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基于等离子体聚合技术构建多功能心血管植入材料表面及其生物相容性研究

摘要第6-8页
Abstract第8-9页
Chapter 1 Introduction第13-59页
    1.1 Current Status of Research and Application in Vascular Stents第13-26页
        1.1.1 Bare metal stents第14-15页
        1.1.2 Drug eluting stents第15-19页
        1.1.3 Biodegradable stents第19-22页
        1.1.4 EPC-capture stents第22-23页
        1.1.5 Time sequence functional stents第23-26页
    1.2 Surface Modification of Cardiovascular Materials and Implants第26-46页
        1.2.1 Blood-biomaterial interfacial events and interaction mechanism第27-29页
        1.2.2 Surface modification for improving hemocompatibility第29-38页
        1.2.3 Biomimic endothelialization promoted surface modification第38-46页
    1.3 Research Progress of Plasma Polymerization in Biomedical Materials第46-56页
        1.3.1 A brief introduction of plasma and plasma polymerization第46-48页
        1.3.2 Alternative deposition of different functional groups第48-53页
        1.3.3 Plasma polymerization surface modification for biomedical materials第53-56页
    1.4 Significance and Objectives, Dissertation Layout and Technical route第56-59页
        1.4.1 Significance and objectives of research第56-57页
        1.4.2 Dissertation layout第57-58页
        1.4.3 Technical route第58-59页
Chapter 2 Multifunctional Plasma Polymerized Film:Towards Better AnticorrosionProperty, Enhanced Cellular Growth Ability, and Attenuated Inflammatory Responses第59-82页
    2.2 Introduction第60-61页
    2.3 Experimental Section第61-65页
        2.3.1 Chemicals and reagents第61页
        2.3.2 Preparation of plasma polymerized films第61-62页
        2.3.3 Surface characterization第62页
        2.3.4 Quantification of amine groups by acid orange Ⅱ第62-63页
        2.3.5 Electrochemical corrosion tests第63页
        2.3.6 Protein adsorption via micro-BCA assays and QCM-D measurement第63-64页
        2.3.7 In vitro cellular responses第64页
        2.3.8 Anti-inflammatory effects第64-65页
        2.3.9 In vivo animal tests第65页
        2.3.10 Statistical analysis第65页
    2.4 Results第65-75页
        2.4.1 Surface characterization第65-69页
        2.4.2 Electrochemical corrosion measurements第69-70页
        2.4.3 Protein adsorption第70-71页
        2.4.4 Cell Morphology, adhesion and viability第71-73页
        2.4.5 Macrophage response and cytokine release第73-74页
        2.4.6 In vivo animal study第74-75页
    2.5 Discussion第75-81页
    2.6 Conclusion第81-82页
Chapter 3 Improvement of Corrosion Resistance and Biocompatibility ofBiodegradable Metallic Vascular Stent via Plasma Allylamine Polymerized Coating第82-99页
    3.2 Introduction第83-84页
    3.3 Experimental Section第84-87页
        3.3.1 Chemicals and reagents第84-85页
        3.3.2 Preparation of plasma polymerized films第85页
        3.3.3 Surface characterization of PPAam coated MgZnMn and Fe samples第85页
        3.3.4 Electrochemical tests and analysis of corrosion products第85-86页
        3.3.5 ECs responses in direct culture with biodegradable coated metals第86页
        3.3.6 Morphology examination and balloon expansion tests第86-87页
    3.4 Results and Discussion第87-97页
        3.4.1 Physico-chemical properties of PPAam coated MgZnMn and Fe第87-90页
        3.4.2 Electrochemical corrosion behavior and analysis of corrosion products第90-94页
        3.4.3 Adhesion and proliferation of ECs第94-96页
        3.4.5 Morphology examination and balloon expansion tests第96-97页
    3.5 Conclusions第97-99页
Chapter 4 Immobilization of DNA Aptamers via Plasma Polymerized Allylamine Filmto Construct an Endothelial Progenitor Cell-Capture Surface第99-121页
    4.2 Introduction第100-101页
    4.3 Experimental and Section第101-105页
        4.3.1 Chemicals and reagents第101页
        4.3.2 Preparation of plasma polymerized films第101-102页
        4.3.3 Immobilization of the EPC-aptamer第102页
        4.3.4 Surface characterization第102页
        4.3.5 QCM-D real time monitoring of aptamer immobilization第102-103页
        4.3.6 Platelet adhesion and morphology第103页
        4.3.7 Cell isolation,culture and identification第103-104页
        4.3.8 Cell capture and proliferation behavior第104页
        4.3.9 Competitive adhesion of EPC/EC and EPC/SMC via co-culture第104-105页
        4.3.10 Statistical analysis第105页
    4.4 Results and Discussion第105-119页
        4.4.1 Surface morphology roughness and wettability第105-106页
        4.4.2 Chemical surface compositions and quantitative characteristics第106-110页
        4.4.3 Platelet adhesion and morphology第110-111页
        4.4.4 Selective cell attachment and proliferation第111-119页
    4.5 Conclusion第119-121页
Chapter 5 In-situ Release of Nitric Oxide Combined Heparinized Plasma PolymerizedAllylamine Films for Constructing Multifunctional Hemocompatible Surface andAccelerating Endothelialization第121-147页
    5.2 Introduction第122-124页
    5.3 Experimental Section第124-129页
        5.3.1 Chemicals and reagents第124页
        5.3.2 Preparation of plasma polymerized films第124页
        5.3.3 Sequential immobilization of heparin and SeCA第124页
        5.3.4 Quantification of amine groups第124-125页
        5.3.5 Analysis of chemical structure and compositions第125页
        5.3.6 QCM-D real time monitoring of sequential immobilization process第125页
        5.3.7 Catalytic release of NO behavior第125-126页
        5.3.8 cGMP analysis, anti-Xa assays and whole blood culture第126-127页
        5.3.9 ECs, SMCs and EPCs culture第127页
        5.3.10 Adhesion and proliferation of ECs, SMCs and EPCs第127-128页
        5.3.11 Effect of NO on mobilization of EPCs via transwell plate第128-129页
        5.3.12 Competitive adhesion of EC/SMC and EPC/SMC via co-culture第129页
        5.3.13 Statistical analysis第129页
    5.4 Results and Discussion第129-145页
        5.4.1 Sequential coimmobilization of heparin and SeCA on PPAam coating第129-131页
        5.4.2 Dynamic detection of NO release from PPAam-Hep-SeCA surface第131-133页
        5.4.3 cGMP analysis, anti-Xa assay and whole blood culture tests第133-136页
        5.4.4 Synergistic effects of heparin and NO on vascular cell growth behavior第136-145页
    5.5 Conclusion第145-147页
Chapter 6 Summary and Future Research第147-152页
    6.1 Summary of Thesis第147-148页
    6.2 Limitation of Current Research第148-150页
    6.3 Recommendation for Future Research第150-152页
Acknowlegements第152-154页
References第154-178页
Abbreviation List第178-179页
Scientific achievements第179-182页
    1. Publications第179-181页
    2. Patents第181页
    3. Confernce Presentations第181-182页
    4. Foundation第182页
    5. Awards and Honors第182页

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