International audienceMacromolecular cryoprotectants based on polyampholytes are showing promise as supplemental cryoprotectants alongside conventional DMSO-based freezing. Here we exploit radical ring-opening (ter)polymerization to access ester-containing cryoprotective polyampholytes, which were shown to be degradable. Using a challenging cell monolayer cryopreservation model, the degradable polyampholytes were found to enhance post-thaw recovery when supplemented into DMSO. This demonstrates that degradable macromolecular cryoprotectants can be developed for application in biotechnology and biomedicine
The development of improved cryopreservative materials is necessary to enable complete recovery of l...
Poly(vinyl alcohol), PVA, is the most active synthetic mimic of antifreeze proteins and has extremel...
Hydrogels are promising substrates for tissue engineering applications because of their unique bioco...
Macromolecular cryoprotectants based on polyampholytes are showing promise as supplemental cryoprote...
Cellular cryopreservation is a platform technology which underpins cell biology, biochemistry, bioma...
A completely synthetic polyampholyte cryoprotectant was developed with cationic and anionic monomers...
Cryopreservation enables long-term preservation of cells at ultra-low temperatures. Current cryoprot...
We developed novel cryoprotective agents from carboxylated ε-poly-L-lysines (COOH-PLLs) for cell cry...
The storage and transport of frozen cells underpin the emerging/existing cell-based therapies and ar...
The storage and transport of frozen cells underpin the emerging/existing cell-based therapies and ar...
We developed various novel synthetic polyampholytes via reversible addition fragmentation chain tran...
Cryoprotective agents (CPAs) such as dimethyl sulfoxide (DMSO), glycerol, ethylene glycol, and propy...
The storage and transport of cells is a fundamental technology which underpins cell biology, biomate...
Mesenchymal stromal (stem) cells have potential in regenerative medicine and modulating the immune s...
The storage and transport of cells is a fundamental technology which underpins cell biology, biomate...
The development of improved cryopreservative materials is necessary to enable complete recovery of l...
Poly(vinyl alcohol), PVA, is the most active synthetic mimic of antifreeze proteins and has extremel...
Hydrogels are promising substrates for tissue engineering applications because of their unique bioco...
Macromolecular cryoprotectants based on polyampholytes are showing promise as supplemental cryoprote...
Cellular cryopreservation is a platform technology which underpins cell biology, biochemistry, bioma...
A completely synthetic polyampholyte cryoprotectant was developed with cationic and anionic monomers...
Cryopreservation enables long-term preservation of cells at ultra-low temperatures. Current cryoprot...
We developed novel cryoprotective agents from carboxylated ε-poly-L-lysines (COOH-PLLs) for cell cry...
The storage and transport of frozen cells underpin the emerging/existing cell-based therapies and ar...
The storage and transport of frozen cells underpin the emerging/existing cell-based therapies and ar...
We developed various novel synthetic polyampholytes via reversible addition fragmentation chain tran...
Cryoprotective agents (CPAs) such as dimethyl sulfoxide (DMSO), glycerol, ethylene glycol, and propy...
The storage and transport of cells is a fundamental technology which underpins cell biology, biomate...
Mesenchymal stromal (stem) cells have potential in regenerative medicine and modulating the immune s...
The storage and transport of cells is a fundamental technology which underpins cell biology, biomate...
The development of improved cryopreservative materials is necessary to enable complete recovery of l...
Poly(vinyl alcohol), PVA, is the most active synthetic mimic of antifreeze proteins and has extremel...
Hydrogels are promising substrates for tissue engineering applications because of their unique bioco...