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Functionalized Laponite Nanodisks as a Platform for Anticancer Drug Delivery and Molecular Imaging

中文摘要第5-7页
ABSTRACT第7-9页
CHAPTER 1 INTRODUCTION AND LITERATURE REVIEW第19-49页
    1.1. Introduction第19-27页
        1.1.1. Drug delivery第19-23页
        1.1.2. Medical Image techniques第23-27页
    1.2. Literature review第27-33页
        1.2.1. Dendrimer第27页
        1.2.2. Structure of dendrimer第27-28页
        1.2.3. G2 dendrimer第28-30页
        1.2.4. Synthesis of dendrimer第30-31页
        1.2.5. Mechanism of Denderimer as drug carrier第31-32页
        1.2.6. Physical Encapsulation of Drug Molecules第32页
        1.2.7. Chemical Conjugation of Drug第32-33页
    1.3. Application of denderimer in pharmaceutical and medicine field第33-38页
        1.3.1. Dendrimers in drug delivery第33-35页
        1.3.2. Dendrimers as imaging agents第35-36页
        1.3.3. Doxorubicin (DOX)第36页
        1.3.4. Laponite (LAP)第36-37页
        1.3.5. Laponite as drug and imaging agents第37-38页
        1.3.6. CT imaging第38页
        1.3.7. MR imaging第38页
    1.4. References第38-49页
CHAPTER 2 DENDRIMER-FUNCTIONALIZED LAPONITE NANODISKS AS APLATFORM FOR ANTICANCER DRUG DELIVERY第49-74页
    2.1. Introduction第49-51页
    2.2. Results and Discussion第51-62页
        2.2.1. Synthesis and characterization of LM-G2第51-55页
        2.2.2. Loading efficiency of DOX into LM-G2 nanodisks第55-56页
        2.2.3. Release profile of DOX from LM-G2/DOX Complexes第56-57页
        2.2.4. Antitumor efficacy of the LM-G2/DOX complexes第57-60页
        2.2.5. Intracellular uptake of LM-G2/DOX complexes第60-62页
    2.3. Experimental section第62-66页
        2.3.1. Materials第62-63页
        2.3.2. Synthesis of LM-G2 nanodisks第63页
        2.3.3. Characterization第63-64页
        2.3.4. Loading of DOX within the LM-G2 nanodisks第64页
        2.3.5. In vitro drug release kinetics第64-65页
        2.3.6. Cell culture and cytotoxicity assay第65-66页
        2.3.7. FCM Analysis第66页
        2.3.8. CLSM imaging第66页
    2.4. Conclusion第66-67页
    2.5. References第67-72页
    2.6. Chapter summary第72-74页
CHAPTER 3 DENDRIMER FUNCTIONALIZED LAPONITE LOADED WITHGADOLINIUM FOR T_1-WEIGHTED MR IMAGING APPLICATIONS第74-100页
    3.1. Introduction第74-76页
    3.2. Experimental section第76-81页
        3.2.1. Materials第76-77页
        3.2.2. Synthesis of LM-G2 nanodisks第77页
        3.2.3. Formation of LM-G2-DTPA(Gd) complexes第77-78页
        3.2.4. Characterization techniques第78-79页
        3.2.5. Cell culture and cytotoxicity assay第79页
        3.2.6. In vitro T_1-weight MR imaging of cancer cells第79-80页
        3.2.7. In vivo MR imaging第80页
        3.2.8. In vivo MR imaging of He La tumor model第80-81页
        3.2.9. In vivo biodistribution of LM-G2-DTPA(Gd)第81页
    3.3. Results and discussion第81-94页
        3.3.1. Synthesis and characterization of LM-G2-DTPA(Gd)第81-87页
        3.3.2. Cytotoxicity assay of LM-G2-DTPA(Gd) complexes第87-88页
        3.3.3. T_1-weighted MR relaxometry第88-89页
        3.3.4. MR imaging of cancer cells In vitro第89-90页
        3.3.5. MR imaging of animal organs第90-91页
        3.3.6. MR imaging of tumor第91-93页
        3.3.7. In vivo biodistribution of LM-G2-DTPA(Gd)第93-94页
    3.4. Conclusion第94页
    3.5. References第94-99页
    3.6. Chapter summary第99-100页
CHAPTER 4 SYNTHESIS OF DIATRIZOIC ACID MODIFIED LAPONITECOMPLEXES FOR CT IMAGING APPLICATIONS第100-120页
    4.1. Introduction第100-102页
    4.2. Experimental第102-106页
        4.2.1. Materials第102页
        4.2.2. Synthesis of LM-NH_2 NPs第102-103页
        4.2.3. Conjugation of DTA onto the surface of LM-NH_2 NPs第103页
        4.2.4. Acetylation of LM-NH_2-DTA NPs第103页
        4.2.5. Characterization techniques第103-104页
        4.2.6. Cell culture and cytotoxicity assay第104-105页
        4.2.7. In vivo CT imaging of organs第105页
        4.2.8. In vivo CT imaging of He La tumor model第105-106页
    4.3. Results and discussion第106-114页
        4.3.1. Synthesis and characterization of LM-NHAc-DTA NPs第106-110页
        4.3.2. X-ray attenuation measurements of the LM-NHAc-DTA NPs第110-111页
        4.3.3. Cell viability of the LM-NHAc-DTA NPs第111-112页
        4.3.4. In vivo CT imaging of organs第112-113页
        4.3.5. In vivo CT imaging of tumors第113-114页
    4.4. Conclusion第114-115页
    4.5. References第115-118页
    4.6. Chapter summary第118-120页
CHAPTER 5 CONCLUSIONS AND RECOMMENDATIONS第120-123页
    5.1. Conclusion第120-122页
    5.2. Recommendations for the future research第122-123页
Acknowledgements第123-124页
Publications during Ph.D study第124-125页
Awards and Prizes during Ph.D study第125页

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