One of the most promising applications of encapsulated living cells is their use as protected transplanted tissue into the human body. A suitable system for the protection of living cells is the use of nano- or microcapsules of polyelectrolytes. These shells can be deposited easily on top of the cells by means of a layer-by-layer technique. An interesting feature of the capsules is the possibility to control their properties on a nanometre level, tuning their wall texture via the preparation conditions. Here we introduce a model system to test the protection ability of polyelectrolyte capsules. Common bakery yeast cells were encapsulated. They were coated with a fluorescently labelled shell at conditions known to guarantee cell survival, an...
Microbial cells and the derivative structures have the potential to efficiently encapsulate, protect...
Here, we report the preparation and characterization of hollow polymer microspheres based on the pre...
We report the fabrication of novel shellac-cell composite microcapsules with programmed release of c...
One of the most promising tools for future applications in science and medicine is the use of nanote...
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...
Microencapsulation of living cells such as probiotic bacteria can be used for the protection of the ...
Nanocapsules, fuzzy assemblies of polyelectrolyte, represent a comparatively new class of colloids w...
We demonstrate that living cells can be encapsulated inside sporopollenin microcapsules derived from...
We report the layer-by-layer coating of living fungi cells (Saccharomyces cerevisiae and Trichoderma...
Single-cell nanoencapsulation, forming cell-in-shell structures, provides chemical tools for endowin...
Saccharomyces boulardii was encapsulated by layer-by-layer technique (LbL) using oppositely charged ...
While new techniques and platforms have advanced rapidly to enhance our understanding of complex mic...
Single-cell encapsulation promises the cytoprotection of the encased cells against lethal stressors,...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
Microbial cells and the derivative structures have the potential to efficiently encapsulate, protect...
Here, we report the preparation and characterization of hollow polymer microspheres based on the pre...
We report the fabrication of novel shellac-cell composite microcapsules with programmed release of c...
One of the most promising tools for future applications in science and medicine is the use of nanote...
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...
Microencapsulation of living cells such as probiotic bacteria can be used for the protection of the ...
Nanocapsules, fuzzy assemblies of polyelectrolyte, represent a comparatively new class of colloids w...
We demonstrate that living cells can be encapsulated inside sporopollenin microcapsules derived from...
We report the layer-by-layer coating of living fungi cells (Saccharomyces cerevisiae and Trichoderma...
Single-cell nanoencapsulation, forming cell-in-shell structures, provides chemical tools for endowin...
Saccharomyces boulardii was encapsulated by layer-by-layer technique (LbL) using oppositely charged ...
While new techniques and platforms have advanced rapidly to enhance our understanding of complex mic...
Single-cell encapsulation promises the cytoprotection of the encased cells against lethal stressors,...
Single cell surface engineering provides the most efficient, non-genetic strategy to enhance cell st...
Microbial cells and the derivative structures have the potential to efficiently encapsulate, protect...
Here, we report the preparation and characterization of hollow polymer microspheres based on the pre...
We report the fabrication of novel shellac-cell composite microcapsules with programmed release of c...