The 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 di...
We investigate the immobilization of trypsin on chitosan nonwoven using glutaraldehyde (GA). The con...
New biomimetic micro- and nano-CsU-based fibrous scaffolds electrospun from solution containing high...
Improvement of catalytic efficiency of immobilized enzymes via materials engineering was demonstrate...
V této práci byly imobilizovány proteolytické enzymy trypsin a chymotrypsin pomocí kovalentní vazby ...
Nanofibers biofunctionalized with enzymes are materials of interest in the biomedical field due to t...
The purpose of the paper is to describe the production and characterization of electrospun chitosan ...
Diplomová práce se zabývá imobilizací proteolytických enzymů trypsinu a kolagenázy na chitosanová na...
Chitosan is soluble in most acids. The protonation of the amino groups on the chitosan backbone inhi...
This article describes the characterization and application of collagenase-based chitosan nanofiber ...
This article describes the characterization and application of collagenase-based chitosan nanofiber ...
Chitosan is an attractive natural biopolymer from renewable resources with the presence of reactive ...
A process yielding water stable chitosan nanofiber mats is described and their significance in the f...
Polyacrylonitrile nanofibrous membranes (PANNFM) were prepared by electrospinning from 10 wt.% of PA...
The aim of this study was to develop a thermally and operationally stable trypsin through covalent i...
Trypsin was successfully entrapped in situ into nanofibers of poly(e-caprolactone) (PCL) prepared by...
We investigate the immobilization of trypsin on chitosan nonwoven using glutaraldehyde (GA). The con...
New biomimetic micro- and nano-CsU-based fibrous scaffolds electrospun from solution containing high...
Improvement of catalytic efficiency of immobilized enzymes via materials engineering was demonstrate...
V této práci byly imobilizovány proteolytické enzymy trypsin a chymotrypsin pomocí kovalentní vazby ...
Nanofibers biofunctionalized with enzymes are materials of interest in the biomedical field due to t...
The purpose of the paper is to describe the production and characterization of electrospun chitosan ...
Diplomová práce se zabývá imobilizací proteolytických enzymů trypsinu a kolagenázy na chitosanová na...
Chitosan is soluble in most acids. The protonation of the amino groups on the chitosan backbone inhi...
This article describes the characterization and application of collagenase-based chitosan nanofiber ...
This article describes the characterization and application of collagenase-based chitosan nanofiber ...
Chitosan is an attractive natural biopolymer from renewable resources with the presence of reactive ...
A process yielding water stable chitosan nanofiber mats is described and their significance in the f...
Polyacrylonitrile nanofibrous membranes (PANNFM) were prepared by electrospinning from 10 wt.% of PA...
The aim of this study was to develop a thermally and operationally stable trypsin through covalent i...
Trypsin was successfully entrapped in situ into nanofibers of poly(e-caprolactone) (PCL) prepared by...
We investigate the immobilization of trypsin on chitosan nonwoven using glutaraldehyde (GA). The con...
New biomimetic micro- and nano-CsU-based fibrous scaffolds electrospun from solution containing high...
Improvement of catalytic efficiency of immobilized enzymes via materials engineering was demonstrate...