IP Library Granted Patent US 10,478,179
Granted Patent B2
US 10,478,179 · App. 11/161,702 · Granted Nov 19, 2019

Absorbable fastener for hernia mesh fixation

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 10,478,179
App. No.
11/161,702
Granted
Nov 19, 2019
Kind
B2
Abstract

A method of forming and deploying an improved absorbable fastener for hernia mesh fixation is disclosed. The absorbable fastener of the present invention functions to securely fasten tough, non macro-porous, and relative inelastic mesh to soft tissue. The fastener is formed from co-polymers of lactide and glycolide.

Claims (48)

1. A mesh fastener for penetrating tissue and fixating mesh, the mesh fastener having a longitudinal axis and comprising:

a head section with a distal surface and a proximal surface perpendicular to the longitudinal axis, the head section having an outer wall defining an outer diameter, the outer wall having a pair of spaced apart tool engaging flanges defining a pair of open sections and a pair of threaded sections, each open section of the pair of open sections extending from the proximal surface to the distal surface of the head section, the pair of threaded sections being located about 180° from each other, each flange of the pair of spaced apart tool engaging flanges including a single thread having a first pitch formed on an outer surface of a respective one of the pair of spaced apart tool engaging flanges, each thread extending radially to a single peak;

a threaded, truncated tissue snaring section, having a distal and a proximal end, the proximal end of which is formed on the distal surface of the head section,

the threads of the tissue snaring section, having a diameter and root diameter, and extending from the proximal end of the tissue snaring section to the distal end of the tissue snaring section, the threads of the tissue snaring section having a second pitch that is different from the first pitch; and

a sharpened tip extending distally from the tissue snaring section, a distal-most tip of the sharpened tip radially spaced from the longitudinal axis of the mesh fastener,

wherein the fastener is formed of a polymer that exhibits a young's modulus in the range of 150,000 to 2,000,000 PSI.

2. The mesh fastener according to claim 1 wherein the threads of the tissue snaring section have an auger configuration.

3. The mesh fastener according to claim 1 wherein the threads of the tissue snaring section are truncated at the distal end of the tissue snaring section.

4. The mesh fastener according to claim 1 wherein the fastener is bio-absorbable, and includes either a homo polymer of either polylactide or polyglycolide or co-polymer of polylactide and polyglycolide.

5. The mesh fastener according to claim 1 wherein the fastener is formed of a polymer that exhibits an absorption time in vivo between 1.5 and 14 months.

6. The mesh fastener according to claim 1 wherein the fastener exhibits a glass transition temperature in the range of 40 to 60 degrees centigrade.

7. The mesh-fastener according to claim 1 wherein the fastener includes a thread to root diameter ratio that is between 1.25 and 5.

8. The mesh fastener according to claim 1 wherein each tool engaging flange extends approximately 90° about the outer diameter.

9. The mesh fastener according to claim 1 wherein the head section and the tissue snaring section are non-cannulated.

10. The mesh fastener according to claim 1 wherein the sharpened tip extends distally from the tissue snaring section so as to intersect a central longitudinal axis extending between the proximal and distal ends of the tissue snaring section.

11. A mesh fastener for penetrating tissue and fixating mesh the mesh fastener having a longitudinal axis and comprising:

a head section with a distal surface and a proximal surface perpendicular to the longitudinal axis, the head section having an outer wall defining an outer diameter, the outer wall having a pair of spaced apart tool engaging flanges defining a pair of open sections and a pair of threaded sections, each open section of the pair of open sections extending from the proximal surface to the distal surface of the head section, the pair of threaded sections being located about 180° from each other, each flange of the pair of spaced apart tool engaging flanges including a single thread having a first pitch formed on an outer surface of a respective one of the pair of spaced apart tool engaging flanges, each thread extending radially to a single peak;

a threaded, truncated tissue snaring section, having a distal and a proximal end, the proximal end of which is formed on the distal surface of the head section,

the threads of the tissue snaring section, having a diameter and root diameter, and extending from the proximal end of the tissue snaring section to the distal end of the tissue snaring section, the threads of the tissue snaring section having a second pitch that is different from the first pitch; and

a sharpened tip extending distally from the tissue snaring section, a distal-most tip of the sharpened tip radially spaced from the longitudinal axis of the mesh fastener,

wherein the fastener exhibits a tensile strength in the range of 5,000 to 10,000 PSI.

12. The mesh fastener according to claim 11 wherein the threads of the tissue snaring section are truncated at the distal end of the tissue snaring section.

13. The mesh fastener according to claim 11 wherein the fastener is bio-absorbable, and includes either a homo polymer of either polylactide or polyglycolide or co-polymer of polylactide and polyglycolide.

14. The mesh fastener according to claim 11 wherein the fastener is formed of a polymer that exhibits a young's modulus in the range of 150,000 to 2,000,000 PSI.

