AbstractA sensor system for investigating (bio)degradationprocesses of polymers is presented. The system utilizes semiconductor field-effect sensors and is capable of monitoring the degradation process in-situ and in real-time. The degradation of the polymer poly(d,l-lactic acid) is exemplarily monitored in solutions with different pH value, pH-buffer solution containing the model enzyme lipase from Rhizomucormiehei and cell-culture medium containing supernatants from stimulated and non-stimulated THP-1-derived macrophages mimicking activation of the immune system
Frequency Dependent Electromagnetic Sensing (FDEMS) provides a sensitive, convenient, automated mean...
Abstract Monitoring polymer degradation is an important quest, particularly relevant for industry. ...
Biodegradation of polymeric materials affect a wide range of industries, information on degradabilit...
A sensor system for investigating (bio)degradationprocesses of polymers is presented. The system uti...
Designing novel or optimizing existing biodegradable polymers for biomedical applications requires n...
AbstractA semiconductor field-effect device has been used for an enzymatically catalyzed degradation...
© 2014 Elsevier B.V. All rights reserved. The characterization of the degradation kinetics of biodeg...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
It is well known that the degradation environment can strongly influence the biodegradability and ki...
A method for monitoring changes in biodegradable polymers during hydrolysis is proposed. This wirele...
For the development of new biopolymers and implantable biomedical devices with predicted biodegradab...
Investigation of the degradation kinetics of biodegradable polymers is essential for the development...
This diploma thesis is focused on biocompatible polymers degradation study. Copolymers were studied ...
The idea behind the project is that biopolymers can be used in the future as lids on microscopic med...
Frequency Dependent Electromagnetic Sensing (FDEMS) provides a sensitive, convenient, automated mean...
Abstract Monitoring polymer degradation is an important quest, particularly relevant for industry. ...
Biodegradation of polymeric materials affect a wide range of industries, information on degradabilit...
A sensor system for investigating (bio)degradationprocesses of polymers is presented. The system uti...
Designing novel or optimizing existing biodegradable polymers for biomedical applications requires n...
AbstractA semiconductor field-effect device has been used for an enzymatically catalyzed degradation...
© 2014 Elsevier B.V. All rights reserved. The characterization of the degradation kinetics of biodeg...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
It is well known that the degradation environment can strongly influence the biodegradability and ki...
A method for monitoring changes in biodegradable polymers during hydrolysis is proposed. This wirele...
For the development of new biopolymers and implantable biomedical devices with predicted biodegradab...
Investigation of the degradation kinetics of biodegradable polymers is essential for the development...
This diploma thesis is focused on biocompatible polymers degradation study. Copolymers were studied ...
The idea behind the project is that biopolymers can be used in the future as lids on microscopic med...
Frequency Dependent Electromagnetic Sensing (FDEMS) provides a sensitive, convenient, automated mean...
Abstract Monitoring polymer degradation is an important quest, particularly relevant for industry. ...
Biodegradation of polymeric materials affect a wide range of industries, information on degradabilit...