IP Library Granted Patent US 11,224,677
Granted Patent B2
US 11,224,677 · App. 17/226,384 · Granted Jan 18, 2022

Tissue substitute materials and methods for tissue repair

Inventor: Matthew MacEwan (St. Louis, MO)
Assignee: Acera Surgical, Inc.
A61L27/18A61L27/26A61L27/58A61L2430/32
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,224,677
App. No.
17/226,384
Granted
Jan 18, 2022
Kind
B2
Abstract

Non-woven graft materials for use in specialized surgical procedures such as neurosurgical procedures, methods for making the non-woven graft materials, and methods for repairing tissue such as neurological tissue using the non-woven graft materials are disclosed. More particularly, disclosed are non-woven graft materials including at least two distinct fiber compositions composed of different polymeric materials, methods for making the non-woven graft materials and methods for repairing tissue in an individual in need thereof using the non-woven graft materials.

Claims (48)

1. A bioabsorbable non-woven graft material for facilitating regeneration of tissue, the bioabsorbable non-woven graft material consisting of:

a single non-woven electrospun polymeric scaffold, the non-woven electrospun polymeric scaffold formed by a first set of non-woven electrospun polymeric fibers and a second set of non-woven electrospun polymeric fibers, wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers are commingled in the non-woven electrospun polymeric scaffold to form an architecture resembling a native extracellular matrix,

the first set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a first polymer composition comprising poly(glycolic) acid, the second set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a second polymer composition comprising poly(lactide-co-caprolactone), the first polymer composition and the second polymer composition comprising different compositions;

the non-woven electrospun polymeric scaffold further comprising a plurality of pores formed among the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers;

the non-woven electrospun polymeric scaffold further comprising a top surface and a bottom surface, the top surface and the bottom surface comprising one or more different physical properties, wherein the one or more different physical properties comprise average fiber diameter;

the non-woven electrospun polymeric scaffold comprising sufficient flexibility for applying the bioabsorable non-woven graft material to tissue, the non-woven electrospun polymeric scaffold comprising sufficient mechanical strength for the bioabsorbable non-woven graft material to be suturable, and the non-woven electrospun polymeric scaffold comprising sufficient mechanical strength for the bioabsorble non-woven graft material to be trimmable,

wherein the bioabsorbable non-woven graft material is configured to facilitate regeneration of tissue.

2. The bioabsorbable non-woven graft material of claim 1 , wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers are substantially uniformly distributed throughout the non-woven electrospun polymeric scaffold.

3. The bioabsorbable non-woven graft material of claim 1 , wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers comprise an average diameter not greater than 2,000 nanometers.

4. The bioabsorbable non-woven graft material of claim 1 , further comprising a plurality of protrusions arising from the top or bottom surface of the non-woven electrospun polymeric scaffold and a plurality of depressions in the top or bottom surface of the non-woven electrospun polymeric scaffold.

5. The bioabsorbable non-woven graft material of claim 4 , wherein the plurality of protrusions and the plurality of depressions form a pattern on the surface of the non-woven electrospun polymeric scaffold.

6. The bioabsorbable non-woven graft material of claim 4 , wherein one or more of the plurality of protrusions or the plurality of depressions are randomly distributed.

7. The bioabsorbable non-woven graft material of claim 4 , wherein the plurality of protrusions comprise a substantially uniform height.

8. The bioabsorbable non-woven graft material of claim 4 , wherein the plurality of depressions comprise a substantially uniform depth.

9. The bioabsorbable non-woven graft material of claim 1 , wherein the tissue comprises skin or tendon, and the bioabsorbable non-woven graft material is adapted to repair or augment the skin or tendon.

10. The bioabsorbable non-woven graft material of claim 1 , wherein the bioabsorbable non-woven graft material comprises a suture pull-out strength, the suture pull-out strength ranging from 1 Newtons to about 5 Newtons of force required for one or more sutures to be torn from bioabsorbable non-woven graft material.

11. The bioabsorbable non-woven graft material of claim 1 , wherein the non-woven electrospun polymeric scaffold comprises interconnecting pores.

12. The bioabsorbable non-woven graft material of claim 1 , wherein the non-woven electrospun polymeric scaffold comprises a surface pattern.

13. The bioabsorbable non-woven graft material of claim 12 , wherein the surface pattern comprises a repeating non-random pattern.

14. The bioabsorbable non-woven graft material of claim 1 , wherein a mean size of the plurality of pores is less than 300 micrometers squared.

15. A bioabsorbable non-woven graft material for facilitating regeneration of tissue, the bioabsorbable non-woven graft material consisting of:

a single non-woven electrospun polymeric scaffold, the non-woven electrospun polymeric scaffold formed by a first set of non-woven electrospun polymeric fibers and a second set of non-woven electrospun polymeric fibers, wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers are commingled in the non-woven electrospun polymeric scaffold,

the first set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a first polymer composition comprising glycolic acid, the second set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a second polymer composition, the first polymer composition and the second polymer composition comprising different compositions;

the non-woven electrospun polymeric scaffold further comprising a plurality of pores formed by the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers;

the non-woven electrospun polymeric scaffold further comprising a top surface and a bottom surface comprising one or more different physical properties, wherein the one or more different physical properties comprise areal density;

the non-woven electrospun polymeric scaffold comprising sufficient flexibility for applying the bioabsorable non-woven graft material to tissue, and the non-woven electrospun polymeric scaffold comprising sufficient mechanical strength for the bioabsorble non-woven graft material to be trimmable,

wherein the bioabsorbable non-woven graft material is configured to facilitate regeneration of tissue.

