Smart Ways of Biomaterial Designing Synthesis and Characterization : Prospects of Enhanced Application from Labs to Clinics

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Smart Ways of Biomaterial Designing Synthesis and Characterization : Prospects of Enhanced Application from Labs to Clinics

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  • 製本 Hardcover:ハードカバー版/ページ数 330 p.
  • 言語 ENG
  • 商品コード 9781032306780
  • DDC分類 610.28

Full Description

This book explores the design, synthesis, and characterization of natural and synthetic polymeric biomaterials for diverse biomedical applications, including drug delivery, tissue engineering, and antimicrobial coatings. It highlights advances in polymer chemistry, offering insights into the modification of polymers' properties to meet biomedical challenges. The book provides detailed strategies for material design and characterization, addressing practical issues faced by researchers. It also covers crucial aspects such as materials-tissue interaction, sterilization prior to in vivo use, and the characterization of biomaterials for development. Serving as a comprehensive guide for students, researchers, and professionals in the biomedical field, this book aims to bridge the gap between laboratory research and clinical applications.

Contents

Preface. Biomaterials: An Overview for Future Utility in the Biomedical Domain. Properties of Biomaterial. Designing of Materials for Biodegradation and Bio-Erosion. Natural Biopolymer. Polymer Blends and Composites—Biomedical Application. Biopolymer Complexation for the Development of Nano-Carriers and Nano-Drug Delivery Systems in the Food Industry. Biopolymers, Hydrogel and Their Effect on Drug Development. Application of Biomaterials in Tissue Engineering. Strategies for Development of Biofilms. Biological Response to Biomaterials. Host Response Immune Response to Polymeric Implants. Biopolymers in Phytomedicines, Preparations, and Applications. In Vitro Toxicity Assessment Techniques for Biomaterials. Rheological Characterization of Biomaterials. In Vivo Testing of Biomaterials in Animal Models. Index. Editors' Biography.

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