Polymeric Carriers for Biomedical and Nanomedicine Application
This book focuses on the design of polymeric delivery systems for biomedical and nanomedicine applications as well as on understanding how such biomaterials interact in the physiological environment. The reader will find an encompassing view on the state-of-the-art of polymeric carriers, showing how...
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Format: | Electronic Book Chapter |
Language: | English |
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Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2021
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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700 | 1 | |a Reis, Salette |4 oth | |
245 | 1 | 0 | |a Polymeric Carriers for Biomedical and Nanomedicine Application |
260 | |a Basel, Switzerland |b MDPI - Multidisciplinary Digital Publishing Institute |c 2021 | ||
300 | |a 1 electronic resource (186 p.) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
506 | 0 | |a Open Access |2 star |f Unrestricted online access | |
520 | |a This book focuses on the design of polymeric delivery systems for biomedical and nanomedicine applications as well as on understanding how such biomaterials interact in the physiological environment. The reader will find an encompassing view on the state-of-the-art of polymeric carriers, showing how current research deals with new stimuli-responsive systems for cancer therapies and biomedical challenges, namely overcoming the skin barrier. The published papers cover topics ranging from novel production methods and insights on hybrid polymers to applications as diverse as nanoparticles, hydrogels and microneedles for antifungal skin therapy, peptide and siRNA delivery, enhanced skin absorption of bioactive molecules, and anticancer therapy. The book comprises one review paper and nine research papers. | ||
540 | |a Creative Commons |f https://creativecommons.org/licenses/by/4.0/ |2 cc |4 https://creativecommons.org/licenses/by/4.0/ | ||
546 | |a English | ||
650 | 7 | |a Technology: general issues |2 bicssc | |
653 | |a osteoarthritis | ||
653 | |a monosodium iodoacetate | ||
653 | |a p47phox | ||
653 | |a PLGA nanoparticles | ||
653 | |a reactive oxygen species | ||
653 | |a full factorial design | ||
653 | |a optimization | ||
653 | |a metronidazole | ||
653 | |a nanocomposites | ||
653 | |a sodium alginate | ||
653 | |a chitosan | ||
653 | |a PLGA | ||
653 | |a hybrid polymers | ||
653 | |a chitosan-PLGA polymer | ||
653 | |a NMR | ||
653 | |a DSC | ||
653 | |a FT-IR | ||
653 | |a covalent drug conjugation | ||
653 | |a therapeutic nanodevice | ||
653 | |a polymeric nanoparticles | ||
653 | |a cancer therapy | ||
653 | |a controlled drug delivery | ||
653 | |a redox responsive PEG-block-PLA | ||
653 | |a nanocarriers | ||
653 | |a disulfide bond | ||
653 | |a controlled release | ||
653 | |a retinol | ||
653 | |a nanosponge | ||
653 | |a hydrogel | ||
653 | |a Box-Behnken design | ||
653 | |a pharmacokinetic | ||
653 | |a terbinafine hydrogel | ||
653 | |a niacinamide | ||
653 | |a polyethene glycol (PEG) 400 | ||
653 | |a solvent | ||
653 | |a dermal delivery | ||
653 | |a finite dose | ||
653 | |a porcine skin | ||
653 | |a dissolving microneedles | ||
653 | |a multiple sclerosis | ||
653 | |a PLP | ||
653 | |a transdermal delivery | ||
653 | |a tyrosol | ||
653 | |a nanoparticles | ||
653 | |a Design of Experiment (DoE) | ||
653 | |a β cyclodextrin | ||
653 | |a DNA binding | ||
653 | |a glyconanoparticles | ||
653 | |a immunotherapy | ||
653 | |a infectious diseases | ||
653 | |a mannose receptors | ||
653 | |a nutraceuticals | ||
653 | |a n/a | ||
856 | 4 | 0 | |a www.oapen.org |u https://mdpi.com/books/pdfview/book/3857 |7 0 |z DOAB: download the publication |
856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/76422 |7 0 |z DOAB: description of the publication |