Item type | Home library | Class number | URL | Status | Date due | Barcode | |
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Electronic book | Hillingdon Hospitals Library Services (Hillingdon Hospitals NHS Foundation) Online | Link to resource | Available |
Chapter 1. Polymeric Micelle in Drug Delivery Applications -- Chapter 2. pH-responsive Biomaterialsin Drug Delivery -- Chapter 3. Stimuli-responsive hydrogels in drug delivery -- Chapter 4. Polysaccharide based biomaterials for dermal applications -- Chapter 5. Biomaterials in Gene Delivery -- Chapter 6. Polymeric nanoparticles for theranostic treatment of cancer -- Chapter 7. Smart Theranostic Biomaterials for Advanced Healthcare Application -- Chapter 8. Silk Fibroin-based Biomaterials in Biomedical Applications -- Chapter 9. Biomaterial based nanofibers scaffolds in tissue engineering application -- Chapter 10. Biomedical applications of inorganic biomaterials -- Chapter 11. Synthesis Biomaterials in Biomedical Applications -- Chapter 12. 3D Printed Biomaterials in Biomedical Application -- Chapter 13. Metallic biomaterials in biomedical applications -- Chapter 14. Ceramic biomaterials in advanced biomedical applications -- Chapter 15. Hybrid Biomaterials in Drug Delivery and Biomedical Applications -- Chapter 16. Graphene-polymer composites for biomedical applications -- Chapter 17. Applications of ionic liquids in pharmaceutical sciences -- Chapter 18. Metallic Biomaterials for Medical and Dental Prosthetic Applications.
This book explores in depth a wide range of functional biomaterials-based systems for drug, gene delivery, and biomedical aspects. The chapters cover newer technologies such as polymeric micelle, pH-responsive biomaterials, stimuli-responsive hydrogels, silk fibroin, inorganic biomaterials, synthetic biomaterials, 3D printed biomaterials, metallic biomaterials, ceramic and hybrid biomaterials. It also describes the theranostic approaches for cancer therapy, the biomaterials-based nanofibers scaffolds in tissue engineering, as well as the strategies applications of metallic biomaterials for the medical and dental prosthetic field. This newer and updated approach will be attractive for biomedical engineering students working on materials science in the development of novel drug delivery strategies. The book will be an important reference for researchers and professionals working on biomaterial research in the pharmaceutical and medical fields.
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