Bioinspired and biomimetic materials for drug delivery /

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Bibliographic Details
Imprint:Oxford : Woodhead Publishing, 2021.
Description:1 online resource.
Language:English
Series:Woodhead Publishing series in biomaterials
Woodhead Publishing series in biomaterials.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/12616965
Hidden Bibliographic Details
Other authors / contributors:Nurunnabi, Md, editor.
ISBN:9780128219492
0128219491
9780128213520
0128213523
Notes:

1. Importance and prospects of bioinspired and biomimetic materials for drug delivery 2. Microorganism-mediated drug delivery 3. Plant-derived polyphenol-based nanomaterials for drug delivery and theranostics 4. Bioinspired smart nanohybrids for stimuli responsive drug delivery 5. Conjugated biomimetic nanohybrids as smart drug delivery systems 6. Bioinspired and biomimetic materials for oral drug delivery 7. Bile acid transporter as a bioinspired method for oral drug delivery 8. Bio inspired materials for nonviral vaccine delivery 9. Bile acid-inspired oral small molecules drug delivery 10. Mucoadhesive polymer for M-cell targeting as oral vaccine delivery vehicle 11. Ionic solvents for transdermal drug delivery 12. Exosome-mediated bioinspired drug delivery 13. Bioengineering approach for pulmonary drug delivery 14. Clinical status of bioinspired and biomimetic materials 15. 3D printing: Bioinspired materials for drug delivery


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Summary:Bioinspired and Biomimetic Materials for Drug Delivery delves into the potential of bioinspired materials in drug delivery, detailing each material type and its latest developments. In the last decade, biomimetic and bioinspired materials and technology has garnered increased attention in drug delivery research. Various material types including polymer, small molecular, protein, peptide, cholesterol, polysaccharide, nano-crystal and hybrid materials are widely considered in drug delivery research. However, biomimetic and bioinspired materials and technology have shown promising results for use in therapeutics, due to their high biocompatibility and reduced immunogenicity. Such materials include dopamine, extracellular exosome, bile acids, ionic liquids, and red blood cell. This book covers each of these materials in detail, reviewing their potential and usage in drug delivery. As such, this book will be a great source of information for biomaterials scientists, biomedical engineers and those working in pharmaceutical research.
Other form:Print version: 9780128213520