IP Library › Granted Patent US 12,151,047
Granted Patent B2
US 12,151,047 · App. 16/641,056 · Granted Nov 26, 2024

Hydrogel for tissue engineering and bioprinting

Inventors: Eben Alsberg (Cleveland, OH); Oju Jeon (Cleveland, OH); Jung-Youn Shin (Cleveland, OH); Robyn Marks (Cleveland, OH); Mitchell Hopkins (Cleveland, OH); Hongyun Park (Cleveland, OH)
Assignee: CASE WESTERN RESERVE UNIVERSITY
A61L27/44A61L27/20A61L27/26A61L27/3608A61L27/3834A61L27/52A61L27/54A61L27/58C08B37/0084C08G65/002C08H1/06C08L5/04C08L89/06A61L2300/236A61L2300/252A61L2300/412A61L2300/414A61L2400/16A61L2430/40C08L2205/04C08L2312/00
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Quick Facts
Patent No.
US 12,151,047
App. No.
16/641,056
Granted
Nov 26, 2024
Kind
B2
Abstract

A composition includes a hydrogel that includes a plurality biodegradable natural polymer macromers crosslinked with a first agent and optionally a plurality of cells dispersed in the crosslinked macromers, the microgels are capable of being crosslinked with a second agent that is different than the first crosslinking agent.

Claims (22)

1. A method of forming a construct, the method comprising

providing a composition that includes a plurality of biodegradable dual crosslinkable natural polymer macromers comprising oxidized, acrylated and/or methacrylated alginates and, optionally, a plurality of cells dispersed in the macromers,

crosslinking the natural polymer macromers with a first crosslinking agent that crosslinks the oxidized, acrylated and/or methacrylated alginates to form a crosslinked hydrogel comprising a plurality of microgels, wherein the first crosslinking agent is selected from the group consisting of divalent cations,

printing the crosslinked hydrogel comprising a plurality of microgels into a defined shape, and

optionally crosslinking the singly crosslinked hydrogel with a second crosslinking agent after printing to further stabilize the hydrogel and form the construct.

2. The method of claim 1 , the composition further comprising a cryopreservation agent, the composition being cryopreserved and the cells having a substantially equivalent viability and functionality upon thawing compared to similar cells not cryopreserved.

3. The method of clam 1 , the hydrogel crosslinked with the second crosslinking agent forming a solid or non-flowing structure with a defined shape.

4. The method of claim 1 , wherein the crosslinked hydrogel is printed into a stabilizing bath/gel that is effective to maintain the shape of the printed natural polymer macromers or hydrogel.

5. The method claim 4 , wherein the stabilizing bath/gel is removed after crosslinking the hydrogel with the second crosslinking agent.

6. The method of claim 1 , wherein the natural polymer macromers are photocrosslinkable with the second crosslinking agent.

7. The method of claim 1 , wherein the natural polymer macromers are chemically crosslinked with the second crosslinking agent.

8. The method of claim 1 , wherein the hydrogel is cytocompatible and, upon degradation, produces substantially non-toxic products.

9. The method of claim 1 , wherein the cells comprise progenitor cells, undifferentiated cells and/or differentiated cells.

10. The method of claim 1 , wherein the cells include mesenchymal stem cells.

11. The method of claim 1 , further comprising at least one bioactive agent.

12. The method of claim 11 , wherein the bioactive agent comprises at least one of BMP-2 or TGF-β.

13. A method of forming a construct, the method comprising;

providing a composition that includes a plurality of biodegradable dual crosslinkable natural polymer macromers comprising oxidized, acrylated and/or methacrylated alginates and, optionally, a plurality of cells dispersed in the macromers,

crosslinking the natural polymer macromers with a first crosslinking agent that crosslinks the oxidized, acrylated and/or methacrylated alginates to form a crosslinked hydrogel comprising a plurality of microgels, wherein the first crosslinking agent is selected from the group consisting of divalent cations,

printing the crosslinked hydrogel comprising a plurality of microgels into a defined shape, wherein the crosslinked hydrogel is printed into a stabilizing bath/gel that is effective to maintain the shape of the printed crosslinked hydrogel, and

optionally crosslinking the singly crosslinked hydrogel with a second crosslinking agent after printing to further stabilize the hydrogel and form the construct.

14. The method of claim 13 , wherein the crosslinked hydrogel is printed into a stabilizing bath/gel comprising gelatin.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2024
From: ALSBERG, EBEN; JEON, OJU; HOPKINS, MITCHELL; MARKS, ROBYN; PARKS, HONGHYUN
To: CASE WESTERN RESERVE UNIVERSITY
Reel/Frame 067933/0908 →
Continuity (2)
Provisional Application 62548243 · Aug 21, 2017
Related Publication 20210046220A1 · Feb 18, 2021