15. The mesh fastener according to claim 11 wherein the threads of the tissue snaring section have an auger configuration.

16. The mesh fastener according to claim 11 wherein the sharpened tip intersects a central longitudinal axis extending between the proximal and distal ends of the tissue snaring section.

17. A mesh fastener for penetrating tissue and fixating mesh the mesh fastener having a longitudinal axis and comprising:

a head section with a distal surface and a proximal surface perpendicular to the longitudinal axis, the head section having an outer wall defining an outer diameter, the outer wall having a pair of spaced apart tool engaging flanges defining a pair of open sections and a pair of threaded sections, each open section of the pair of open sections extending from the proximal surface to the distal surface of the head section, the pair of threaded sections being located about 180° from each other, each flange of the pair of spaced apart tool engaging flanges including a single thread having a first pitch formed on an outer surface of a respective one of the pair of spaced apart tool engaging flanges, each thread extending radially to a single peak;

a threaded, truncated tissue snaring section, having a distal and a proximal end, the proximal end of which is formed on the distal surface of the head section, the tissue snaring section being non-cannulated,

the threads of the tissue snaring section, having a diameter and root diameter, and extending from the proximal end of the tissue snaring section to the distal end of the tissue snaring section, the threads of the tissue snaring section having a second pitch that is different from the first pitch; and

a sharpened tip extending distally from the tissue snaring section,

wherein the fastener is formed of a polymer that exhibits an absorption time in vivo between 1.5 and 14 months,

wherein the mesh fastener is configured to be selectively advanced through an outer tube of a fastener applier as tines of the fastener applier rotate the mesh fastener relative to the outer tube.

18. The mesh fastener according to claim 17 wherein the fastener exhibits a tensile strength in the range of 5,000 to 10,000 PSI.

19. A mesh fastener for penetrating tissue and fixating mesh the mesh fastener having a longitudinal axis and comprising:

a head section with a distal surface and a proximal surface perpendicular to the longitudinal axis, the head section having an outer wall defining an outer diameter, the outer wall having a pair of spaced apart tool engaging flanges defining a pair of open sections and a pair of threaded sections, each open section of the pair of open sections extending from the proximal surface to the distal surface of the head section, the pair of threaded sections being located about 180° from each other, each flange of the pair of spaced apart tool engaging flanges including a single thread having a first pitch formed on an outer surface of a respective one of the pair of spaced apart tool engaging flanges, each thread extending radially to a single peak;

a threaded, truncated tissue snaring section, having a distal and a proximal end, the proximal end of which is formed on the distal surface of the head section,

the threads of the tissue snaring section, having a diameter and root diameter, and extending from the proximal end of the tissue snaring section to the distal end of the tissue snaring section, the threads of the tissue snaring section having a second pitch that is different from the first pitch; and

a sharpened tip extending distally from the tissue snaring section, a distal-most tip of the sharpened tip radially spaced from the longitudinal axis of the mesh fastener,

wherein the fastener exhibits a glass transition temperature in the range of 40 to 60 degrees centigrade.

20. A mesh fastener system for penetrating tissue and fixating mesh, the mesh fastener system comprising:

a fastener applier configured to advance a mesh fastener therethrough, the mesh fastener including:

a head section with a distal surface and a proximal surface perpendicular to the longitudinal axis, the head section having an outer wall defining an outer diameter, the outer wall having a pair of spaced apart tool engaging flanges defining a pair of open sections and a pair of threaded sections, each open section of the pair of open sections extending from the proximal surface to the distal surface of the head section, the pair of threaded sections being located about 180° from each other, each flange of the pair of spaced apart tool engaging flanges including a single thread having a first pitch formed on an outer surface of a respective one of the pair of spaced apart tool engaging flanges, each thread extending radially to a single peak;

a threaded, truncated tissue snaring section, having a distal and a proximal end, the proximal end of which is formed on the distal surface of the head section,

the threads of the tissue snaring section, having a diameter and root diameter, and extending from the proximal end of the tissue snaring section to the distal end of the tissue snaring section, the threads of the tissue snaring section having a second pitch that is different from the first pitch; and

a sharpened tip extending distally from the tissue snaring section,

wherein the fastener includes a thread to root diameter ratio that is between 1.25 and 5.

21. The mesh fastener according to claim 20 wherein the tissue snaring section is non-cannulated.

Assignments (4)
CHANGE OF NAME Recorded Oct 2, 2012
From: TYCO HEALTHCARE GROUP LP
To: COVIDIEN LP
Reel/Frame 029065/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2010
From: SHIPP, JOHN I
To: SORBX, LLC
Reel/Frame 025092/0825 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2008
From: COVIDIEN AG
To: TYCO HEALTHCARE GROUP LP
Reel/Frame 020989/0108 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2007
From: SORBX, LLC
To: TYCO HEALTHCARE GROUP LP; COVIDIEN AG
Reel/Frame 019895/0454 →
Cited By (1)
US 1,119,552