Abstract Imaging biomolecules in real space is crucial for gaining a comprehensive understanding of the properties and functions of biological systems at the most fundamental level. Among the various imaging techniques available for biomolecules and their assembled nanostructures, scanning probe microscopy (SPM) provides a powerful and nondestructive imaging option. SPM is unique in visualizing intrinsically disordered biomolecules at the nanometer scale (e.g., glycans). This review highlights recent achievements in studying biomolecules using SPM technique, focusing on DNA bases, amino acids, proteins, and glycans. The atomic‐level analysis of biomolecules made possible by SPM allows for a more accurate definition of the local structure–pr...
Scanning probe microscopies (SPM) are a relatively new family of imaging techniques whose capabiliti...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Scanning probe microscopy (SPM), a key invention in nanoscience, has by now been extended to a wide ...
Imaging of biomolecules guides our understanding of their diverse structures and functions1,2. Real-...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
DNA covers the genetic information in all living organisms. Numerous intrinsic and extrinsic factors...
DNA covers the genetic information in all living organisms. Numerous intrinsic and extrinsic factors...
Scanning probe microscopes can be used to image and chemically characterize surfaces down to the ato...
Attempts to elucidate the roles of carbohydrate-associated structures in biology have led to the dis...
This book presents an accessible and comprehensive survey of recent advances in the understanding of...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
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 ability to watch single molecules of DNA has revolutionised how we study biological transactions...
In the last two decades, the development of the atomic force microscope has progressed hand-in-hand ...
Scanning probe microscopies (SPM) are a relatively new family of imaging techniques whose capabiliti...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Scanning probe microscopy (SPM), a key invention in nanoscience, has by now been extended to a wide ...
Imaging of biomolecules guides our understanding of their diverse structures and functions1,2. Real-...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
DNA covers the genetic information in all living organisms. Numerous intrinsic and extrinsic factors...
DNA covers the genetic information in all living organisms. Numerous intrinsic and extrinsic factors...
Scanning probe microscopes can be used to image and chemically characterize surfaces down to the ato...
Attempts to elucidate the roles of carbohydrate-associated structures in biology have led to the dis...
This book presents an accessible and comprehensive survey of recent advances in the understanding of...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
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 ability to watch single molecules of DNA has revolutionised how we study biological transactions...
In the last two decades, the development of the atomic force microscope has progressed hand-in-hand ...
Scanning probe microscopies (SPM) are a relatively new family of imaging techniques whose capabiliti...
Protein-DNA interactions are pivotal for many essential biological processes. Atomic force microscop...
Scanning probe microscopy (SPM), a key invention in nanoscience, has by now been extended to a wide ...