Stimuli‐responsive materials have the potential to enable the generation of new bioinspired devices with unique physicochemical properties and cell‐instructive ability. Enhancing biocompatibility while simplifying the production methodologies, as well as enabling the creation of complex constructs, i.e., via 3D (bio)printing technologies, remains key challenge in the field. Here, a novel method is presented to biofabricate cellularized anisotropic hybrid hydrogel through a mild and biocompatible process driven by multiple external stimuli: magnetic field, temperature, and light. A low‐intensity magnetic field is used to align mosaic iron oxide nanoparticles (IOPs) into filaments with tunable size within a gelatin methacryloyl matrix. Cells ...
Human in vitro models of neural tissue with tunable microenvironment and defined spatial arrangement...
Dynamic cell‐culture materials that can change mechanical properties in response to extrinsic stimul...
Multifunctional nanocomposites that exhibit well-defined physical properties and encode spatiotempor...
Stimuli‐responsive materials have the potential to enable the generation of new bioinspired devices ...
Recreating the extracellular matrix organization and cellular patterns of aniso-tropic tissues in bi...
Shape morphing materials, especially those fabricated by 4D printing, are gaining much attention due...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
Herein, the fabrication of multi-responsive and hierarchically organized nano-material using core-sh...
International audienceThe inclusion of magnetic nanoparticles into biopolymer matrixes enables the p...
The ability to manipulate cellular organization within soft materials has important potential in bio...
Multifunctional nanocomposites which exhibit well-defined physical properties are emerging as compon...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Multifunctional nanocomposites that exhibit well-defined physical properties and encode spatiotempor...
Human in vitro models of neural tissue with tunable microenvironment and defined spatial arrangement...
Dynamic cell‐culture materials that can change mechanical properties in response to extrinsic stimul...
Multifunctional nanocomposites that exhibit well-defined physical properties and encode spatiotempor...
Stimuli‐responsive materials have the potential to enable the generation of new bioinspired devices ...
Recreating the extracellular matrix organization and cellular patterns of aniso-tropic tissues in bi...
Shape morphing materials, especially those fabricated by 4D printing, are gaining much attention due...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
Herein, the fabrication of multi-responsive and hierarchically organized nano-material using core-sh...
International audienceThe inclusion of magnetic nanoparticles into biopolymer matrixes enables the p...
The ability to manipulate cellular organization within soft materials has important potential in bio...
Multifunctional nanocomposites which exhibit well-defined physical properties are emerging as compon...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Multifunctional nanocomposites that exhibit well-defined physical properties and encode spatiotempor...
Human in vitro models of neural tissue with tunable microenvironment and defined spatial arrangement...
Dynamic cell‐culture materials that can change mechanical properties in response to extrinsic stimul...
Multifunctional nanocomposites that exhibit well-defined physical properties and encode spatiotempor...