Synthetic Polymerization in Living Systems
Editat de Jin Gengen Limba Engleză Hardback – 27 ian 2027
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Specificații
ISBN-13: 9783527353576
ISBN-10: 3527353577
Pagini: 224
Ilustrații: 50 schwarz-weiße und 150 farbige Abbildungen
Dimensiuni: 170 x 244 mm
Editura: Wiley-VCH GmbH
Locul publicării:Weinheim, Germany
ISBN-10: 3527353577
Pagini: 224
Ilustrații: 50 schwarz-weiße und 150 farbige Abbildungen
Dimensiuni: 170 x 244 mm
Editura: Wiley-VCH GmbH
Locul publicării:Weinheim, Germany
Notă biografică
Jin Geng is Principal Investigator and Director of the Centre for Polymers in Medicine at the Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences. A Fellow of the Royal Society of Chemistry, his research focuses on intracellular polymerization for cancer treatment and supramolecular self-assembly in living cells. He previously conducted postdoctoral research at the University of Cambridge and University of Edinburgh. He holds some 40 published papers and 10 filed patents, and has received the Conference Prize from the Chinese Chemical Society and the High-Value Patent Prize from the Chinese Society of Biomedical Engineering.
Cuprins
1 INTRODUCTION
1.1 Motivation for Synthesizing New Polymers Inside Living Systems
1.2 Comparison of Natural and Synthetic Polymers in Living Systems
1.3 Overview of the Scope and Content of the Book
2 POLYMERIZATION TECHNIQUES INSIDE LIVING SYSTEMS
2.1 Overview of polymerization techniques inside living systems
2.2 Comparison of the advantages and disadvantages of different techniques
2.3 Details on the polymerization of various monomers including acrylates, methacrylates, vinyl monomers, and others
2.4 Discussion on the use of bioorthogonal reactions for synthetic polymerization
3 DESIGN AND PREPARATION OF POLYMERS INSIDE LIVING SYSTEMS
3.1 Molecular design principles for synthetic polymers inside living systems
3.2 Supramolecular polymerization in living systems
4 APPLICATIONS OF SYNTHETIC POLYMERS INSIDE LIVING SYSTEMS
4.1 Polymerization in living system for bacteria infected Wound healing and monitoring
4.2 In Vivo Polymerization for preparing Bio-electronics device
4.3 Polymerization in living system for applications in Tissue Engineering
4.4 Polymerization in Living system for therapeutic applications
4.5 Polymerization in Living system for Bacterial Growth Inhibition, Selective binding and labelling, surface electric property Modification, Bacterial encapsulation and differentiation
5 BIOCOMPATIBILITY AND BIODEGRADABILITY OF SYNTHETIC POLYMERS INSIDE LIVING SYSTEMS
5.1 Biocompatibility polymerization components
5.2 Biocompatibility of polymerization reaction process
5.3 Precise spatiotemporal control for biocompatibility
5.4 Biological properties improvement of living systems after polymerization
5.5 Immunotoxicity from formed polymers
6 EMERGING TRENDS AND INNOVATIONS IN SYNTHETIC POLYMERIZATION
6.1 Sustainable and Green Polymerization
6.2 Advanced Functional Polymers
6.3 Advanced Polymer Processing Techniques
7 CONCLUSION
7.1 Synthesis of Core Concepts Across the Book
7.2 Conceptual Advances Enabled by In Situ Polymerization
7.3 Implications for Biomedical Technologies and Therapies
7.4 Challenges That Must Be Addressed
7.5 Future Outlook: Toward Integrated and Intelligent Polymer Systems
7.6 Concluding Remarks
1.1 Motivation for Synthesizing New Polymers Inside Living Systems
1.2 Comparison of Natural and Synthetic Polymers in Living Systems
1.3 Overview of the Scope and Content of the Book
2 POLYMERIZATION TECHNIQUES INSIDE LIVING SYSTEMS
2.1 Overview of polymerization techniques inside living systems
2.2 Comparison of the advantages and disadvantages of different techniques
2.3 Details on the polymerization of various monomers including acrylates, methacrylates, vinyl monomers, and others
2.4 Discussion on the use of bioorthogonal reactions for synthetic polymerization
3 DESIGN AND PREPARATION OF POLYMERS INSIDE LIVING SYSTEMS
3.1 Molecular design principles for synthetic polymers inside living systems
3.2 Supramolecular polymerization in living systems
4 APPLICATIONS OF SYNTHETIC POLYMERS INSIDE LIVING SYSTEMS
4.1 Polymerization in living system for bacteria infected Wound healing and monitoring
4.2 In Vivo Polymerization for preparing Bio-electronics device
4.3 Polymerization in living system for applications in Tissue Engineering
4.4 Polymerization in Living system for therapeutic applications
4.5 Polymerization in Living system for Bacterial Growth Inhibition, Selective binding and labelling, surface electric property Modification, Bacterial encapsulation and differentiation
5 BIOCOMPATIBILITY AND BIODEGRADABILITY OF SYNTHETIC POLYMERS INSIDE LIVING SYSTEMS
5.1 Biocompatibility polymerization components
5.2 Biocompatibility of polymerization reaction process
5.3 Precise spatiotemporal control for biocompatibility
5.4 Biological properties improvement of living systems after polymerization
5.5 Immunotoxicity from formed polymers
6 EMERGING TRENDS AND INNOVATIONS IN SYNTHETIC POLYMERIZATION
6.1 Sustainable and Green Polymerization
6.2 Advanced Functional Polymers
6.3 Advanced Polymer Processing Techniques
7 CONCLUSION
7.1 Synthesis of Core Concepts Across the Book
7.2 Conceptual Advances Enabled by In Situ Polymerization
7.3 Implications for Biomedical Technologies and Therapies
7.4 Challenges That Must Be Addressed
7.5 Future Outlook: Toward Integrated and Intelligent Polymer Systems
7.6 Concluding Remarks