Hydrogels with predictable degradation are highly desired for biomedical applications where timely disintegration of the hydrogel (e.g., drug delivery, guided tissue regeneration) is required. However, precisely controlling hydrogel degradation over a broad range in a predictable manner is challenging due to limited intrinsic variability in the degradation rate of liable bonds and difficulties in modeling degradation kinetics for complex polymer networks. More often than not, empirical tuning of the degradation profile results in undesired changes in other properties. Here we report a simple but versatile hydrogel platform that allows us to formulate hydrogels with predictable disintegration time from 2 to \u3e250 days yet comparable macros...
Hydrogels are being increasingly studied for use in various biomedical applications including drug d...
The mechanical milieu of the extracellular matrix (ECM) plays a key role in modulating the cellular ...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...
Hydrogels with predictable degradation are highly desired for biomedical applications where timely d...
ABSTRACT: Hydrogels with predictable degradation are highly desired for biomedical applications wher...
Cytocompatible hydrogels with good mechanical properties and predictable degradation are highly desi...
Degradation of three-dimensional hydrogels is known to regulate many cellular behaviors. Accordingly...
A shortage of available organ donors has created a need for engineered tissues. In this context, pol...
A shortage of available organ donors has created a need for engineered tissues. In this context, pol...
Poly(ethylene glycol) (PEG) and interpenetrating collagen can be used to synthesize hydrogels that ...
The preparation of polymeric networks that are both tough and biodegradable remains a challenge. Her...
Chemoselectively cross-linked hydrogels have recently gained increasing attention for the developmen...
Hydrogels with tunable degradability have potential uses in a range of applications including drug d...
Eight-armed poly(ethylene glycol) (PEG) hydrogels cross-linked via inverse electron demand Diels–Ald...
The controlled delivery of therapeutic agents by biodegradable hydrogels has become a popular mechan...
Hydrogels are being increasingly studied for use in various biomedical applications including drug d...
The mechanical milieu of the extracellular matrix (ECM) plays a key role in modulating the cellular ...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...
Hydrogels with predictable degradation are highly desired for biomedical applications where timely d...
ABSTRACT: Hydrogels with predictable degradation are highly desired for biomedical applications wher...
Cytocompatible hydrogels with good mechanical properties and predictable degradation are highly desi...
Degradation of three-dimensional hydrogels is known to regulate many cellular behaviors. Accordingly...
A shortage of available organ donors has created a need for engineered tissues. In this context, pol...
A shortage of available organ donors has created a need for engineered tissues. In this context, pol...
Poly(ethylene glycol) (PEG) and interpenetrating collagen can be used to synthesize hydrogels that ...
The preparation of polymeric networks that are both tough and biodegradable remains a challenge. Her...
Chemoselectively cross-linked hydrogels have recently gained increasing attention for the developmen...
Hydrogels with tunable degradability have potential uses in a range of applications including drug d...
Eight-armed poly(ethylene glycol) (PEG) hydrogels cross-linked via inverse electron demand Diels–Ald...
The controlled delivery of therapeutic agents by biodegradable hydrogels has become a popular mechan...
Hydrogels are being increasingly studied for use in various biomedical applications including drug d...
The mechanical milieu of the extracellular matrix (ECM) plays a key role in modulating the cellular ...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...