A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and release of especially proteins. It contains TEMPO-oxidized potato starch polymers, which are chemically cross-linked by sodium trimetaphosphate (STMP). Physical chemical properties have been determined for microgels of different weight ratios of cross-linker to polymer (0.10, 0.15, 0.20, 0.30, and 0.40) and degrees of oxidation (30, 50, 70, and 100%). The charge density of the microgels as determined by proton titration is found to be in good agreement with the expected degree of oxidation (DO). The electrophoretic mobility of the microgel particles is used as a qualitative indicator of the pore size and scales with microgel swelling capacit...
The interaction of biocompatible polyelectrolytes (chargeable poly(amino acids)) with oxidized starc...
The kinetics of uptake and release of fluorescently labeled lysozyme by/from spherical oxidized star...
A carboxymethyl starch (CMS) microgel system was prepared for the control of uptaking and releasing ...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
This dissertation describes a systematic study on oxidized starch microgel particles. It begins with...
The aim of this paper is to determine the mobility of protein molecules inside oxidized potato starc...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
The interaction of biocompatible polyelectrolytes (chargeable poly(amino acids)) with oxidized starc...
A carboxymethyl starch (CMS) microgel system was prepared for the control of uptaking and releasing ...
The interaction of biocompatible polyelectrolytes (chargeable poly(amino acids)) with oxidized starc...
The kinetics of uptake and release of fluorescently labeled lysozyme by/from spherical oxidized star...
A carboxymethyl starch (CMS) microgel system was prepared for the control of uptaking and releasing ...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
A novel biocompatible and biodegradable microgel system has been developed for controlled uptake and...
This dissertation describes a systematic study on oxidized starch microgel particles. It begins with...
The aim of this paper is to determine the mobility of protein molecules inside oxidized potato starc...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
With the aim of determining suitable conditions for uptake and release of globular proteins on micro...
The interaction of biocompatible polyelectrolytes (chargeable poly(amino acids)) with oxidized starc...
A carboxymethyl starch (CMS) microgel system was prepared for the control of uptaking and releasing ...
The interaction of biocompatible polyelectrolytes (chargeable poly(amino acids)) with oxidized starc...
The kinetics of uptake and release of fluorescently labeled lysozyme by/from spherical oxidized star...
A carboxymethyl starch (CMS) microgel system was prepared for the control of uptaking and releasing ...