using a solvent-antisolvent method for nanoparticles and cross-linking with HA-Ac and HS-MMP-SH. Methods included SEM, TEM, DLS for characterization, MTT assays for cytotoxicity, drug-release assays, photothermal and photodynamic tests, in vitro cellular studies (scratch and invasion assays), and in vivo antitumor tests in nude mice.
2:Sample Selection and Data Sources:
SCC-15 cells were used for in vitro studies, and BALB/c nude mice with SCC-15 xenografts for in vivo studies. Data were sourced from experimental measurements and imaging systems.
3:List of Experimental Equipment and Materials:
Equipment included SEM (JSM-701), TEM (TECNAI 20), DLS (Malvern Zeta Sizer Nano Instrument ZS90), in vivo imaging system (Maestro EX), infrared camera (TiS20), CLSM (TCS-SP5), spectrophotometer (Epoch Multi-Volume Spectrophotometer System). Materials included DOX hydrochloride, ICG, MMP-2, HA-Ac, HS-MMP-SH, and various reagents from suppliers like Sigma-Aldrich, Sino Biological, Hyclone, Beyotime.
4:Experimental Procedures and Operational Workflow:
Synthesis of nano DOX and nano ICG, preparation of HA-Ac, loading into hydrogel, characterization, in vitro degradation and release assays, photothermal and ROS tests, cellular uptake and cytotoxicity assays, in vivo tumor model establishment, intratumoral injections with NIR irradiation, imaging, and histological analysis.
5:Data Analysis Methods:
Statistical analysis using GraphPad Prism 7 with Student's t-test and one-way ANOVA, image analysis with ImageJ software.
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Scanning Electron Microscope
JSM-701
JEOL
Used for morphological examination of hydrogels and nanoparticles.
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Transmission Electron Microscope
TECNAI 20
FEI
Used for morphological and particle size examination of nanodrugs.
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Dynamic Light Scattering Instrument
Zeta Sizer Nano Instrument ZS90
Malvern
Used to measure size, surface potential, and size distribution of nanodrugs.
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Infrared Imaging Camera
TiS20
Fluke
Used for infrared thermographic mapping during laser irradiation.
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Confocal Laser Scanning Microscope
TCS-SP5
Leica
Used for cellular uptake visualization via fluorescence microscopy.
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In Vivo Imaging System
Maestro EX
Cambridge Research & Instrumentation
Used for monitoring imaging and biodistribution of NDIMH in vivo.
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Spectrophotometer System
Epoch Multi-Volume Spectrophotometer System
BioTek
Used for measuring absorption of samples at specific wavelengths for drug release assays.
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Transwell System
Not specified
Millipore
Used for in vitro invasion assays.
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