Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA at the single molecule level. To facilitate the study of the interaction of linear DNA with proteins in nanochannels, we have implemented a highly effective passivation scheme based on lipid bilayers. We demonstrate virtually complete long-term passivation of nanochannel surfaces to a range of relevant reagents, including streptavidin-coated quantum dots, RecA proteins, and RecA-DNA complexes. We show that the performance of the lipid bilayer is significantly better than that of standard bovine serum albumin-based passivation. Finally, we show how the passivated devices allow us to monitor single DNA cleavage events during enzymatic degradation by DNas...
Recently biological imaging techniques have been rapidly advanced. In particular, real-time visualiz...
We report a versatile microsphere-supported lipid bilayer system that can serve as a general-purpose...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
ABSTRACT: Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA ...
Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA at the sin...
Stretching DNA in nanochannels allows for direct, visual studies of genomic DNA at the single molecu...
Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA at the sin...
We present the use of nanofluidic channels as a tool for determining physical properties of single D...
ABSTRACT: Single-molecule imaging of biological macro-molecules has dramatically impacted our unders...
A method to investigate physical properties of a DNA-protein complex in solution is demonstrated. By...
DNA curtain is a high-throughput system, integrating a lipid bilayer, fluorescence imaging, and micr...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Single DNA molecule techniques have revolutionized our understanding of DNA-protein interactions. Tr...
Biological imaging techniques have been dramatically advanced recently. Single-molecule real-time vi...
Recently biological imaging techniques have been rapidly advanced. In particular, real-time visualiz...
We report a versatile microsphere-supported lipid bilayer system that can serve as a general-purpose...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
ABSTRACT: Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA ...
Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA at the sin...
Stretching DNA in nanochannels allows for direct, visual studies of genomic DNA at the single molecu...
Stretching DNA in nanochannels is a useful tool for direct, visual studies of genomic DNA at the sin...
We present the use of nanofluidic channels as a tool for determining physical properties of single D...
ABSTRACT: Single-molecule imaging of biological macro-molecules has dramatically impacted our unders...
A method to investigate physical properties of a DNA-protein complex in solution is demonstrated. By...
DNA curtain is a high-throughput system, integrating a lipid bilayer, fluorescence imaging, and micr...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Single DNA molecule techniques have revolutionized our understanding of DNA-protein interactions. Tr...
Biological imaging techniques have been dramatically advanced recently. Single-molecule real-time vi...
Recently biological imaging techniques have been rapidly advanced. In particular, real-time visualiz...
We report a versatile microsphere-supported lipid bilayer system that can serve as a general-purpose...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...