LEADER 04408nam 2201033z- 450 001 9910557346803321 005 20231214133611.0 035 $a(CKB)5400000000042422 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/76431 035 $a(EXLCZ)995400000000042422 100 $a20202201d2021 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aBiopolymers in Drug Delivery and Regenerative Medicine 210 $aBasel, Switzerland$cMDPI - Multidisciplinary Digital Publishing Institute$d2021 215 $a1 electronic resource (194 p.) 311 $a3-0365-0900-3 311 $a3-0365-0901-1 330 $aBiopolymers including natural (e.g., polysaccharides, proteins, gums, natural rubbers, bacterial polymers), synthetic (e.g., aliphatic polyesters and polyphosphoester), and biocomposites are of paramount interest in regenerative medicine, due to their availability, processability, and low toxicity. Moreover, the structuration of biopolymer-based materials at the nano- and microscale along with their chemical properties are crucial in the engineering of advanced carriers for drug products. Finally, combination products including or based on biopolymers for controlled drug release offer a powerful solution to improve the tissue integration and biological response of these materials. Understanding the drug delivery mechanisms, efficiency, and toxicity of such systems may be useful for regenerative medicine and pharmaceutical technology. The main aim of the Special Issue on ?Biopolymers in Drug Delivery and Regenerative Medicine? is to gather recent findings and current advances on biopolymer research for biomedical applications, particularly in regenerative medicine, wound healing, and drug delivery. Contributions to this issue can be as original research or review articles and may cover all aspects of biopolymer research, ranging from the chemical synthesis and characterization of modified biopolymers, their processing in different morphologies and hierarchical structures, as well as their assessment for biomedical uses. 606 $aMedicine$2bicssc 610 $acurcumin 610 $apectin aerogels 610 $achitosan coating 610 $aburst release 610 $acontrolled release 610 $aKeratose 610 $adrug-coated balloon 610 $apaclitaxel 610 $adrug delivery 610 $apre-clinical 610 $aperipheral arterial disease 610 $aendovascular 610 $acellulose phosphate 610 $acellulose phosphate aerogel 610 $ainterconnected porosity 610 $asupercritical carbon dioxide 610 $atetrabutylammonium fluoride 610 $aTBAF/DMSO 610 $apolysaccharide 610 $a?-carrageenan 610 $adexamethasone 610 $aelectrochemical active deliver system 610 $adoping agent 610 $acharged molecule 610 $aconductive polymers 610 $acolorectal cancer 610 $aantioxidants 610 $a5-fluorouracil 610 $apolymer nanomaterials 610 $ananocapsules 610 $achemotherapy 610 $acryogel 610 $astarch 610 $aNMR spectroscopy 610 $amorphology 610 $adrug release 610 $apolysaccharides 610 $ahydrogels 610 $aprilling 610 $adroplets 610 $aionotropic gelation 610 $adrying 610 $axerogels 610 $acryogels 610 $aaerogels 610 $alipid microparticles 610 $aPGSSŪ 610 $asupercritical CO2 610 $amodeling 610 $asolvent-free technology 610 $abiomaterials 610 $aporous materials 610 $abiomimetic 610 $amulti-stimulation 610 $atissue engineering 615 7$aMedicine 700 $aGarci?a-Gonza?lez$b Carlos A$4edt$01289222 702 $aGaudio$b Pasquale Del$4edt 702 $aStarbird$b Ricardo$4edt 702 $aGarci?a-Gonza?lez$b Carlos A$4oth 702 $aGaudio$b Pasquale Del$4oth 702 $aStarbird$b Ricardo$4oth 906 $aBOOK 912 $a9910557346803321 996 $aBiopolymers in Drug Delivery and Regenerative Medicine$93021104 997 $aUNINA