Bionanocomposites in Tissue Engineering and Regenerative Medicine explores novel uses of these in tissue engineering and regenerative medicine.
This book offers an interdisplinary approach, combining chemical, biomedical engineering, materials science and pharmacological aspects of the characterization, synthesis and application of bionanocomposites. Chapters cover a broad selection of bionanocomposites including chitosan, alginate and more, which are utilized in tissue engineering, wound healing, bone repair, drug formulation, cancer therapy, drug delivery, cartilage regeneration and dental implants. Additional sections of Bionanocomposites in Tissue Engineering and Regenerative Medicine discuss, in detail, the safety aspects and circular economy of bionanocomposites - offering an insight into the commercial and industrial aspects of these important materials.
Bionanocomposites in Tissue Engineering and Regenerative Medicine will prove a highly useful text for for those in the fields of biomedical engineering, chemistry, pharmaceutics and materials science, both in academia and industrial R&D groups.
- Each bionanocomposite type is covered individually, providing specific and detailed information for each material
- Covers a range of tissue engineering and regenerative medicine applications, from dental and bone engineering to cancer therapy
- Offers an integrated approach, with contributions from authors across a variety of related disciplines, including biomedical engineering, chemistry and materials science
Reihe
Sprache
Verlagsort
Verlagsgruppe
Elsevier Science & Techn.
Illustrationen
Approx. 240 illustrations (40 in full color)
Dateigröße
ISBN-13
978-0-12-821634-7 (9780128216347)
Schweitzer Klassifikation
1. Bionanocomposites: An overview2. Processing of bionanocomposites3. Techniques and methods used for the fabrication of bionanocomposites4. Characterization of bionanocomposites5. Bionanocomposite hydrogels for regenerative medicine and biomedical applications6. Nanofiber-integrated hydrogel as nanocomposites for tissue engineering7. Chitosan-based bionanocomposites in wound healing8. Chitosan-based bionanocomposite in regenerative medicine9. Chitosan-based bionanocomposites in drug delivery10. Chitosan-based bionanocomposites in tissue engineering11. Chitosan-based bionanocomposites in bone tissue engineering12. Chitosan-based bionanocomposites in osteoporosis13. Chitosan-based bionanocomposites in dental applications14. Chitosan-based bionanocomposites for cancer therapy15. Chitosan-based bionanocomposites in medical textile16. Alginate-based bionanocomposites in dental applications17. Alginate-based bionanocomposites in tissue engineering18. Alginate-based bionanocomposites in wound dressings19. Alginate-based bionanocomposites in medical textiles20. Applications of alginate-based bionanocomposites in drug delivery21. Alginate-based bionanocomposites for cancer therapy21. Starch-based bionanocomposites in tissue engineering and regenerative medicines22. Cellulose-based bionanocomposites in tissue engineering and regenerative medicine23. PCL-based bionanocomposites in tissue engineering and regenerative medicine24. PLA-based bionanocomposites in tissue engineering and regenerative medicine25. Agricultural waste-based bionanocomposites in tissue engineering and regenerative medicine26. Bionanocomposites in tissue engineering and regenerative medicine27. Pullulan-based bionanocomposites in tissue engineering and regenerative medicine28. Cytotoxicity of bionanocomposites in the treatment of dentine hypersensitivity29. Cytotoxicity and biocompatibility of bionanocomposites30. Commercialization of bionanocomposites31. Future perspectives of bionanocomposites