IP Library Granted Patent US 11,458,004
Granted Patent B2
US 11,458,004 · App. 16/165,436 · Granted Oct 4, 2022

Self-gripping hernia prosthesis

Inventors: Augustus Felix (Cranston, RI); Matthew Rothberg (Providence, RI); Nathan Stewart Cauldwell (Hope, RI); Evans Kipyego (Warwick, RI); Tami L. Rathbun (Exeter, RI); Amanda Konieczny (Naugatuck, CT); Joseph Paul (Thomaston, CT); Jeffrey E. Ransden (Fairfield, CT)
Assignee: C.R. Bard, Inc.
A61F2/0063A61F2210/0004A61F2220/0016A61F2230/0023A61F2240/001
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Quick Facts
Patent No.
US 11,458,004
App. No.
16/165,436
Granted
Oct 4, 2022
Kind
B2
Abstract

A self-gripping hernia prosthesis including a layer of repair fabric and a plurality of tissue grips protruding from a surface of the repair fabric. The grip may be fabricated independent of the repair fabric and subsequently attached to the layer of fabric. A backing layer may be employed to secure each grip to the repair fabric. Each base may include a base that is located between the repair fabric and the backing layer. Alternatively, the base may be attached directly to the backing layer. The tissue grips may be configured to minimize entanglement with the repair fabric.

Claims (40)

1. An implantable prosthesis comprising:

a first layer of biologically compatible repair mesh fabric;

a second layer of biologically compatible repair mesh fabric attached to the first layer, the second layer including a plurality of individual layer segments which are separate from and independent of each other; and

a plurality of tissue grips pre-attached to the prosthesis and protruding from a first surface of the first layer, the plurality of tissue grips being separate from the first layer, the first layer being free of integrated tissue grips, the plurality of tissue grips being arranged into a plurality of separate grip regions with each grip region including multiple tissue grips,

each grip region including one of the individual layer segments securing the multiple tissue grips associated with the grip region to the first layer independent of the other grip regions, each individual layer segment being attached directly to a second surface of the first layer opposite the first surface independent of the plurality of tissue grips, the plurality of tissue grips extending through the first layer from the second surface toward and beyond the first surface.

2. The implantable prosthesis according to claim 1 , wherein the plurality of tissue grips are independent of the first and second layers.

3. The implantable prosthesis according to claim 2 , wherein each of the plurality of the tissue grips includes a base located between the first and second layers.

4. The implantable prosthesis according to claim 1 , wherein the plurality of tissue grips are integrated with the second layer.

5. The implantable prosthesis according to claim 4 , wherein the plurality of tissue grips are molded to the second layer.

6. The implantable prosthesis according to claim 1 , wherein each of the plurality of tissue grips includes a grip head protruding beyond the first surface, the grip head configured to penetrate and grip tissue.

7. The implantable prosthesis according to claim 6 , wherein the grip head has a cruciform configuration.

8. The implantable prosthesis according to claim 1 , wherein the plurality of tissue grips are resorbable.

9. The implantable prosthesis according to claim 1 , wherein the first layer is non-resorbable.

10. The implantable prosthesis according to claim 1 , wherein the plurality of tissue grips are arranged in a triangular configuration in at least one of the grip regions.

11. The implantable prosthesis according to claim 10 , wherein the plurality of tissue grips are arranged in a triangular configuration in each grip region.

12. The implantable prosthesis according to claim 1 , wherein the first layer has a preformed 3 -dimensional curvature with the first surface having a convex shape and the second surface having a concave shape.

13. The implantable prosthesis according to claim 12 , wherein the first layer is configured to fit the inguinofemoral anatomy of a person.

14. An implantable prosthesis comprising:

a first layer of biologically compatible repair mesh;

a second layer of biologically compatible repair mesh fabric attached to the first layer; and

a plurality of tissue grips pre-attached to the prosthesis and protruding from a first surface of the first layer, the plurality of tissue grips being separate from the first layer, the second layer securing the plurality of tissue grips to the first layer, wherein the plurality of tissue grips include a grip assembly having at least a pair of tissue grips connected together with a coupling, each of the tissue grips of the grip assembly including a grip body extending through the first layer at spaced apart locations and protruding from the first surface thereof and a grip head located at an end of the grip body spaced away from the first surface, the grip head configured to penetrate and grip tissue, the coupling connecting the grip body of each the tissue grips of the grip assembly, the coupling located between the first and second layers to secure the grip assembly to the first layer.

