Catering the hydrogel manufacturing process toward defined viscoelastic properties for intended biomedical use is important to hydrogel scaffolding function and cell differentiation. Silk fibroin hydrogels may undergo “physical” cross-linking through β-sheet crystallization during high pressure carbon dioxide treatment, or covalent “chemical” cross-linking by genipin. We demonstrate here that time-dependent mechanical properties are tunable in silk fibroin hydrogels by altering the chronological order of genipin cross-linking with β-sheet formation. Genipin cross-linking before β-sheet formation affects gelation mechanics through increased molecular weight, affecting gel morphology, and decreasing stiffness response. Alternately, genipin cr...
Bioactive hydrogels based on naturally-derived polymers are of great interest for regenerative medic...
Tissue-mimetic silk hydrogels are being explored for diverse healthcare applications, including stem...
| openaire: EC/H2020/742829/EU//DRIVENStrain-stiffening is one of the characteristic properties of b...
Silk fibroin hydrogels with tunable properties could be obtained from aqueous fibroin solutions (4.2...
Electrochemically controlled, reversible assembly of biopolymers into hydrogel structures is a promi...
We transform reconstituted silk solutions into robust hydrogels through covalent dityrosine cross-li...
Mechanical properties of biomaterials play an important role in their biological performance. Among ...
AbstractA novel, to our knowledge, technique was developed to control the rate of β-sheet formation ...
A variety of polymers of synthetic origins (e.g., poly(ethylene glycol) or PEG) and naturally derive...
[EN] Fibrin is a protein that can be used as an ideal scaffolding material to promote tissue regener...
Folded protein hydrogels are prime candidates as tuneable biomaterials but it is unclear to what ext...
Strain hardening, i.e., the nonlinear elastic response of materials under load, is a physiological r...
The development of protein-based hydrogels for tissue engineering applications is often limited by t...
Tissue-mimetic silk hydrogels are being explored for diverse healthcare applications, including stem...
<p>We study the self-assembly of protein polymers consisting of a silk-like block flanked by two hyd...
Bioactive hydrogels based on naturally-derived polymers are of great interest for regenerative medic...
Tissue-mimetic silk hydrogels are being explored for diverse healthcare applications, including stem...
| openaire: EC/H2020/742829/EU//DRIVENStrain-stiffening is one of the characteristic properties of b...
Silk fibroin hydrogels with tunable properties could be obtained from aqueous fibroin solutions (4.2...
Electrochemically controlled, reversible assembly of biopolymers into hydrogel structures is a promi...
We transform reconstituted silk solutions into robust hydrogels through covalent dityrosine cross-li...
Mechanical properties of biomaterials play an important role in their biological performance. Among ...
AbstractA novel, to our knowledge, technique was developed to control the rate of β-sheet formation ...
A variety of polymers of synthetic origins (e.g., poly(ethylene glycol) or PEG) and naturally derive...
[EN] Fibrin is a protein that can be used as an ideal scaffolding material to promote tissue regener...
Folded protein hydrogels are prime candidates as tuneable biomaterials but it is unclear to what ext...
Strain hardening, i.e., the nonlinear elastic response of materials under load, is a physiological r...
The development of protein-based hydrogels for tissue engineering applications is often limited by t...
Tissue-mimetic silk hydrogels are being explored for diverse healthcare applications, including stem...
<p>We study the self-assembly of protein polymers consisting of a silk-like block flanked by two hyd...
Bioactive hydrogels based on naturally-derived polymers are of great interest for regenerative medic...
Tissue-mimetic silk hydrogels are being explored for diverse healthcare applications, including stem...
| openaire: EC/H2020/742829/EU//DRIVENStrain-stiffening is one of the characteristic properties of b...