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Researchers at the Francis Crick Institute, King's College London and the University of Fribourg have developed polymer water ...
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Artificial cells can glow at room temperature in response to external target moleculeshave been used with cell-free systems to create artificial cell-based sensors for detecting membrane-permeable targets. However, all such sensors reported to date are based on prokaryotic cell ...
The amoeba-like robot uses biomolecules, such as DNA and protein, to integrate molecular machines into an artificial cell membrane. In response to different DNA signals it then shifts shapes, like ...
PLGA, creating microparticles (2). The microparticles are then encased in cell membranes derived from human MSCs (3) to allow the synMSCs to anchor to tissues and gradually release secreted factors, ...
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News-Medical.Net on MSNSweetener saccharin revives old antibiotics by breaking bacterial defencesSaccharin destabilizes bacterial membranes and interferes with DNA replication, causing lysis and impairing virulence traits.
Using so-called RNA aptamers, the artificial cytoskeleton was bound to the cell membranes. Through targeted mutations to the genetic template -- the DNA sequence -- it was also possible to ...
We use artificial antigen-presenting cells ... Figure 3: Interaction of aAPC with T cells induces membrane capping. In conclusion, we have shown here that aAPC can effectively bind MHC class ...
have been used with cell-free systems to create artificial cell-based sensors for detecting membrane-permeable targets. However, all such sensors reported to date are based on prokaryotic cell ...
Artificial cells using riboswitch-gene fusion in liposomes produce fluorescent proteins when detecting specific targets.
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