Hydrogels capable of releasing growth factors from very precise 3D structures to be placed on neural electrodes were microfabricated by two-photon lithography in aqueous solution. Hydrophobic chromophores with a large two-photon absorption cross section were solubilized using a nonionic surfactant and the resulting complex were applied with an oil soluble photoradical initiator to fabricate hydrogel microstructures. The results show that hydrogel microstructures are formed when the initiator 2,2-dimethoxy-2-phenyl acetophenone (Irgacure 651) and the 2-photon sensitive chromophore are present in the polymerizable mixture. The presence of water in the prepolymer solution helps in controlling important properties of the resulting structure suc...
The natural extracellular matrix (ECM) represents a complex and dynamic environment. It provides num...
The additive manufacturing technique of direct laser writing by two-photon polymerization (2PP-DLW) ...
Hypothesis: Polymeric anisotropic soft microparticles show interesting behavior in biological enviro...
Hydrogels capable of releasing growth factors from very precise 3D structures to be placed on neural...
Hydrogels are cross-linked water-containing polymer networks that are formed by physical, ionic or c...
textAs one of the few 3D microfabrication techniques available to researchers, multiphoton lithogra...
Two-photon lithography is a promising three-dimensional (3D) laser writing technique to construct ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Hydrogels are widely used as matrices for cell growth due to the similarity of their mechanical and ...
The lack of efficient water-soluble two-photon absorption (TPA) photoinitiators has been a critical ...
Stimuli-responsive hydrogels have attracted much attention owing to the versatility of their program...
In this study, a novel approach to create arbitrarily shaped 3D hydrogel objects is presented, where...
The fabrication of high-precision scaffolds with excellent biocompatibility for tissue engineering h...
This work presents two-photon polymerization (2PP) of microstructured 3D hydrogels using alginate fo...
Three-dimensional biomolecule patterned hydrogels provide cellular microenvironments that mimic in v...
The natural extracellular matrix (ECM) represents a complex and dynamic environment. It provides num...
The additive manufacturing technique of direct laser writing by two-photon polymerization (2PP-DLW) ...
Hypothesis: Polymeric anisotropic soft microparticles show interesting behavior in biological enviro...
Hydrogels capable of releasing growth factors from very precise 3D structures to be placed on neural...
Hydrogels are cross-linked water-containing polymer networks that are formed by physical, ionic or c...
textAs one of the few 3D microfabrication techniques available to researchers, multiphoton lithogra...
Two-photon lithography is a promising three-dimensional (3D) laser writing technique to construct ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Hydrogels are widely used as matrices for cell growth due to the similarity of their mechanical and ...
The lack of efficient water-soluble two-photon absorption (TPA) photoinitiators has been a critical ...
Stimuli-responsive hydrogels have attracted much attention owing to the versatility of their program...
In this study, a novel approach to create arbitrarily shaped 3D hydrogel objects is presented, where...
The fabrication of high-precision scaffolds with excellent biocompatibility for tissue engineering h...
This work presents two-photon polymerization (2PP) of microstructured 3D hydrogels using alginate fo...
Three-dimensional biomolecule patterned hydrogels provide cellular microenvironments that mimic in v...
The natural extracellular matrix (ECM) represents a complex and dynamic environment. It provides num...
The additive manufacturing technique of direct laser writing by two-photon polymerization (2PP-DLW) ...
Hypothesis: Polymeric anisotropic soft microparticles show interesting behavior in biological enviro...