Biocompatible polymers are used exhaustively within the biomedical arena, demonstrating a mechanical and chemical diversity that few other materials possess. As polymer technologies evolves to cater for new medical demands, even the most niche biomedical application becomes an achievable reality. However, the discovery of new polymers is hindered by the complexity and intricacy in which the biological milieu interacts with a new substrate, reducing the ability to predict the appropriateness of a certain polymer for a specific application. This drawback can be countered by the high-throughput evaluation of large numbers of chemically diverse polymer candidates. In this thesis, the use of polymer microarrays is invoked to address two...
The development of innovative bioanalytical technologies that enable the discovery of new therapeuti...
Polymers are interesting macromolecules that have gained great interest in a wide variety of applica...
Recently, the development of polymeric materials for biomedical applications has advanced significan...
The global aim of this thesis was to study the use of microarray technology for the screening and i...
Biofilm formation on blood-contacting medical devices is a major healthcare problem causing signific...
The discovery of novel biomaterials that are optimized for a specific biological application is read...
In my PhD polymer microarrays have been central in discovery of new materials for cardiovascular re...
The discovery of novel biomaterials that are optimized for a specific biological application is read...
Materials discovery provides the opportunity to identify novel materials that are tailored to comple...
Microarrays have become one of the most convenient tools for high throughput screening, supporting m...
The high throughput discovery of new materials can be achieved by rapidly screening many different m...
Polymers are interesting macromolecules that have gained great interest in a wide variety of applica...
We developed a microarray-based system for screening small molecules in mammalian cells. This system...
A polymer microarray of 120 polyurethanes was used to identify polymers that promoted the adhesion o...
Since Langer’s seminal work, polymers have been on every corner of tissue engineering. The roles of ...
The development of innovative bioanalytical technologies that enable the discovery of new therapeuti...
Polymers are interesting macromolecules that have gained great interest in a wide variety of applica...
Recently, the development of polymeric materials for biomedical applications has advanced significan...
The global aim of this thesis was to study the use of microarray technology for the screening and i...
Biofilm formation on blood-contacting medical devices is a major healthcare problem causing signific...
The discovery of novel biomaterials that are optimized for a specific biological application is read...
In my PhD polymer microarrays have been central in discovery of new materials for cardiovascular re...
The discovery of novel biomaterials that are optimized for a specific biological application is read...
Materials discovery provides the opportunity to identify novel materials that are tailored to comple...
Microarrays have become one of the most convenient tools for high throughput screening, supporting m...
The high throughput discovery of new materials can be achieved by rapidly screening many different m...
Polymers are interesting macromolecules that have gained great interest in a wide variety of applica...
We developed a microarray-based system for screening small molecules in mammalian cells. This system...
A polymer microarray of 120 polyurethanes was used to identify polymers that promoted the adhesion o...
Since Langer’s seminal work, polymers have been on every corner of tissue engineering. The roles of ...
The development of innovative bioanalytical technologies that enable the discovery of new therapeuti...
Polymers are interesting macromolecules that have gained great interest in a wide variety of applica...
Recently, the development of polymeric materials for biomedical applications has advanced significan...