International audienceSaccharomyces cerevisiae, a eukaryotic model organism, plays a key role in the oxidative stability of fermented products. In order to protect cells against environmental stresses, we report a method of modifying the cell surface architecture while maintaining the internal working properties of the system. The objective was to encapsulate living yeast cells in micro-organized polyelectrolyte shells using layer-by-layer (LbL) assembly. For the first time, the natural polyelectrolytes, β-lactoglobulin and sodium alginate, were alternately deposited on the surface of S. cerevisiae. Transmission electron microscopy coupled with immune-cytochemistry and scanning electron microscopy provided evidence of the polyelectrolyte la...
We report the fabrication of yeastosomes - novel multicellular assemblies, which consist of a spheri...
There is a growing concern about the enhanced global warming caused by excessive CO2 emissions. Ther...
One of the most promising tools for future applications in science and medicine is the use of nanote...
International audienceSaccharomyces cerevisiae, a eukaryotic model organism, plays a key role in the...
The encapsulation techniques are applied in various fields and for various applications. The layer-b...
International audienceIn the present paper, the Layer by Layer (LbL) method using beta-lactoglobulin...
One of the most promising applications of encapsulated living cells is their use as protected transp...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
We report on cell surface engineering of living microorganisms by using Layer-by-Layer (LbL) technol...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
Dans le but de protéger la levure Saccharomyces cerevisiae pendant la déshydratation, deux stratégie...
Here we report the three-dimensional assembly of carbon nanotubes on the polyelectrolyte-coated livi...
One of the most promising tools for future applications in science and medicine is the use of nanote...
We report the fabrication of yeastosomes - novel multicellular assemblies, which consist of a spheri...
There is a growing concern about the enhanced global warming caused by excessive CO2 emissions. Ther...
One of the most promising tools for future applications in science and medicine is the use of nanote...
International audienceSaccharomyces cerevisiae, a eukaryotic model organism, plays a key role in the...
The encapsulation techniques are applied in various fields and for various applications. The layer-b...
International audienceIn the present paper, the Layer by Layer (LbL) method using beta-lactoglobulin...
One of the most promising applications of encapsulated living cells is their use as protected transp...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
We report on cell surface engineering of living microorganisms by using Layer-by-Layer (LbL) technol...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
Dans le but de protéger la levure Saccharomyces cerevisiae pendant la déshydratation, deux stratégie...
Here we report the three-dimensional assembly of carbon nanotubes on the polyelectrolyte-coated livi...
One of the most promising tools for future applications in science and medicine is the use of nanote...
We report the fabrication of yeastosomes - novel multicellular assemblies, which consist of a spheri...
There is a growing concern about the enhanced global warming caused by excessive CO2 emissions. Ther...
One of the most promising tools for future applications in science and medicine is the use of nanote...