We describe here a method for constructing ordered molecular arrays and for detecting binding of biomolecules to these arrays using atomic force microscopy (AFM). These arrays simplify the discrimination of surface-bound biomolecules through the spatial control of ligand presentation. First, photolithography is used to spatially direct the synthesis of a matrix of biological ligands. A high-affinity binding partner is then applied to the matrix, which binds at locations defined by the ligand array. AFM is then used to detect the presence and organization of the high-affinity binding partner. Streptavidin-biotin arrays of 100 x 100 microns and 8 x 8 microns elements were fabricated by this method. Contact and noncontact AFM images reveal a d...
Knowledge of the molecular forces that drive receptor-ligand interactions is a key to gain a detaile...
Simultaneous high-resolution imaging and localization of chemical interaction sites on single native...
To gain insights into how biological molecules function, advanced technologies enabling imaging, sen...
We describe here a method for constructing ordered molecular arrays and for detecting binding of bio...
Streptavidin that has four binding sites arranged in two opposing pairs is known as one of the most ...
Background Micrometer resolution placement and immobilization of probe molecules is an important ste...
Imaging the nanoscale distribution of specific chemical and biological sites on live cells is an imp...
Many biologists have dreamt of physically touching and manipulating the biomolecules they were inves...
The contrast in atomic force microscope images arises from forces between the tip and the sample. It...
in bionanotechnology Atomic force microscopy is extensively used for imaging surfaces ranging from m...
Atomic force microscopy is a powerful and widely used imaging technique that can visualize single mo...
The development of microminiaturized biosensors requires techniques for immobilizing biomolecules on...
The combination of organic thin film transistors and biological molecules could open new approaches ...
AbstractPolystyrene microtitre wells are commonly used as supports for the enzyme-linked immunosorbe...
The combination of organic thin film transistors and biological molecules could open new approaches ...
Knowledge of the molecular forces that drive receptor-ligand interactions is a key to gain a detaile...
Simultaneous high-resolution imaging and localization of chemical interaction sites on single native...
To gain insights into how biological molecules function, advanced technologies enabling imaging, sen...
We describe here a method for constructing ordered molecular arrays and for detecting binding of bio...
Streptavidin that has four binding sites arranged in two opposing pairs is known as one of the most ...
Background Micrometer resolution placement and immobilization of probe molecules is an important ste...
Imaging the nanoscale distribution of specific chemical and biological sites on live cells is an imp...
Many biologists have dreamt of physically touching and manipulating the biomolecules they were inves...
The contrast in atomic force microscope images arises from forces between the tip and the sample. It...
in bionanotechnology Atomic force microscopy is extensively used for imaging surfaces ranging from m...
Atomic force microscopy is a powerful and widely used imaging technique that can visualize single mo...
The development of microminiaturized biosensors requires techniques for immobilizing biomolecules on...
The combination of organic thin film transistors and biological molecules could open new approaches ...
AbstractPolystyrene microtitre wells are commonly used as supports for the enzyme-linked immunosorbe...
The combination of organic thin film transistors and biological molecules could open new approaches ...
Knowledge of the molecular forces that drive receptor-ligand interactions is a key to gain a detaile...
Simultaneous high-resolution imaging and localization of chemical interaction sites on single native...
To gain insights into how biological molecules function, advanced technologies enabling imaging, sen...