Injectable hydrogel systems are useful in many biomedical applications, including drug or cell delivery carriers and scaffolds. Here, we describe the design and characterization of a shear thinning hydrogel that undergoes a disassembly when shear forces are applied during injection and is self-healing once the shear forces are removed. This hydrogel is based on a cyclodextrin modified alginate, and a methacrylated gelatin which initially forms through a weak guest-host interaction between hydrophobic cyclodextrin cavities and the aromatic residue of gelatin. Methacrylated gelatin possesses photocrosslinkable functionalities which can go through a light-initiated polymerization to create secondary crosslinking sites and further crosslink the...
There is increasing evidence that cancer development and progression occurs in concert with alterati...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...
Thesis (Master's)--University of Washington, 2019Injectable hydrogel systems are beneficial for vari...
[[abstract]]Hydrogels, which are crosslinked polymer networks with high water contents and rheologic...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
Photo-crosslinkable hydrogels, in particular gelatin methacryloyl (GelMa), are gaining increasing im...
Injectable delivery vehicles in tissue engineering are often required for successful tissue formatio...
Hydrogels are important biomaterials that have several applications in drug and cell delivery, tissu...
Photocrosslinkable materials have been frequently used for constructing soft and biomimetic hydrogel...
Mouldable hydrogels that flow upon applied stress and rapidly self-heal are increasingly utilised as...
The insights into the physical interactions within cross-linker-free hydrogels can unlock a new hori...
Injectable self-healing hydrogels, as implanted materials, have received great attention over the pa...
Mouldable hydrogels that flow on applied stress and rapidly self-heal are increasingly utilized as t...
Shear-thinning hydrogels afford direct injection or catheter delivery to tissues without potential p...
There is increasing evidence that cancer development and progression occurs in concert with alterati...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...
Thesis (Master's)--University of Washington, 2019Injectable hydrogel systems are beneficial for vari...
[[abstract]]Hydrogels, which are crosslinked polymer networks with high water contents and rheologic...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
Photo-crosslinkable hydrogels, in particular gelatin methacryloyl (GelMa), are gaining increasing im...
Injectable delivery vehicles in tissue engineering are often required for successful tissue formatio...
Hydrogels are important biomaterials that have several applications in drug and cell delivery, tissu...
Photocrosslinkable materials have been frequently used for constructing soft and biomimetic hydrogel...
Mouldable hydrogels that flow upon applied stress and rapidly self-heal are increasingly utilised as...
The insights into the physical interactions within cross-linker-free hydrogels can unlock a new hori...
Injectable self-healing hydrogels, as implanted materials, have received great attention over the pa...
Mouldable hydrogels that flow on applied stress and rapidly self-heal are increasingly utilized as t...
Shear-thinning hydrogels afford direct injection or catheter delivery to tissues without potential p...
There is increasing evidence that cancer development and progression occurs in concert with alterati...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...
Regenerative medicine seeks to assess how materials fundamentally affect cellular functions to impro...