Biopolymeric hydrogels have been widely used as carriers of therapeutic cells and drugs for biomedical applications. However, most conventional hydrogels cannot be injected after gelation and do not support the infiltration of cells because of the static nature of their network structure. Here, we develop unique cell-infiltratable and injectable (Ci-I) gelatin hydrogels, which are physically cross-linked by weak and highly dynamic host–guest complexations and are further reinforced by limited chemical cross-linking for enhanced stability, and then demonstrate the outstanding properties of these Ci-I gelatin hydrogels. The highly dynamic network of Ci-I hydrogels allows injection of prefabricated hydrogels with encapsulated cells and drugs, ...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...
We have previously made a mechanically tough hydrogel by creating an interpenetrating network (IPN) ...
The treatment of irregular bone defects remains a clinical challenge since the current biomaterials ...
Biopolymeric hydrogels have been widely used as carriers of therapeutic cells and drugs for biomedic...
Annually, millions of patients suffer from irreversible injury owing to the loss or failure of an or...
As many medications are administered jointly, they often give larger benefits, counteract disadvanta...
The development of injectable hydrogels with tunable multifunctional properties, for example, adhesi...
The present work investigated the osteogenic potential of injectable, dual thermally and chemically ...
In this work, we investigated the viability and osteogenic differentiation of mesenchymal stem cells...
Hydrogels are widely used tools for tissue engineering and regenerative medicine. Characterized as b...
Herein we present a unique method of using dynamic cross-links, which are dynamic covalent bonding a...
Hydrogels have been widely explored for the delivery of cells in a variety of regenerative medicine ...
Tissue engineering intends to create functionalized tissues/organs for regenerating the injured part...
In situ forming hydrogel shows enormous potential as a therapeutic implant or carrier in tissue repa...
Hydrogels that are non-toxic, easy to use, cytocompatible, injectable and degradable are valuable bi...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...
We have previously made a mechanically tough hydrogel by creating an interpenetrating network (IPN) ...
The treatment of irregular bone defects remains a clinical challenge since the current biomaterials ...
Biopolymeric hydrogels have been widely used as carriers of therapeutic cells and drugs for biomedic...
Annually, millions of patients suffer from irreversible injury owing to the loss or failure of an or...
As many medications are administered jointly, they often give larger benefits, counteract disadvanta...
The development of injectable hydrogels with tunable multifunctional properties, for example, adhesi...
The present work investigated the osteogenic potential of injectable, dual thermally and chemically ...
In this work, we investigated the viability and osteogenic differentiation of mesenchymal stem cells...
Hydrogels are widely used tools for tissue engineering and regenerative medicine. Characterized as b...
Herein we present a unique method of using dynamic cross-links, which are dynamic covalent bonding a...
Hydrogels have been widely explored for the delivery of cells in a variety of regenerative medicine ...
Tissue engineering intends to create functionalized tissues/organs for regenerating the injured part...
In situ forming hydrogel shows enormous potential as a therapeutic implant or carrier in tissue repa...
Hydrogels that are non-toxic, easy to use, cytocompatible, injectable and degradable are valuable bi...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...
We have previously made a mechanically tough hydrogel by creating an interpenetrating network (IPN) ...
The treatment of irregular bone defects remains a clinical challenge since the current biomaterials ...