The labelling of functional molecules on the surface of bacterial cells is one way to recognize the bacteria. In this work, we have developed a method for the selective labelling of protein A on the cell surfaces of Staphylococcus aureus by using nanosized immunogold conjugates as cell-surface markers for atomic force microscopy (AFM). The use of 30-nm size Au nanoparticles conjugated with immunoglobulin G (IgG) allowed the visualization, localization and distribution of protein A–IgG complexes on the surface of S. aureus. The selectivity of the labelling method was confirmed in mixtures of S. aureus with Bacillus licheniformis cells, which differed by size and shape and had no IgG receptors on the surface. A preferential binding of the IgG...
The development of bacterial strains that are resistant to multiple antibiotics has urged the need f...
peer reviewedWith the purpose of developing biosensors, the reliable proof of the biological activit...
The nanoscale exploration of microbes using atomic force microscopy (AFM) is an exciting research fi...
The feasibility of using immunogold labels as cell-surface markers in atomic force microscopy is sho...
The feasibility of using immunogold labels as cell-surface markers in atomic force microscopy is sho...
Modern health care systems have to deal with an expanding number of nosocomial infections due to inc...
The nanoscale exploration of microbes using atomic force microscopy (AFM) is an exciting research fi...
Staphylococcus aureus is a widespread and highly virulent pathogen that can cause superficial and in...
Single-molecule force spectroscopy using atomic force microscopy (AFM) is more and more used to dete...
Atomic force microscopy (AFM) is a powerful instrument that can generate very high-resolution images...
Bacterial surface layers (S-layers) are extracellular protein networks that act as molecular sieves ...
Protein A has long been used in different research fields due to its ability to specifically recogni...
International audienceThe development of bacterial strains that are resistant to multiple antibiotic...
The nanoscale surface analysis of microbial cells represents a significant challenge of current micr...
Nanoparticle labels were used to detect the pathogenic bacteria Staphylococcus aureus. Two different...
The development of bacterial strains that are resistant to multiple antibiotics has urged the need f...
peer reviewedWith the purpose of developing biosensors, the reliable proof of the biological activit...
The nanoscale exploration of microbes using atomic force microscopy (AFM) is an exciting research fi...
The feasibility of using immunogold labels as cell-surface markers in atomic force microscopy is sho...
The feasibility of using immunogold labels as cell-surface markers in atomic force microscopy is sho...
Modern health care systems have to deal with an expanding number of nosocomial infections due to inc...
The nanoscale exploration of microbes using atomic force microscopy (AFM) is an exciting research fi...
Staphylococcus aureus is a widespread and highly virulent pathogen that can cause superficial and in...
Single-molecule force spectroscopy using atomic force microscopy (AFM) is more and more used to dete...
Atomic force microscopy (AFM) is a powerful instrument that can generate very high-resolution images...
Bacterial surface layers (S-layers) are extracellular protein networks that act as molecular sieves ...
Protein A has long been used in different research fields due to its ability to specifically recogni...
International audienceThe development of bacterial strains that are resistant to multiple antibiotic...
The nanoscale surface analysis of microbial cells represents a significant challenge of current micr...
Nanoparticle labels were used to detect the pathogenic bacteria Staphylococcus aureus. Two different...
The development of bacterial strains that are resistant to multiple antibiotics has urged the need f...
peer reviewedWith the purpose of developing biosensors, the reliable proof of the biological activit...
The nanoscale exploration of microbes using atomic force microscopy (AFM) is an exciting research fi...