Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Two physical properties change when one molecular partner binds to another. Firstly, the masses combine and secondly, the structure of at least one binding partner is altered, mechanically transducing the binding into subsequent biological reactions. Here we present a nanomechanical micro-array technique for bio-medical research, which not only monitors the binding of effector molecules to their target but also the subsequent effect on a biological system in vitro. This label-free and real-time method directly and simultaneously tracks mass and nanomechanical changes at the sensor interface using micro-cantilever technology. To prove the concep...
6 páginas, 6 figuras.Biomolecular interactions over the surface of a microcantilever can produce its...
11 páginas, 7 figuras, 2 tablas.Biosensors based on microcantilevers have become a promising tool fo...
The goal of discovering new devices and new transduction concepts for biological detection remains o...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
Specific aims of this study are to investigate the mechanism governing surface stress generation ass...
(80), e50719, doi:10.3791/50719 (2013). The cantilever sensor, which acts as a transducer of reactio...
Cantilever arrays have been used to monitor biochemical interactions and their associated stress. Ho...
In the last years, a large variety of ultrasensitive nanomechanical sensors that have been developed...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
A nanomechanical biosensor based on microcantilevers was implemented to test low molecular weight (...
Mechanical signaling involved in molecular interactions lies at the heart of materials science and b...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
The alarming growth of antibiotic-resistant superbugs including methicillin-resistant Staphylococcu...
Biomolecular interactions over the surface of a microcantilever can produce its bending motion via c...
6 páginas, 6 figuras.Biomolecular interactions over the surface of a microcantilever can produce its...
11 páginas, 7 figuras, 2 tablas.Biosensors based on microcantilevers have become a promising tool fo...
The goal of discovering new devices and new transduction concepts for biological detection remains o...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
Molecular interaction is a key concept in our understanding of the biological mechanisms of life. Tw...
Specific aims of this study are to investigate the mechanism governing surface stress generation ass...
(80), e50719, doi:10.3791/50719 (2013). The cantilever sensor, which acts as a transducer of reactio...
Cantilever arrays have been used to monitor biochemical interactions and their associated stress. Ho...
In the last years, a large variety of ultrasensitive nanomechanical sensors that have been developed...
Biological and chemical processes can be transduced into nanomechanical motion via change of surface...
A nanomechanical biosensor based on microcantilevers was implemented to test low molecular weight (...
Mechanical signaling involved in molecular interactions lies at the heart of materials science and b...
Cantilever sensors have attracted considerable attention over the last decade because of their poten...
The alarming growth of antibiotic-resistant superbugs including methicillin-resistant Staphylococcu...
Biomolecular interactions over the surface of a microcantilever can produce its bending motion via c...
6 páginas, 6 figuras.Biomolecular interactions over the surface of a microcantilever can produce its...
11 páginas, 7 figuras, 2 tablas.Biosensors based on microcantilevers have become a promising tool fo...
The goal of discovering new devices and new transduction concepts for biological detection remains o...