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Advances in Bioinspired and Biomedical Materials Volume 2

Advances in Bioinspired and Biomedical Materials Volume 2

9780841232228
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Description
Bioinspired concepts are becoming increasingly integrated into materials and devices intended for medical applications. Biological organisms evolve within specific environmental constraints, giving rise to elegant and efficient strategies for fabricating materials that often outperform man-made materials of similar composition. A main goal of the interdisciplinary field of bioinspired materials is to unlock the secrets of this process-the composition, processing, self-assembly,hierarchical organization, and properties of biological materials-and use this information to synthesize and engineer novel functional materials for a variety of practical applications.The authors are from a variety of scientific disciplines, including biology, biochemistry, chemistry, physics, materials science, mechanical engineering, and bioengineering. This book will appeal to readers interested in the cross-disciplinary fertilization of new ideas in this emerging field. The second volume focuses on the bioinspired approaches using synthetic organic and inorganic materials, and on the fabrication using the materials for medical devices. Both volumes cover theinterdisciplinary fields of biological, synthetic, and the hybrid materials and describe their medical applications ranging from molecular to cellular levels.
Product Details
OUP USA
86793
9780841232228
9780841232228

Data sheet

Publication date
2018
Issue number
1
Cover
hard cover
Pages count
304
Dimensions (mm)
152 x 227
Weight (g)
684
  • Preface; Polymeric Materials; 1. From Biomaterial, Biomimetic, and Polymer to Biodegradable and Biocompatible Liquid Crystal Elastomer Cell Scaffolds; 2. Development of Redox Nanomedicine for Gastrointestinal Complications via Oral Administration Route; 3. Glycoglycan Mimic by Synthetic Polymers; 4. Plant Cell-Inspired Hydrogel Composites with High Mechanical Strength; 5. Synthesis and Temperature-Responsiveness of Poly(ethylene glycol)-like Biodegradable Poly(ether-ester)s; Inorganic/Hybrid Materials; 6. Synthesis of Calcium Phosphate Microspheres Using an Ultrasonic Spray-Pyrolysis Technique and Their Application as Novel Anti-Angiogenic Chemoembolization Agents for Cancer Treatment; 7. Bioinspired Design and Engineering of Functional Nanostructured Materials for Biomedical Applications; 8. Construction of Bio-Inspired Composites for Bone Tissue Repair; 9. CNT-Based and MSN-Based Organic/Inorganic Hybrid Nanocomposites for Biomedical Applications; Micro/Nano-Fabricated Devices; 10. In Vitro Design of Nanoparticles Using an Artificial 3D-Blood Vessel Wall Model for Atherosclerosis Treatment; 11. A Novel Cell Fusion Method for Direct Cytoplasmic Transfer Using a Microfluidic Device; 12. Biodegradable Polymeric Esophagus Stents; 13. Three-Dimensional Printing Technology Combined with Materials Drives Meniscal and Cartilaginous Regeneration; 14. Advances in Enhancing Mechanical Performance of Ultrahigh Molecular Weight Polyethylene Used for Total Joint Replacement; Indexes;
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