Buch, Englisch, 300 Seiten, Format (B × H): 191 mm x 235 mm
Buch, Englisch, 300 Seiten, Format (B × H): 191 mm x 235 mm
ISBN: 978-0-443-52627-5
Verlag: Elsevier Science
Biopolymer-Based Therapeutics for Inflammation Modulation in Wound Care presents a comprehensive, biomarker-driven exploration of how natural and engineered biopolymers are transforming the management of acute, chronic, and non-healing wounds. Positioned at the intersection of biomaterials science, pharmaceutical innovation, and clinical practice, the book addresses one of the central challenges in wound care: persistent inflammation that delays tissue repair and regeneration. Beginning with the biological and clinical foundations of wound healing, the book systematically examines inflammatory pathways and key biomarkers such as TNF-a, IL-6, ROS, and VEGF.
It then advances into in-depth coverage of natural biopolymers—including collagen, chitosan, hyaluronic acid, silk-derived polymers, and marine polysaccharides—and their roles in immune modulation, macrophage polarization, and redox balance. Dedicated sections explore advanced delivery platforms such as nanofibers, smart hydrogels, nanozymes, and stimuli-responsive dressings, alongside emerging precision technologies including 3D printing and AI-guided material design. With a strong translational focus, the book bridges laboratory research and real-world application, addressing regulatory pathways, manufacturing scalability, and commercialization challenges.
Autoren/Hrsg.
Weitere Infos & Material
Section I. Biological and Clinical Foundations
1. Physiology of Normal Wound Healing
2. Pathophysiology of Impaired and Chronic Wounds: Clinical Perspectives
3. Inflammation Biomarkers and Molecular Drivers of Delayed Healing
Section II. natural Biopolymers as Therapeutic Agents
4. Mechanisms of Natural Biopolymer-Driven Inflammatory Modulation
5. Established Biopolymers in Wound Care: Collagen, Chitosan, and Hyluronic Acid as modulators of Macrophage Polarization
6. Silk Fibroin, Silk Sericin, Keratin, and Chondroitin Sulfate: Roles in Cytokine Regulation and Biomedical Applications
7. Novel Natural Polymers and Hemostatic Agents in Acute and Chronic Wounds
8. Marine-Derived Polymers in Wound Healing Applications: Recent Advances and Future Prospects
III. Advanced Biopolymer Delivery Platforms
9. Biopolymer Dressings, Films, and Nanofiber Systems: Inflammation and ROS Modulation
10. Advanced Anti-Inflammatory Biomaterials: Nanozyme Systems, Catalytic Antioxidants, and Bioactive Nanoparticles
11. Protein-Derived Biomaterials for Redox Modulation and Regenerative Healing: Gelatin, Keratin, and Elastin
12. Stimuli-Responsive smart Biopolymer Dressings for ROS Control in Wound Healing
13. Biopolymer-Based Inflammation Modulation: Clinical Needs, Research Investigations and Regulatory Perspectives
Section IV. Precision Technologies in Wound Biopolymer Design
14. 3D-Printed Biopolmeric Constructs for Personalized Anti-Inflammatory Wound Repair
15. AI-Guided Design and Predictive Modelling of Inflammation modulating Biopolymer Therapeutics
Section V. Translation, Commercialization, and Global Impact
16. Regulatory Pathways, and Approval Frameworks for Biopolymer-Based Anti-inflammatory Therapies
17. Manufacturing Scalability, Clinical Adoption, and Commerical Challenges of Inflammation-Modulating Biopolymers
18. Future Directions: Integrating Biomarkers, Smart Materials, Standardized In-vivo Models and Patient-Centered Outcomes




