In this paper, we present a universal microfluidic liquid chamber device platform for atomic force microscopy (AFM), which enables to fabricate the uniform lipid bilayer on the hydrophilic surface using the solvent-assisted lipid bilayer formation method. Using this device enables us to acquire the various properties of delicate soft matter, including morphological data, and mechanical property measurements, using high-resolution AFM systems. The proposed technology is expected to provide an understanding of complicated biological materials.Published versio
During the past decade, the atomic force microscope (AFM) has become a key technique in biochemistry...
The ability to characterize the microscale mechanical properties of biological materials has the pot...
Supported lipid bilayers (SLBs) are widely used as a model for studying membrane properties (phase s...
Cellular membrane host a variety of crucial biological activities such as trafficking molecules in a...
International audienceImaging membrane proteins in aqueous solution in their native configuration re...
Atomic Force Microscope (AFM) is an advanced nanotechnology tool for image mapping and cell properti...
The atomic force microscope (AFM) has become an extremely powerful tool for biological and cell stud...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
Many relevant questions in biology and medicine require both topography and chemical information wit...
Atomic force microscopy (AFM) is a widely used imaging technique in material sciences. After becomin...
AbstractDuring the past 15years, atomic force microscopy (AFM) has opened new opportunities for imag...
International audienceSupported lipid bilayers represent a very attractive way to mimic biological m...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
Recently, atomic force microscope (AFM) manufacturers have begun producing instruments specifically ...
Lipid bilayers mediate numerous biological processes at the cellular level, with the initial interac...
During the past decade, the atomic force microscope (AFM) has become a key technique in biochemistry...
The ability to characterize the microscale mechanical properties of biological materials has the pot...
Supported lipid bilayers (SLBs) are widely used as a model for studying membrane properties (phase s...
Cellular membrane host a variety of crucial biological activities such as trafficking molecules in a...
International audienceImaging membrane proteins in aqueous solution in their native configuration re...
Atomic Force Microscope (AFM) is an advanced nanotechnology tool for image mapping and cell properti...
The atomic force microscope (AFM) has become an extremely powerful tool for biological and cell stud...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
Many relevant questions in biology and medicine require both topography and chemical information wit...
Atomic force microscopy (AFM) is a widely used imaging technique in material sciences. After becomin...
AbstractDuring the past 15years, atomic force microscopy (AFM) has opened new opportunities for imag...
International audienceSupported lipid bilayers represent a very attractive way to mimic biological m...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
Recently, atomic force microscope (AFM) manufacturers have begun producing instruments specifically ...
Lipid bilayers mediate numerous biological processes at the cellular level, with the initial interac...
During the past decade, the atomic force microscope (AFM) has become a key technique in biochemistry...
The ability to characterize the microscale mechanical properties of biological materials has the pot...
Supported lipid bilayers (SLBs) are widely used as a model for studying membrane properties (phase s...