Despite the development of hydrogels with high mechanical properties, insufficient adhesion between these materials and biological surfaces significantly limits their use in the biomedical field. By controlling toughening processes, we designed a composite double-network hydrogel with ∼90% water content, which creates a dissipative interface and robustly adheres to soft tissues such as cartilage and meniscus. A double-network matrix composed of covalently cross-linked poly(ethylene glycol) dimethacrylate and ionically cross-linked alginate was reinforced with nanofibrillated cellulose. No tissue surface modification was needed to obtain high adhesion properties of the developed hydrogel. Instead, mechanistic principles were used to control...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Double cross-linked interpenetrating polymer network (IPN) hydrogels of sodium alginate and gelatin ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with a wide range of mechanical properties, insufficient adhesi...
Development of tough and adhesive hydrogels is critical for different applications, including wound ...
Attaching hydrogels to soft internal tissues is crucial for the development of various biomedical de...
The development of a hydrogel-based synthetic cartilage has the potential to overcome many limitatio...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Hydrogels that possess adequate toughness in bulk and at soft interface are highly desirable. We rep...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Double cross-linked interpenetrating polymer network (IPN) hydrogels of sodium alginate and gelatin ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with high mechanical properties, insufficient adhesion between ...
Despite the development of hydrogels with a wide range of mechanical properties, insufficient adhesi...
Development of tough and adhesive hydrogels is critical for different applications, including wound ...
Attaching hydrogels to soft internal tissues is crucial for the development of various biomedical de...
The development of a hydrogel-based synthetic cartilage has the potential to overcome many limitatio...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Hydrogels that possess adequate toughness in bulk and at soft interface are highly desirable. We rep...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Double cross-linked interpenetrating polymer network (IPN) hydrogels of sodium alginate and gelatin ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...