IP Library Granted Patent US 11,712,332
Granted Patent B2
US 11,712,332 · App. 16/785,490 · Granted Aug 1, 2023

Composite scaffold for the repair, reconstruction, and regeneration of soft tissues

Inventors: Kevin A. Rocco (New Haven, CT); Bhavana Mohanraj (Philadelphia, PA); Jeffrey Ott (New Haven, CT); Justin Bendigo (Reading, PA); Jacob Edward Komenda (New Haven, CT); Mark Theodore Aronson (Midlothian, VA); Andrew James Carter (Stow, MA)
Assignee: Biorez, Inc.
A61F2/08A61F2/0063A61L27/14A61L27/18A61L27/24A61L27/26A61L27/48A61L27/52A61L27/56A61L27/58D06N3/0043A61F2002/0068A61F2002/0081A61F2210/0004A61F2210/0057A61F2210/0061A61F2210/0076A61F2240/001A61L27/34A61L27/50A61L2430/10D04B21/12D10B2509/08Y10T428/249921Y10T428/249978Y10T442/2484Y10T442/419
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Quick Facts
Patent No.
US 11,712,332
App. No.
16/785,490
Granted
Aug 1, 2023
Kind
B2
Abstract

A composite scaffold having a highly porous interior with increased surface area and void volume is surrounded by a flexible support structure that substantially maintains its three-dimensional shape under tension and provides mechanical reinforcement during repair or reconstruction of soft tissue while simultaneously facilitating regeneration of functional tissue.

Claims (26)

1. A composite scaffold comprising:

a microporous matrix comprising a first material and defining a multitude of interconnected pores opening to an exterior surface of the microporous matrix and collectively defining void space having a measurable volume; and

a structure supporting the microporous matrix comprising first and second outer layers separated by an interior space, and a plurality of spacer yarns extending through the interior space and connecting the first and second outer layers, the plurality of spacer yarns comprising a second material different from the first material;

wherein the microporous matrix is disposed within the interior space, and

wherein the volume of the microporous matrix void space per gram of the composite scaffold is between approximately 3.0 cm 3 /gram and 9.0 cm 3 /gram.

2. The composite scaffold of claim 1 wherein the volume of the microporous matrix void space per gram of the composite scaffold is between approximately 3.5 cm 3 /gram and 7.0 cm 3 /gram.

3. The composite scaffold of claim 1 wherein the volume of the microporous matrix void space per gram of the composite scaffold is between approximately 4.0 cm 3 /gram and 5.0 cm 3 /gram.

4. The composite scaffold of claim 1 wherein a surface area of the composite scaffold is between approximately 0.3 m 2 /gram and 1.5 m 2 /gram.

5. A composite scaffold comprising:

a microporous matrix comprising a first material and defining a multitude of interconnected pores opening to an exterior surface of the microporous matrix and collectively defining void space having a measurable void space volume; and

a structure supporting the microporous matrix comprising first and second outer layers separated by an interior space, and a plurality of spacer yarns extending through the interior space and connecting the first and second outer layers, the plurality of spacer yarns comprising a second material different from the first material;

wherein the microporous matrix is disposed within the interior space, and

wherein the measurable void space volume of the microporous matrix is between approximately 75% and 98% of a measurable volume of the composite scaffold.

6. The composite scaffold of claim 5 wherein the measurable void space volume of the microporous matrix is between approximately 80% and 90% of a measurable volume of the composite scaffold.

7. The composite scaffold of claim 5 wherein the measurable void space volume within the microporous matrix is between approximately 80% and 85% of a measurable volume of the composite scaffold.

8. The composite scaffold of claim 5 wherein the composite scaffold has a surface area of between approximately 0.3 m 2 /gram and 1.5 m 2 /gram.

9. A composite scaffold occupying a measurable volume and comprising:

a microporous matrix comprising a first material and defining a multitude of interconnected pores collectively defining void space having a void space surface area; and

a structure supporting the microporous matrix comprising first and second outer layers separated by an interior space, and a plurality of spacer yarns extending through the interior space and connecting the first and second outer layers, the plurality of spacer yarns comprising a second material different from the first material;

wherein the microporous matrix is disposed within the interior space, and

wherein the void space surface area to measurable volume of the composite scaffold is between approximately 5,000 cm 2 /cm 3 and 16,000 cm 2 /cm 3 .

10. The composite scaffold of claim 9 wherein the void space surface area to measurable volume of the composite scaffold is between approximately 7,000 cm 2 /cm 3 and 14,000 cm 2 /cm 3 .

11. The composite scaffold of claim 9 wherein the void space surface area to measurable volume of the composite scaffold is between approximately 9,000 cm 2 /cm 3 and 12,000 cm 2 /cm 3 .

12. The composite scaffold of claim 1 wherein the composite scaffold may have a stiffness of approximately between 2.5 N/mm and 25 N/mm.

13. The composite scaffold of claim 1 wherein the composite scaffold has an ultimate strain of approximately between 20% and 70%.

14. The composite scaffold of claim 1 wherein the composite scaffold has an ultimate load approximately between 100 N and 200 N.

Assignments (2)
SECURITY INTEREST Recorded Jul 21, 2025
From: CONMED CORPORATION; BIOREZ, INC.; BUFFALO FILTER LLC; IN2BONES USA, LLC; LINVATEC CORPORATION; SURGIQUEST, INC.; VIKING SYSTEMS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 072097/0762 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2021
From: ROCCO, KEVIN A.; MOHANRAJ, BHAVANA; OTT, JEFFREY; BENDIGO, JUSTIN; ARONSON, MARK THEODORE; KOMENDA, JACOB EDWARD; CARTER, ANDREW JAMES
To: BIOREZ, INC.
Reel/Frame 055835/0823 →