16. The bioabsorbable non-woven graft material of claim 15 , wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers are substantially uniformly distributed throughout the bioabsorbable non-woven graft material.

17. The bioabsorbable non-woven graft material of claim 15 , wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers comprise an average diameter not greater than 2,000 nanometers.

18. The bioabsorbable non-woven graft material of claim 15 , further comprising a plurality of protrusions arising from the top or bottom surface of the non-woven electrospun polymeric scaffold and a plurality of depressions in the top or bottom surface of the non-woven electrospun polymeric scaffold.

19. The bioabsorbable non-woven graft material of claim 18 , wherein one or more of the plurality of protrusions or the plurality of depressions form a pattern.

20. The bioabsorbable non-woven graft material of claim 18 , wherein the plurality of protrusions comprise a substantially uniform height.

21. The bioabsorbable non-woven graft material of claim 18 , wherein one or more of the plurality of protrusions or the plurality of depressions are randomly distributed.

22. The bioabsorbable non-woven graft material of claim 15 , wherein the first polymer composition comprises poly(glycolic) acid, and wherein the second polymer composition comprises poly(lactide-co-caprolactone).

23. The bioabsorbable non-woven graft material of claim 15 , wherein the first polymer composition comprises poly(lactide-co-glycolide), and wherein the second polymer composition comprises polydioxanone.

24. The bioabsorbable non-woven graft material of claim 15 , wherein the bioabsorbable non-woven graft material comprises a suture pull-out strength, the suture pull-out strength ranging from 1 Newtons to about 5 Newtons of force required for one or more sutures to be torn from bioabsorbable non-woven graft material.

25. A bioabsorbable non-woven graft material for facilitating regeneration of tissue, the bioabsorbable non-woven graft material consisting of:

a single non-woven electrospun polymeric scaffold, the non-woven electrospun polymeric scaffold formed by a first set of non-woven electrospun polymeric fibers and a second set of non-woven electrospun polymeric fibers interlaid in the non-woven electrospun polymeric scaffold,

the first set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a first polymer composition comprising glycolic acid, the second set of non-woven electrospun polymeric fibers formed by depositing via electrospinning a second polymer composition, the first polymer composition and the second polymer composition comprising different compositions;

the non-woven electrospun polymeric scaffold further comprising a plurality of pores formed among the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers;

the non-woven electrospun polymeric scaffold further comprising a top surface and a bottom surface, the top surface and the bottom surface comprising one or more different physical properties, wherein the one or more different physical properties comprise average fiber density;

the non-woven electrospun polymeric scaffold comprising sufficient flexibility for applying the bioabsorable non-woven graft material to tissue, and the non-woven electrospun polymeric scaffold comprising sufficient mechanical strength for the bioabsorbable non-woven graft material to be suturable;

wherein the bioabsorbable non-woven graft material is configured to facilitate regeneration of tissue.

26. The bioabsorbable non-woven graft material of claim 25 , wherein the non-woven electrospun polymeric scaffold comprises a surface pattern.

27. The bioabsorbable non-woven graft material of claim 25 , further comprising a plurality of protrusions arising from the top or bottom surface of the non-woven electrospun polymeric scaffold and a plurality of depressions in the top or bottom surface of the non-woven electrospun polymeric scaffold.

28. The bioabsorbable non-woven graft material of claim 25 , wherein the first polymer composition comprises poly(glycolic) acid, and wherein the second polymer composition comprises poly(lactide-co-caprolactone).

29. The bioabsorbable non-woven graft material of claim 25 , wherein the first polymer composition comprises poly(lactide-co-glycolide), and wherein the second polymer composition comprises polydioxanone.

30. The bioabsorbable non-woven graft material of claim 25 , wherein the first set of non-woven electrospun polymeric fibers and the second set of non-woven electrospun polymeric fibers comprise an average diameter not greater than 2,000 nanometers.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2026
From: ACERA SURGICAL, INC.
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 074933/0515 →
RELEASE OF SECURITY INTEREST Recorded Dec 23, 2025
From: WILSON FAMILY LEGACY TRUST NO. I
To: ACERA SURGICAL, INC.
Reel/Frame 073303/0131 →
SECURITY INTEREST Recorded Mar 26, 2023
From: ACERA SURGICAL, INC.
To: WILSON FAMILY LEGACY TRUST NO. 1
Reel/Frame 063103/0303 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2021
From: MACEWAN, MATTHEW
To: ACERA SURGICAL, INC.
Reel/Frame 058340/0432 →
Continuity (3)
Continuation 16816084 · Mar 11, 2020
Continuation 15152726 · May 12, 2016
Related Publication 20210236691A1 · Aug 5, 2021
Cited By (5)
US 12,201,749 US 12,246,114 US 12,263,269 US 12,491,061 US 12,564,658