Elucidating the underlying mechanisms of cell physiology is currently an important research topic in life sciences. Atomic force microscopy methods can be used to investigate these molecular mechanisms. In this study, single-molecule force spectroscopy was used to explore the specific recognition between the CD20 antigen and anti-CD20 antibody Rituximab on B lymphoma cells under near-physiological conditions. The CD20-Rituximab specific binding force was measured through tip functionalization. Distribution of CD20 on the B lymphoma cells was visualized three-dimensionally. In addition, the relationship between the intramolecular force and the molecular extension of the CD20-Rituximab complex was analyzed under an external force. These resul...
The invention of atomic force microscopy(AFM) has provided new technology for measuring specific mol...
Knowledge of drug-target interaction is critical to our understanding of drug action and can help de...
The invention of atomic force microscopy (AFM) provides new technology for measuring the molecular s...
Elucidating the underlying mechanisms of cell physiology is currently an important research topic in...
Elucidating the underlying mechanism of the cellular physiological activities at the molecular level...
Illuminating the underlying mechanism of drug action at single-cell and single-molecule levels is of...
The invention of atomic force microscopy (AFM) provides new technology for investigating the physiol...
The treatment of Non-Hodgkin's lymphoma (NHL) was revolutionized by the approval of rituximab in 199...
Atomic force microscopy (AFM) offers an exciting tool for quantitatively investigating the physiolog...
Atomic force microscopy (AFM) was used to locate CD20 molecules on the surface of lymphoma Raji cell...
Summary Atomic force microscopy (AFM) provides a new technology to visualize the cellular topography...
Non-Hodgkin's lymphoma (NHL) is the most common adult hematological cancer. With the advent of c...
Rituximab, a monoclonal antibody against the CD20 molecule expressed on B cells, has revolutionized ...
The invention of atomic force microscopy(AFM) has provided new technology for measuring specific mol...
Knowledge of drug-target interaction is critical to our understanding of drug action and can help de...
The invention of atomic force microscopy (AFM) provides new technology for measuring the molecular s...
Elucidating the underlying mechanisms of cell physiology is currently an important research topic in...
Elucidating the underlying mechanism of the cellular physiological activities at the molecular level...
Illuminating the underlying mechanism of drug action at single-cell and single-molecule levels is of...
The invention of atomic force microscopy (AFM) provides new technology for investigating the physiol...
The treatment of Non-Hodgkin's lymphoma (NHL) was revolutionized by the approval of rituximab in 199...
Atomic force microscopy (AFM) offers an exciting tool for quantitatively investigating the physiolog...
Atomic force microscopy (AFM) was used to locate CD20 molecules on the surface of lymphoma Raji cell...
Summary Atomic force microscopy (AFM) provides a new technology to visualize the cellular topography...
Non-Hodgkin's lymphoma (NHL) is the most common adult hematological cancer. With the advent of c...
Rituximab, a monoclonal antibody against the CD20 molecule expressed on B cells, has revolutionized ...
The invention of atomic force microscopy(AFM) has provided new technology for measuring specific mol...
Knowledge of drug-target interaction is critical to our understanding of drug action and can help de...
The invention of atomic force microscopy (AFM) provides new technology for measuring the molecular s...