Elastomeric copolymers of 1,3-trimethylene carbonate (TMC) and ε-caprolactone (CL) and copolymers of TMC and D,L-lactide (DLLA) have been evaluated as candidate materials for the preparation of biodegradable scaffolds for soft tissue engineering. TMC-DLLA copolymers are amorphous and degrade more rapidly in phosphate-buffered saline (PBS) of pH 7.4 at 37 °C than (semi-crystalline) TMC-CL copolymers. TMC-DLLA with 20 or 50 mol% TMC loose their tensile strength in less than 5 months and are totally resorbed in 11 months. In PBS, TMC-CL copolymers retain suitable mechanical properties for more than a year. Cell seeding studies show that rat cardiomyocytes and human Schwann cells attach and proliferate well on the TMC-based copolymers. TMC-DLLA...
Biodegradable Thermoplastic Elastomer (BTPE) has the potential uses as implantable devices due to th...
Development of modern medical technologies would be impossible without the application of various ma...
In myocardial tissue engineering the use of synthetically bioengineered flexible patches implanted i...
Biodegradable porous scaffolds for heart tissue engineering were prepared from amorphous elastomeric...
Biodegradable porous scaffolds for heart tissue engineering were prepared from amorphous elastomeric...
A series of copolymers of trimethylene carbonate (TMC) and l-lactide (LLA) were synthesized and eval...
A series of copolymers of trimethylene carbonate (TMC) and L-lactide (LLA) were synthesized and eval...
Nowadays, efforts are dedicated to develop new biodegradable polymers for soft tissues engineering, ...
Synthetic biodegradable polymers are of great value for the preparation of implants that are require...
The growth of suitable tissue to replace natural blood vessels requires a degradable scaffold materi...
High molecular weight copolymers of L-lactide and epsilon-caprolactone have been synthesized by ring...
Elastomeric scaffolds play an important role in the field of soft tissue engineering, and recently, ...
We newly designed super-elastic biodegradable scaffolds with longitudinally oriented microchannels f...
Biodegradable Thermoplastic Elastomer (BTPE) has the potential uses as implantable devices due to th...
Development of modern medical technologies would be impossible without the application of various ma...
In myocardial tissue engineering the use of synthetically bioengineered flexible patches implanted i...
Biodegradable porous scaffolds for heart tissue engineering were prepared from amorphous elastomeric...
Biodegradable porous scaffolds for heart tissue engineering were prepared from amorphous elastomeric...
A series of copolymers of trimethylene carbonate (TMC) and l-lactide (LLA) were synthesized and eval...
A series of copolymers of trimethylene carbonate (TMC) and L-lactide (LLA) were synthesized and eval...
Nowadays, efforts are dedicated to develop new biodegradable polymers for soft tissues engineering, ...
Synthetic biodegradable polymers are of great value for the preparation of implants that are require...
The growth of suitable tissue to replace natural blood vessels requires a degradable scaffold materi...
High molecular weight copolymers of L-lactide and epsilon-caprolactone have been synthesized by ring...
Elastomeric scaffolds play an important role in the field of soft tissue engineering, and recently, ...
We newly designed super-elastic biodegradable scaffolds with longitudinally oriented microchannels f...
Biodegradable Thermoplastic Elastomer (BTPE) has the potential uses as implantable devices due to th...
Development of modern medical technologies would be impossible without the application of various ma...
In myocardial tissue engineering the use of synthetically bioengineered flexible patches implanted i...