Digitální knihovna UPCE přechází na novou verzi. Omluvte prosím případné komplikace. / The UPCE Digital Library is migrating to a new version. We apologize for any inconvenience.

Publikace:
Covalent biofunctionalization of chitosan nanofibers with trypsin for high enzyme stability

Článekopen accesspeer-reviewedpostprint
dc.contributor.authorSlováková, Marcela
dc.contributor.authorSrbová, Jana
dc.contributor.authorKřípalová, Zuzana
dc.contributor.authorŽárská, Monika
dc.contributor.authorŠpačková, Martina
dc.contributor.authorStránská, Denisa
dc.contributor.authorBílková, Zuzana
dc.date.accessioned2019-08-14T08:23:44Z
dc.date.available2019-08-14T08:23:44Z
dc.date.issued2016
dc.description.abstractThe electrospun chitosan nanofibers provide excellent material for immobilized proteolytic enzymes, and are biocompatible, nontoxic and hydrophilic matrices with large specific area. This paper deals with an application of electrospun chitosan nanofibers and optimizing conditions for their biofunctionalization by model proteolytic enzyme trypsin. Nanofibers fromchitosan were prepared using Nanospider™ technology and covalent immobilization of trypsin followed. Three immobilization techniques preserving biocompatibility and utilizing amine and/or hydroxyl groups of chitosan were optimized and compared to simple adsorption to achieve maximum proteolytic activity per cm2 of the functionalized chitosan nanofibers (Tryp-NF). Significant differences were observed. Trypsin immobilized by the carbodiimide one-step protocol demonstrated the highest activity of the three procedures, ranging from 132 to 210 IU/cm2 (i.e., 548–874 IU/mg of nanofibers), depending on the initial amount of trypsin used. Long-term storage stability together with high reusability of Tryp-NF confirmed advantages of the immobilized enzyme. Tryp-NF showed no cytotoxicity toward growth of HeLa cells. The in vivo tests for irritation and skin sensitization demonstrated no undesirable skin reactions.eng
dc.description.abstract-translatedKovalentní biofunkcionalizace chitosanových nanovláken s trypsinem s vysokou enzymovou stabilitou. Elektrozvlákněná chitosanová nanovlákna slouží jako výborný materiál pro imobilizaci proteolytických enzymů, jsou biokompatibilní, netoxické a hydrofilní matricí s velkým specifickým povrchem.cze
dc.formatp. 38–44eng
dc.identifier.doi10.1016/j.reactfunctpolym.2016.05.009
dc.identifier.issn1381-5148
dc.identifier.obd39876684
dc.identifier.scopus2-s2.0-84969577643
dc.identifier.urihttps://hdl.handle.net/10195/73811
dc.identifier.wos000379375400006
dc.language.isoengcze
dc.peerreviewedyeseng
dc.publicationstatuspostprinteng
dc.publisherElsevier Science BVcze
dc.relation.ispartofReactive and Functional Polymers 104 (2016)eng
dc.subjecttrypsineng
dc.subjectchitosaneng
dc.subjectelectrospun nanofiberseng
dc.subjectreusabilityeng
dc.subjectbiofunctionalizationeng
dc.titleCovalent biofunctionalization of chitosan nanofibers with trypsin for high enzyme stabilityeng
dc.title.alternativeKovalentní biofunkcionalizace chitosanových nanovláken s trypsinem s vysokou enzymovou stabilitoucze
dc.typeArticleeng
dspace.entity.typePublication

Soubory

Původní svazek

Nyní se zobrazuje 1 - 1 z 1
Načítá se...
Náhled
Název:
1-s2.0-S1381514816301018-main.pdf
Velikost:
1.31 MB
Formát:
Adobe Portable Document Format
Popis: