Description
Advances and Avenues in the Development of Novel Carriers for Bioactives and Biological Agents provides sound data on the utility of biological and plant-based drugs and describes challenges faced in all aspects offering indispensable strategies to use in the development of bioactive medicines. Bioactive based medications are commonly used throughout the world and have been recognized by physicians and patients for their therapeutic efficacy. Bioactive formulations, including their subordinates and analogs, address 50% of all medicines in clinical practice. Novel bioactive medicine transporters can cure many disorders by both spatial and transitory approaches and have various justifications in medicinal potential.This book presents information on the utility of natural, plant, animal and bioengineered bioactive materials. It is a fundamental source of information and data for pharmacognosists, pharmaceutical analysts, drug transport scientists and pharmacologists working in bioactive medications.- Advances information on various bioactive based medications, their sources, clinical consequences and transport strategies- Illustrates diverse transport systems for bioactives and derivatives, novel techniques for formulations, targeting strategies and fundamental qualities of developed bioactive carriers, and their safety concerns and standardization- Discusses distinctive transport systems, stability, upgraded dissolvability, and enhanced bioavailability of bioactives
Table of Contents
1. Challenges and Need of Delivery carriers for bioactives and Biological agents: An Introduction2. Natural product-based nanomedicine: polymeric nanocapsules as delivery cargoes of food bioactives and nutraceuticals for anticancer purposes3. The promising expedition of the delivery systems for monoclonal antibodies4. Innovative technological systems to optimize the delivery and therapeutic activity of antimicrobial drugs5. Tailoring Drug and Gene Co-delivery Nanosystems for Glioblastoma Treatment6. Polyelectrolyte multilayers for delivery of bioactives7. Magnetic nanocarriers of bioactives: structural and delivery system designs8. Iron bond bovine lactoferrin for treatment of anaemia associated with cancer cachexia9. Metallic-based nanocarriers: Methods employed in nanoparticle characterization and assessing the interaction with the blood-brain barrier10. Inorganic-based drug delivery systems of bioactives for cancer therapy11. Novel perspectives for treatment of brain diseases with bioactives12. Nanoparticle-based delivery of polyphenols for the treatment of inflammation-associated diseases13. Efficacy of promising flavonoids from Festuca, Lonicera, and Acacia genera against Glioblastoma Multiform: potential for the Dandenong Ranges of Victoria, Australia14. Targeting aspects for bioactive drugs15. Amphiphilic Block Co Polymers: A Smart option for Bioactives delivery16. Rheumatoid Arthritis: Basic Pathophysiology and role of chitosan nanoparticles in therapy17. Targeted delivery through Carbon nanomaterials: Applications in bioactive delivery system18. Liposomes and Phytosomes for Phytoconstituents19. Quality by Design and Formulation optimization using statistical tools for safe and efficient bioactive loading20. Commercial aspects and market potential of novel delivery systems for bioactives
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