Proteins play a crucial role in regulating life activities and therefore investigating the behaviors of proteins is of critical significance for understanding the underlying mechanisms guiding the physiological and pathological processes of living organisms. Traditional molecular biochemical methods for protein assays are based on ensemble measurements which reflect the averaged behaviors of the whole molecular populations, veiling the rare activities of small molecular subpopulations. Achievements obtained in the past decades have proved that atomic force microscopy (AFM) is a powerful multifunctional tool for characterizing the behaviors of single proteins at work in aqueous conditions with unprecedented spatiotemporal resolution, which p...
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-me...
This review is focused on the atomic force microscopy (AFM) capabilities to study the properties of ...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Proteins play a crucial role in regulating life activities and therefore investigating the behaviors...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
The advent of atomic force microscopy (AFM) has provided a powerful tool for investigating the behav...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
To study the structure, function, and interactions of proteins, a plethora of techniques is availabl...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
With its ability to observe, manipulate and explore the functional components of the biological cell...
Imaging of nano-sized particles and sample features is crucial in a variety of research fields. For ...
AbstractAtomic force microscopy (AFM) is the type of scanning probe microscopy that is probably best...
During the last three decades, a series of key technological improvements turned atomic force micros...
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-me...
This review is focused on the atomic force microscopy (AFM) capabilities to study the properties of ...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Proteins play a crucial role in regulating life activities and therefore investigating the behaviors...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
The advent of atomic force microscopy (AFM) has provided a powerful tool for investigating the behav...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
To study the structure, function, and interactions of proteins, a plethora of techniques is availabl...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
With its ability to observe, manipulate and explore the functional components of the biological cell...
Imaging of nano-sized particles and sample features is crucial in a variety of research fields. For ...
AbstractAtomic force microscopy (AFM) is the type of scanning probe microscopy that is probably best...
During the last three decades, a series of key technological improvements turned atomic force micros...
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-me...
This review is focused on the atomic force microscopy (AFM) capabilities to study the properties of ...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...