US2015032221A1PendingUtilityA1
Bone repair material
Est. expiryFeb 14, 2032(~5.5 yrs left)· nominal 20-yr term from priority
C08G 2230/00A61L 27/18A61L 27/54C08G 2210/00A61L 2300/252C08G 65/3342A61L 27/10C08G 65/3322A61L 27/425A61L 2300/414A61L 27/52A61L 27/56A61L 27/58A61L 2430/02
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Claims
Abstract
Sliceable bone repair material is a porous block-shaped scaffold containing a hydrogel, wherein the hydrogel is formed by Michael type addition of at least two precursor molecules. Said scaffold is made of a synthetic ceramic material and has interconnected macropores having a diameter above 100 μm. In addition said scaffold has a total porosity of 80 to 95%. The total volume of the hydrogel is smaller than the total volume of the interconnected macropores.
Claims
exact text as granted — not AI-modified1 . A sliceable bone repair material comprising a porous block-shaped scaffold containing a hydrogel, wherein the hydrogel is formed by Michael type addition of at least two precursor molecules, and wherein said scaffold is made of a synthetic ceramic material and comprises interconnected macropores having a diameter above 100 μm, said scaffold having a total porosity of 80 to 95%, and the total volume of the hydrogel is smaller than the total volume of the interconnected macropores.
2 . Bone repair material according to claim 1 , wherein the hydrogel is a reconstituted hydrogel of a xerogel.
3 . Bone repair material according to claim 1 , wherein the hydrogel has a water content of more than 90% by weight.
4 . Bone repair material according to claim 1 , wherein 30 to 60 of the total volume of the interconnected macropores is filled with said hydrogel.
5 . Bone repair material according to claim 1 , wherein the hydrogel has a pH from 8.0 to 9.5.
6 . Bone repair material according to claim 1 , wherein the first precursor molecule has a core with 2 to 4 polyethylene glycol chains, each chain having a terminal acrylate group.
7 . Bone repair material according to claim 1 , wherein the second precursor molecule has a core with 2 to 4 polyethylene glycol chains, each chain having a thiol group which is terminal or attached to the second to last carbon atom.
8 . Bone repair material according to claim 1 further comprising a bioactive agent.
9 . Bone repair material according to claim 8 , wherein the bioactive agent is selected from the group of RGD and BMP.
10 . A sliceable bone repair material comprising a porous block-shaped scaffold containing a xerogel, wherein the xerogel is formed by Michael type addition of at least two precursor molecules, and wherein said scaffold is made of a synthetic ceramic material and comprises interconnected macropores having a diameter above 100 μm, said scaffold having a total porosity of 80 to 95%, and the total volume of the xerogel is smaller than the total volume of the interconnected macropores.
11 . Bone repair material according to claim 10 , wherein the first precursor molecule has a core with 2 to 4 polyethylene glycol chains, each chain having a terminal acrylate group.
12 . Bone repair material according to claim 10 , wherein the second precursor molecule has a core with 2 to 4 polyethylene glycol chains, each chain having a thiol group which is terminal or attached to the second to last carbon atom.
13 . Kit comprising a bone repair material according to claim 10 and a buffered solution, said buffered solution being stored in a separate container.
14 . Kit according to claim 13 , where in the buffered solution is between pH 8.0 and 9.5.
15 . Kit according to claim 14 , wherein the buffered solution is between pH 8.6 and 9.5.
16 . Bone repair material according to claim 5 , wherein the hydrogel has a pH from 8.6 to 9.5.Join the waitlist — get patent alerts
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