Polymeric Micelles for Drug Delivery

Polymeric Micelles for Drug Delivery

Greish, Khaled; Kesharwani, Prashant

Elsevier Science Publishing Co Inc

08/2022

714

Mole

Inglês

9780323898683

15 a 20 dias

1000

Descrição não disponível.
Part A: Synthesis and characterization of polymeric micelles for drug delivery 1. Polymeric micelles: pre? cis for past, present, and future 2. Various polymers in the development of polymeric micelles 3. Solubility enhancement and drug release mechanism of polymeric micelles 4. Polymeric micellar nanomedicine for enhanced permeability and retention effect 5. Polymeric micelles for oral drug delivery 6. Polymeric micellar nanocarriers: topical treatment of inflammatory diseases

Part B: Application of polymeric micelles in drug delivery 7. Polymeric micelles in dermal and transdermal drug delivery 8. Polymeric micelles as delivery systems for anticancer immunotherapy 9. Polymeric micelles for drug delivery in oncology 10. Surface engineering of polymeric micelles for imparting multifunctionality 11. Cellular interaction of polymeric micelles in targeted drug delivery systems: the road from tissue to cell

Part C: Stimuli-responsive polymeric micelles for drug delivery 12. pH-responsive polymeric micelles for drug delivery 13. Enzyme-responsive polymeric micelles for drug delivery applications 14. Light- and temperature-responsive polymeric micelles for drug delivery 15. Exogenous stimuli 16. Dual-responsive polymeric micelles for drug delivery

Part D: Recent advances in polymeric micelles 17. Polymeric micelles for drug codelivery 18. Nose-to-brain delivery 19. The application of a drug 20. Polymeric micelles with cleavable links for drug delivery 21. Block copolymer micelles as long-circulating drug delivery vehicles 22. Triblock polymeric micelles as an emerging nanocarrier for drug delivery

Part E: Environmental and regulatory aspects 23. Biological toxicity and environmental hazards associated with polymeric micelles 24. Clinical translation of polymeric micelles into market 25. Regulatory pathways and prospects for polymeric micelles
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ABC triblock copolymer; Absorption; Animals; Antibodies; Applications; Aptamers; Biopharmaceutical classification system; Biopolymer; Cancer vaccines; Cell membrane; Cell receptors; Cell-penetrating peptide; Cellular uptake mechanism; Checkpoint inhibitors; Chemotherapy; Chimeric antigen receptor-expressing T cells; Cleavable links; Conjugate; Covalent conjugation; Critical micellar concentration; Critical micelle concentration (CMC); Cyclodextrin; Cytotoxicity; Dermal topical drug administration; Diblock copolymers; Diseases; Doxorubicin; Drug delivery; Drug loading; Drug targeting; Drugs codelivery; Dual polymeric micelles; EPR effect; EPR enhancement; Endocytosis; Environmental hazard; Enzyme responsiveness; Epithelial barriers; Exogenous stimuli; Formulations; Functionalized polymeric micelles; Gastrointestinal; Genotoxicity; Glioma; Heterogeneity; Hybrid; Immunotherapy; Inflammation; Inflammatory disease; Light-responsive; Micelle; Micelles; Mucoadhesion; Nanocarrier; Nanocarriers; Nanoformulation; Nanomaterials; Nanomedicine; Nanopharmaceuticals; Nanostructure; Nanotechnology; Nanotoxicology; Nonbiological complex drugs; Nose-to-brain delivery; Ocular topical drug administration; Oral drug delivery; PH-responsive drugs release; Peptide; Permeability; Plants; Poly(lactic-co-glycolic acid); Polyethylacrylate; Polymer micelles; Polymer types; Polymeric micelle; Polymeric micelles; Polymers; Receptor-mediated endocytosis; Regulation; Safety by design; Self-assembling; Self-assembly; SiRNA; SiRNA delivery; Smart nanomaterials; Solid tumors; Solubility; Subcutaneous drug delivery; Targeted cancer therapy; Targeted drug delivery; Targeting ligands; Temperature-responsive; Thermoresponsive drug release; Topical drug delivery; Triblock copolymers; Tumor-targeting ligands; Uptake