Here, we report the use of fluorescently labelled proteins to study protein adsorption to microarrayed synthetic polymers for the first time, indicating that this method is appropriate for the study of protein adsorption on these arrays. To investigate protein adhesion directly we use atomic force microscopy (AFM) to measure the force of adhesion between a protein-coated probe and the arrayed polymers. Both approaches show promise as methods for screening protein interactions with polymers in a microarray format. Comparison of these very different measures of protein-surface interactions indicate a good correlation
<div><p>The effects of functional groups and structures at the surface of biomaterials on protein ad...
Protein microarrays can be used to track protein interactions with DNA, lipids, antibodies, and othe...
242 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Interfacial interactions with...
Here, we report the use of fluorescently labelled proteins to study protein adsorption to microarray...
In this thesis, a direct method of Atomic Force Microscopy (AFM) technique has been developed to mea...
A novel, direct technique has been developed to measure the interactions of bovine serum albumin (BS...
The absorption of biomolecules on surfaces is a perennial and general problem relevant to fields as ...
AbstractUsing the manipulation force microscope, a novel atomic force microscope, the adhesion force...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
The molecular interaction forces generated during the adsorption of proteins to surfaces were examin...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
The fabrication and operation of biodevices require the accurate control of the concentration of the...
To understand interactions between polymer surfaces and different functional groups in proteins, int...
High throughput materials discovery using combinatorial polymer microarrays to screen for new biomat...
<div><p>The effects of functional groups and structures at the surface of biomaterials on protein ad...
Protein microarrays can be used to track protein interactions with DNA, lipids, antibodies, and othe...
242 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Interfacial interactions with...
Here, we report the use of fluorescently labelled proteins to study protein adsorption to microarray...
In this thesis, a direct method of Atomic Force Microscopy (AFM) technique has been developed to mea...
A novel, direct technique has been developed to measure the interactions of bovine serum albumin (BS...
The absorption of biomolecules on surfaces is a perennial and general problem relevant to fields as ...
AbstractUsing the manipulation force microscope, a novel atomic force microscope, the adhesion force...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
The molecular interaction forces generated during the adsorption of proteins to surfaces were examin...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
The fabrication and operation of biodevices require the accurate control of the concentration of the...
To understand interactions between polymer surfaces and different functional groups in proteins, int...
High throughput materials discovery using combinatorial polymer microarrays to screen for new biomat...
<div><p>The effects of functional groups and structures at the surface of biomaterials on protein ad...
Protein microarrays can be used to track protein interactions with DNA, lipids, antibodies, and othe...
242 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Interfacial interactions with...