15. The implantable prosthesis according to claim 14 , wherein the grip assembly is formed as a unitary structure.

16. An implantable prosthesis comprising:

a first layer of biologically compatible repair fabric;

a second layer of biologically compatible repair fabric attached to the first layer; and

a plurality of tissue grips secured to the first layer and protruding a fixed length from a first surface of the first layer prior to implantation of the prosthesis, the plurality of tissue grips configured to penetrate and grip tissue to secure the prosthesis, each tissue grip including a grip body protruding from the first layer and a solid grip head located at an end of the grip body spaced away from the first surface of the first layer, the grip body having a constant cross-sectional size from the first surface of the first layer to the grip head, the grip head including a first pair of barbs located along a first axis oriented in a first radial direction and a second pair of barbs located along a second axis oriented in a second radial direction that is different from the first radial direction, each tissue grip includes a grip base located at an end of the grip body opposite the grip head, the grip base being located between the first and second layers to secure the tissue grip.

17. The implantable prosthesis according to claim 16 , wherein each of the first pair of barbs has a first configuration and each of the second pair of barbs has a second configuration, the first configuration being different from the second configuration.

18. The implantable prosthesis according to claim 16 , wherein each of the second pair of barbs is smaller than each of the first pair of barbs.

19. The implantable prosthesis according to claim 16 , wherein each of the first pair of barbs is configured to minimize entanglement of the grip head with the repair fabric.

20. The implantable prosthesis according to claim 19 , wherein the first pair of tissue barbs is configured to shield the second pair of barbs from entanglement with the repair fabric.

21. The implantable prosthesis according to claim 16 , wherein the first axis is perpendicular to the second axis.

22. The implantable prosthesis according to claim 16 , wherein each of the first pair of barbs includes a first grip surface located a first distance from the first surface of the first layer and each of the second pair of barbs includes a second grip surface located a second distance from the first surface of the first layer which is different than the first distance.

23. The implantable prosthesis according to claim 22 , wherein each of the first pair of barbs includes a first width and each of the second pair of barbs includes a second width which is different than the first width.

24. The implantable prosthesis according to claim 23 , wherein the first distance is greater than the second distance and the first width is less than the second width.

25. The implantable prosthesis according to claim 16 , wherein the plurality of tissue grips are arranged into a plurality of grip regions separated from each other.

26. The implantable prosthesis according to claim 25 , wherein the tissue grips are arranged in a triangular configuration or a semi-annular configuration in at least one of the grip regions.

27. The implantable prosthesis according to claim 26 , wherein the tissue grips are arranged in a triangular configuration in at least one of the grip regions and a semi-annular configuration in at least one of the grip regions.

28. The implantable prosthesis according to claim 25 , wherein the tissue grips are arranged in a triangular configuration in each grip region.

29. The implantable prosthesis according to claim 16 , wherein the first layer has a preformed 3 -dimensional curvature.

30. The implantable prosthesis according to claim 29 , wherein the first layer is configured to fit the inguinofemoral anatomy of a person.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2019
From: ROTHBERG, MATTHEW
To: C.R. BARD, INC.
Reel/Frame 051187/0158 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2019
From: DAVOL INC.
To: C.R. BARD, INC.
Reel/Frame 048956/0923 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2019
From: KONIECZNY, AMANDA; PAUL, JOSEPH; RANSDEN, JEFFREY E.
To: SYNECTIC MEDICAL PRODUCT DEVELOPMENT
Reel/Frame 048897/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2019
From: SYNECTIC MEDICAL PRODUCT DEVELOPMENT
To: DAVOL INC.
Reel/Frame 048897/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2019
From: FELIX, AUGUSTUS; CAULDWELL, NATHAN STEWART; KIPYEGO, EVANS; RATHBUN, TAMI L.
To: C.R. BARD, INC.
Reel/Frame 048846/0855 →
Continuity (2)
Provisional Application 62574525 · Oct 19, 2017
Related Publication 20190117363A1 · Apr 25, 2019