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Developing Nanomedicine Approaches:Design,Synthesis,and Evaluation of New Nanomaterials for Cancer Therapy

摘要第4-6页
Abstract第6-7页
Abbreviations第8-16页
Chapter 1 Introduction第16-34页
    1.1 Introduction第16-18页
        1.1.1 Background and Motivation第16-18页
    1.2 Cancer Monotherapy第18-24页
        1.2.1 Photothermal Therapy (PTT)第18-21页
        1.2.2 Photodynamic Therapy (PDT)第21-23页
        1.2.3 Gene Therapy (GT)第23-24页
        1.2.4 Current Limitations in Monotherapy第24页
    1.3 Combination Therapy第24-26页
        1.3.1 Photothermal/Photodynamic Combination Therapy第25页
        1.3.2 Photothermal/Gene Combination Therapy第25-26页
        1.3.3 Imaging Guide Therapy第26页
    1.4 Future Challenges and Perspectives第26-27页
    1.5 Objectives第27页
    1.6 Thesis Organization第27-30页
    1.7 References第30-34页
Chapter 2 Plasmonic MoO_(3-x) Nanoparticles Incorporated in Prussian blue FrameworksExhibit Highly Efficient Dual Photothermal/Photodynamic Therapy第34-62页
    2.1 Introduction第34-35页
    2.2 Experimental Details第35-40页
        2.2.1 Chemicals and Reagents第35-36页
        2.2.2 Characterization第36-37页
        2.2.3 Synthesis Of PB-MoO_(3-x)NCs第37页
        2.2.4 Photothermal Effect Measurements第37-38页
        2.2.5 Detection of ROS under NIR Light Irradiation第38页
        2.2.6 Cell Lines and Cell Culture第38页
        2.2.7 CCK-8 Cell Viability Assay第38-39页
        2.2.8 Synergistic Photothermal and Photodynamic Killing Effect第39页
        2.2.9 Apoptosis Assay第39页
        2.2.10 Western Blotting第39页
        2.2.11 Animals and Tumor Models第39-40页
        2.2.12 TUNEL Assay第40页
    2.3 Results and Discussion第40-56页
        2.3.1 Synthesis and Characterization of PB-MoO_(3-x) Nanocomposites第40-47页
        2.3.2 Photothermal Conversion Performance of PB-MoO_(3-x)NCs第47-49页
        2.3.3 ROS Generation by PB-MoO_(3-x) NCs第49-51页
        2.3.4 In vitro Phototherapeutic Studies第51-53页
        2.3.5 In vivo Phototherapeutic Studies第53-56页
    2.4 Summary第56-57页
    2.5 References第57-62页
Chapter 3 Polydopamine Coated PB-MnO_2 Nanoparticles as an Oxygen GeneratorNanosystem for Imaging-Guided Single-NIR-Laser Triggered SynergisticPhotodynamic/Photothermal Therapy第62-90页
    3.1 Introduction第62-64页
    3.2 Experimental Details第64-70页
        3.2.1 Chemicals and Materials第64页
        3.2.2 Characterization第64-65页
        3.2.3 Synthesis of PB, PB-MnO_2 Nanoparticles第65页
        3.2.4 Synthesis of PB-MnO_2@PDA Nanoparticles第65-66页
        3.2.5 Ce6 Conjugated to PB-MnO_2@PDA Nanoparticles第66页
        3.2.6 Photothermal Effect Measurements第66页
        3.2.7 Oxygen Production of PB Nanomaterials第66页
        3.2.8 T1-MR Imaging Performance第66-67页
        3.2.9 Cell Lines and Cell Culture第67页
        3.2.10 Detection of ROS第67-68页
        3.2.11 Cell Uptake Assay第68页
        3.2.12 In vitro Cytotoxicity Assay第68页
        3.2.13 In vitro Hypoxia Relief第68-69页
        3.2.14 Apoptosis Assay第69页
        3.2.15 Tumour Model第69页
        3.2.16 In vivo Tumor Therapeutic Efficacy Study第69页
        3.2.17 Statistical Analysis第69-70页
    3.3 Results and Discussion第70-79页
        3.3.1 Design, Synthesis, and Photochemical Properties of Synthesized PB Nanomaterials第70-76页
        3.3.2 Photothermal Performance of PB Nanomaterials第76页
        3.3.3 Oxygen Production by PB Nanomaterials第76-77页
        3.3.4 T1-MRI Properties of PB Nanomaterials第77-78页
        3.3.5 Extracellular ROS Generation by PB Nanomaterials第78-79页
    3.4 In vitro Phototherapeutic Efficacy第79-82页
        3.4.1 Intracellular ROS Generation第79-80页
        3.4.2 Hypoxia Relief Effect第80-81页
        3.4.3 Cell Uptake and Cytotoxicity第81-82页
    3.5 In vivo Phototherapeutic Efficacy第82-85页
    3.6 Summary第85-86页
    3.7 References第86-90页
Chapter 4 Hematite@PEDOT Core-Shell Nanoparticles Exhibit Efficient PhotothermalGene Synergistic Therapy of Breast Cancer第90-109页
    4.1 Introduction第90-92页
    4.2 Experimental Details第92-94页
        4.2.1 Chemicals and Reagents第92页
        4.2.2 Characterization第92页
        4.2.3 Synthesis of Fe_2O_3, Fe_2O_3@PEDOT Core-Shell Nanoparticles第92-93页
        4.2.4 Synthesis of Fe_2O_3@PEDOT-siRNA Nanocomplexes第93页
        4.2.5 Measurements of Photothermal Performance第93页
        4.2.6 Cell Lines and Cell Culture第93-94页
        4.2.7 Cell Viability Assay第94页
    4.3. Results and Discussion第94-105页
        4.3.1 Synthesis and Characterization of Fe_2O_3@PEDOT Nanoparticles第94-99页
        4.3.2 Optical Properties of the Core-Shell Fe_2O_3@PEDOT NPs第99-100页
        4.3.3 Photothermal Performance of Fe_2O_3@PEDOT Core-Shell NPs第100-101页
        4.3.4 In vitro Photothermal Performance of Fe_2O_3@PEDOT Core-Shell NPs第101-103页
        4.3.5 In Vitro Synergistic Photothermal-Gene Therapy of Fe_2O_3@PEDOT-siRNANanocomplexes第103-105页
    4.4 Summary第105页
    4.5 References第105-109页
Acknowledgments第109-111页
List of Publications第111页

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