Mouldable hydrogels that flow on applied stress and rapidly self-heal are increasingly utilized as they afford minimally invasive delivery and conformal application. Here we report a new paradigm for the fabrication of self-assembled hydrogels with shear-thinning and self-healing properties employing rationally engineered polymer–nanoparticle (NP) interactions. Biopolymer derivatives are linked together by selective adsorption to NPs. The transient and reversible interactions between biopolymers and NPs enable flow under applied shear stress, followed by rapid self-healing when the stress is relaxed. We develop a physical description of polymer–NP gel formation that is utilized to design biocompatible gels for drug delivery. Owing to the hi...
Hydrogels containing sugar and oxaborole residues with remarkable self-healing properties were synth...
Hydrogels are a class of soft material that is exploited in many, often completely disparate, indust...
PhDTissue engineering and regenerative medicine represent a great challenge for biomedical research ...
Mouldable hydrogels that flow upon applied stress and rapidly self-heal are increasingly utilised as...
[[abstract]]Hydrogels, which are crosslinked polymer networks with high water contents and rheologic...
Hydrogels, which are crosslinked polymer networks with high water contents and rheological solid-lik...
Shear thinning hydrogels are promising materials that exhibit rapid self-healing following the cessa...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
Dynamically restructuring pH-responsive hydrogels are synthesized, employing dynamic covalent chemis...
Shear-thinning injectable hydrogels exploit dynamic noncovalent cross-links to flow upon applied str...
Hydrogels, as three-dimensional polymer networks, are able to retain a large amount of water in thei...
Given their durability and long-term stability, self-healable hydrogels have, in the past few years,...
Injectable self-healing hydrogels, as implanted materials, have received great attention over the pa...
yesHere in, we describe a non-covalent (ionic interlocking and hydrogen bonding) strategy of self-he...
Injectable hydrogels represent a valuable tool for the delivery of therapeutic molecules aimed to re...
Hydrogels containing sugar and oxaborole residues with remarkable self-healing properties were synth...
Hydrogels are a class of soft material that is exploited in many, often completely disparate, indust...
PhDTissue engineering and regenerative medicine represent a great challenge for biomedical research ...
Mouldable hydrogels that flow upon applied stress and rapidly self-heal are increasingly utilised as...
[[abstract]]Hydrogels, which are crosslinked polymer networks with high water contents and rheologic...
Hydrogels, which are crosslinked polymer networks with high water contents and rheological solid-lik...
Shear thinning hydrogels are promising materials that exhibit rapid self-healing following the cessa...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
Dynamically restructuring pH-responsive hydrogels are synthesized, employing dynamic covalent chemis...
Shear-thinning injectable hydrogels exploit dynamic noncovalent cross-links to flow upon applied str...
Hydrogels, as three-dimensional polymer networks, are able to retain a large amount of water in thei...
Given their durability and long-term stability, self-healable hydrogels have, in the past few years,...
Injectable self-healing hydrogels, as implanted materials, have received great attention over the pa...
yesHere in, we describe a non-covalent (ionic interlocking and hydrogen bonding) strategy of self-he...
Injectable hydrogels represent a valuable tool for the delivery of therapeutic molecules aimed to re...
Hydrogels containing sugar and oxaborole residues with remarkable self-healing properties were synth...
Hydrogels are a class of soft material that is exploited in many, often completely disparate, indust...
PhDTissue engineering and regenerative medicine represent a great challenge for biomedical research ...