The behaviour of biological components in cellular membranes is vital to the function of cells however many vital phenomena associated with membrane functions are not yet fully understood. Supported lipid bilayers provide a model of real cellular membranes. This thesis examines how increasing the complexity of model lipid bilayers through changes in lipid composition, membrane protein content and cytoskeletal interactions can be used to extract significant biological information with biophysical techniques and analysis. The atomic force microscope (AFM) is a powerful tool in the study of biological systems allowing both three dimensional sub-nanometer resolution and mechanical interrogation under physiological conditions. The recent arrival...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
This thesis describes the preparation and imaging of supported lipid bilayers, which can be regarded...
AbstractWe review structure and dynamic measurements of biomembranes by atomic force microscopy (AFM...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
The current view of the biological membrane is that in which lipids and proteins mutually interact t...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
The plasma membrane is comprised of a complex mixture of lipids and proteins that most simply acts t...
Recent advances in biomolecular design require accurate measurements performed in native or near-nat...
Atomic force microscopy is an increasingly attractive tool to study how peptides disrupt membranes. ...
Background: To provide a fundamental understanding of the potential and use of atomic force microsco...
AbstractDuring the past 15years, atomic force microscopy (AFM) has opened new opportunities for imag...
Lipid model membranes are important tools in the study of biophysical processes such as lipid self-a...
There is considerable interest in measuring, with nanoscale spatial resolution, the physical and mat...
Lipid bilayers form the basis of the membranes that serve as a barrier between a cell and its physio...
Biological membranes mediate several biological processes that are directly associated with their ph...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
This thesis describes the preparation and imaging of supported lipid bilayers, which can be regarded...
AbstractWe review structure and dynamic measurements of biomembranes by atomic force microscopy (AFM...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
The current view of the biological membrane is that in which lipids and proteins mutually interact t...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
The plasma membrane is comprised of a complex mixture of lipids and proteins that most simply acts t...
Recent advances in biomolecular design require accurate measurements performed in native or near-nat...
Atomic force microscopy is an increasingly attractive tool to study how peptides disrupt membranes. ...
Background: To provide a fundamental understanding of the potential and use of atomic force microsco...
AbstractDuring the past 15years, atomic force microscopy (AFM) has opened new opportunities for imag...
Lipid model membranes are important tools in the study of biophysical processes such as lipid self-a...
There is considerable interest in measuring, with nanoscale spatial resolution, the physical and mat...
Lipid bilayers form the basis of the membranes that serve as a barrier between a cell and its physio...
Biological membranes mediate several biological processes that are directly associated with their ph...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
This thesis describes the preparation and imaging of supported lipid bilayers, which can be regarded...
AbstractWe review structure and dynamic measurements of biomembranes by atomic force microscopy (AFM...