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Design and Development of New Nanocarriers focuses on the design and development of new nanocarriers used in pharmaceutical applications that have emerged in recent years. In particular, the pharmaceutical uses of microfluidic techniques, supramolecular design of nanocapsules, smart hydrogels, polymeric micelles, exosomes and metal nanoparticles are discussed in detail. Written by a diverse group of international researchers, this book is a valuable reference resource for those working in both biomaterials science and the pharmaceutical industry.
- Shows how nanomanufacturing techniques can help to create more effective, cheaper pharmaceutical products- Explores how nanofabrication techniques developed in the lab have been translated to commercial applications in recent years- Explains safety and regulatory aspects of the use of nanomanufacturing processes in the pharmaceutical industry
1. Bilayer-Based Drug Carriers: Liposomes, polymersomes and niosomes2. Recent advances in micellar-like polyelectrolyte/protein complexes: design and development of biopharmaceuticals3. Calixarene-based micelles: properties and applications4. Preparation of Janus Nanoparticles and its Application in Drug Delivery5. Supramolecular design of hydrophobic and hydrophilic polymeric nanoparticles6. Cationic Polyelectrolyte-Biopolymer Complex Hydrogel Particles for Drug Delivery7. Smart micelleplexes: An overview of a promising and potential nanocarrier for alternative therapies8. Polymeric Micelles as a Versatile Tool in Oral Chemotherapy9. Mixed micelles as drug delivery nanocarriers10. Amphiphilic block copolymers based micelles for drug delivery11. Synthesis and evolution of polymeric nanoparticles: development of an improved gene delivery system12. Protein and drug imprinted nanostructures as controlled delivery tools13. Application of Complex Coacervates in Controlled Delivery14. Hydrogels: biomedical uses15. Development of nanocapsules derived from viral capsid proteins for medical applications16. Layer-by-Layer coated drug-core nanoparticles as versatile delivery platforms17. Effect of a-cyclodextrin Nanoparticles on the Structure of Iodine Complexes with Polypeptides and Alkali Metal Halogenides and on the Mechanisms of their Anti-HIV and Anti-cancer Activity18. Nanocarriers for the delivery of Temozolomide in the treatment of Gliobastoma: A review