International audienceAtomic force microscopy (AFM) has now become a major technology to study single cells in living conditions. It provides nanoscale resolution imaging capacities and is a sensitive force machine able to record piconewton-scale forces, thereby making it possible to gain insights into the nanomechanical properties and molecular interactions of cells. While an extensive number of studies on microorganisms have demonstrated the potential of AFM to understand complex phenomena at cell's interfaces, its use in microalgae studies remains limited. These recent years, microalgae have been the subject of a significant number of fundamental studies notably because of their capacity to convert light, water and inorganic nutrients in...
© Crown copyright 2014. A substantial proportion of the architecture of the plant cell wall remains ...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...
Innovative nanotechnologies for selective measurement of biological parameters can be helpful to red...
Abstract From consumer productions to energy production, algae is used in many industrial processes....
Cell disruption is an essential step in the release of cellular contents but mechanical cell disrupt...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
International audiencePlastic pollution has become a significant concern in aquatic ecosystems, wher...
In the past years, atomic force microscopy (AFM) has offered novel possibilities for exploring the n...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
Atomic force microscopy (AFM) is a technique that has long been employed in materials science, but i...
Atomic force microscopy (AFM) has recently opened a variety of novel possibilities for imaging and m...
Atomic force microscopy (AFM) is a technique that has long been employed in materials science, but i...
Condensed Matter Group and BIONTH (Bio- and Nano-Technologies for Health) Centre, School of Contempo...
© Crown copyright 2014. A substantial proportion of the architecture of the plant cell wall remains ...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...
Innovative nanotechnologies for selective measurement of biological parameters can be helpful to red...
Abstract From consumer productions to energy production, algae is used in many industrial processes....
Cell disruption is an essential step in the release of cellular contents but mechanical cell disrupt...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
International audiencePlastic pollution has become a significant concern in aquatic ecosystems, wher...
In the past years, atomic force microscopy (AFM) has offered novel possibilities for exploring the n...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
Atomic force microscopy (AFM) is a technique that has long been employed in materials science, but i...
Atomic force microscopy (AFM) has recently opened a variety of novel possibilities for imaging and m...
Atomic force microscopy (AFM) is a technique that has long been employed in materials science, but i...
Condensed Matter Group and BIONTH (Bio- and Nano-Technologies for Health) Centre, School of Contempo...
© Crown copyright 2014. A substantial proportion of the architecture of the plant cell wall remains ...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...
Innovative nanotechnologies for selective measurement of biological parameters can be helpful to red...