Stabilization of enzyme-immobilized hydrogels for extended hypoxic cell culture
Embodiments of the current invention include a hydrogel formed from crosslinked polyethylene glycol into which acrylated glucose oxidase has been immobilized through crosslinking to the gel. These hydrogels can be used to create hypoxia under ambient conditions for at least 72 hours and can be used to create hypoxic gradients. These embodiments permit the study of cells under a variety of hypoxic conditions.
1. A photopolymerized and freeze-dried composition, comprising:
a hydrogel formed from a polymer building block selected from the group consisting of: polyethylene glycol; (polyethylene-glycol)-diacrylate; polyvinyl alcohol; polyglycerol; collagen; gelatin; chitosan; heparin; fibrinogen; hyaluronic acid; chondroitin sulfate; pullulan; xylan; dextran; alginate; silk fibroin; or derivatives of these polymers;
an acrylated oxygen consuming enzyme selected from the group consisting of: glucose oxidase; bilirubin oxidase tyrosinase; laccase; lysyl oxidase; monoamine oxidase; xanthine oxidase; NADPH; or cytochrome P450 oxidase, wherein the acrylated oxygen consuming enzyme is crosslinked to the hydrogel through covalent bonds and retains at least some of its catalytic activity; and
D-trehalose; wherein the acrylated oxygen consuming enzyme is immobilized in the hydrogel, and wherein the composition produces an oxygen gradient in a solution in contact with the composition.
2. The composition of claim 1 wherein the at least one enzyme includes acrylated glucose oxidase and where in a least a portion of the acrylated glucose oxidase is crosslinked to the hydrogel through covalent bonds.
3. The composition of claim 1 , wherein the at least one polymer building block is polyethylene glycol.
4. The composition according to claim 1 , wherein the hydrogel and the at least one enzyme immobilized in the hydrogel are lypophilized.
5. The composition according to claim 1 , wherein the acrylated glucose oxidase is present in the range of about 1 mg/mL to about 50 mg/mL.
6. The composition according to claim 1 , wherein the trehalose is present in the range of about 1 mg/mL to about 50 mg/mL.
7. A photopolymerized and freeze-dried composition in contact with a solution, comprising:
a hydrogel formed from a polymer building block selected from the group consisting of: polyethylene glycol; (polyethylene-glycol)-diacrylate; polyvinyl alcohol; polyglycerol; collagen; gelatin; chitosan; heparin; fibrinogen; hyaluronic acid; chondroitin sulfate; pullulan; xylan; dextran; alginate; silk fibroin; or derivatives of these polymers;
an acrylated oxygen consuming enzyme selected from the group consisting of: glucose oxidase; bilirubin oxidase tyrosinase; laccase; lysyl oxidase; monoamine oxidase; xanthine oxidase; NADPH; or cytochrome P450 oxidase, wherein the acrylated oxygen consuming enzyme is crosslinked to the hydrogel through covalent bonds and retains at least some of its catalytic activity, wherein the acrylated oxygen consuming enzyme is immobilized in the hydrogel; and
D-trehalose;
wherein the solution in contact with the composition comprises glutathione ranging from about 2 mM to about 10 mM.
8. The composition according to claim 1 , further including glucose or other enzyme substrate is present in the range of 1 about mM to about 25 mM.
9. The composition according to claim 1 , wherein the concentration of crosslinked polymer falls in the range of about 5% to about 30%.
10. The composition of claim 1 , wherein the composition produces an oxygen concentration gradient from solution in contact with the composition outward to surrounding solution.