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Biomimetic Nanoengineered Materials for Advanced Drug Delivery is an indispensable guide for new developments in biomimetic nanoengineering for advanced drug delivery applicati… Read more
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Immediately download your ebook while waiting for your print delivery. No promo code needed.
Biomimetic Nanoengineered Materials for Advanced Drug Delivery is an indispensable guide for new developments in biomimetic nanoengineering for advanced drug delivery applications. Focusing on the fundamentals of a new type of nanocarriers for drug delivery in the most recent miRNA therapeutics, the book provides readers with detailed knowledge from the basics, to the most recent innovations. Early chapters of the book discuss a range of drug delivery techniques, including nanofibers, biomimetic polymers, 3D bioprinting, nanotechnology and radiofrequency sensitive nanocarriers. Later chapters explore miRNA therapeutics, magnetic nanoparticles, nanogel-based and ROS-mediated drug delivery systems.
The book is a vital reference for biomaterials and nanomedicine researchers and clinicians with an interest in advanced drug delivery.
1. Introduction to smart drug delivery
2. Nanofibers based anticancer drug delivery platform
3. Biomimetic polymers for drug delivery and tissue engineering applications
4. Nanohybrid scaffold structures for smart drug delivery applications
5. 3D bioprinting for active drug delivery
6. Nano technology in Improving Medical Devices for smart drug delivery
7. Radiofrequency sensitive nanocarriers for cancer drug delivery
8. Targeting peptide modified polymeric nanoparticles for cardiac and pulmonary drug delivery applications
9. miRNA therapeutics: Applications of nanoparticles based gene delivery
10. Magnetic nanoparticles for targeted drug delivery and gene therapy
11. Nanogel based active drug delivery
12. ROS mediated drug delivery systems for anticancer therapy
13. Drug Eluting Stents: present and future perspectives
14. Remotely controlled drug delivery systems
15. Nanoparticle-Plasma proteins interactions: pitfalls and opportunities on cancer drug delivery
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