IP Library › Granted Patent US 10,631,849
Granted Patent B2
US 10,631,849 · App. 15/797,980 · Granted Apr 28, 2020

Systems and methods for repairing soft tissues using nanofiber material

Inventors: Kevin N. Baird (Scottsdale, AZ); Derek J. Harper (Scottsdale, AZ); Kevin S. Nason (Chandler, AZ)
Assignee: Cayenne Medical, Inc.
A61B17/0401A61B2017/00884A61B2017/044A61B2017/0445A61L2400/12A61L2430/34
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Quick Facts
Patent No.
US 10,631,849
App. No.
15/797,980
Granted
Apr 28, 2020
Kind
B2
Abstract

An anchoring system is a combination of a nanofiber scaffold material and an arthroscopically deployable suture anchor. The anchor is deployed into a bone tunnel using common techniques. The nanofiber material extends out of the proximal end of the implant, once deployed. The implant also includes pre-loaded sutures or has the ability to accept and lock sutures to the implant. For an implant pre-loaded with suture, the implant is placed into the bone, the material is deployed above the anchor onto the surface of the bone, suture is passed through the soft tissue, and knots are tied to secure the tissue against the bone, sandwiching the material between the bone and tissue, to provide a pathway for cells from the bone marrow to the soft tissue-bone interface, promote the healing response, provide a biomimetic structure that cells readily adhere to, and create a larger healing footprint.

Claims (19)

1. A method for securing a soft tissue to bone, comprising:

delivering an anchor arthroscopically into a tunnel formed in a bone through an opening in an outer surface of the bone, wherein a suture coupled to the anchor extends back out of the tunnel and passes through a delivery sheath positioned over the opening in the outer surface of the bone;

deploying a flexible sheet material from the delivery sheath such that the flexible sheet material resides outside the tunnel sandwiched between the soft tissue and the bone for promoting a healing response between the soft tissue and the bone, wherein the flexible sheet material is wrapped in cylindrical fashion in the delivery sheath prior to said deploying and spreads out from said cylindrical fashion during said deploying; and

tensioning the suture following said delivering with the suture extending through the soft tissue so as to approximate the soft tissue to the bone with the flexible sheet material sandwiched between the soft tissue and the bone.

2. The method of claim 1 , wherein the flexible sheet material is movable along the suture.

3. The method of claim 1 , wherein the flexible sheet material is provided by a proximal head portion of a flexible insert, the flexible insert further including a distal portion having a first width permitting the distal portion to be received in the tunnel along with the anchor, the distal portion of the flexible insert and the proximal head portion of the flexible insert formed from a single unitary piece of fiber material, the proximal head portion having a second width that is wider than said first width.

4. The method of claim 3 , wherein the fiber material provides a pathway for cell travel from bone marrow within the tunnel to an area between the soft tissue and the bone.

5. The method of claim 3 , wherein the distal portion of the flexible insert extends through the anchor.

6. The method of claim 3 , wherein the anchor has a longitudinal axis, and wherein the distal portion of the flexible insert includes fibers aligned axially with the longitudinal axis of the anchor to facilitate cell travel from bone marrow within the tunnel toward the opening in the outer surface of the bone.

7. A method for securing a soft tissue to bone, comprising:

delivering an anchor arthroscopically into a tunnel formed in a bone through an opening in an outer surface of the bone, wherein a suture coupled to the anchor extends back out of the tunnel;

delivering a distal portion of a flexible insert into the tunnel, the flexible insert movable along the suture and also including a proximal head portion in the form of a flexible sheet that resides outside the tunnel sandwiched between the soft tissue and the bone for promoting a healing response between the soft tissue and the bone, the distal portion of the flexible insert and the proximal head portion of the flexible insert formed from a single unitary piece of fiber material, the distal portion of the flexible insert having a first width permitting the distal portion to be received in the tunnel, the proximal head portion of the flexible insert having a second width that is wider than said first width; and

tensioning the suture following said delivering with the suture extending through the soft tissue so as to approximate the soft tissue to the bone with the flexible sheet sandwiched between the soft tissue and the bone.

8. The method of claim 7 , wherein the fiber material provides a pathway for cell travel from bone marrow within the tunnel to an area between the soft tissue and the bone.

9. The method of claim 7 , wherein the distal portion of the flexible insert is disposed within the anchor.

10. The method of claim 7 , wherein the distal portion of the flexible insert extends through the anchor.

11. The method of claim 7 , wherein the anchor has a longitudinal axis, and wherein the distal portion of the flexible insert includes fibers aligned axially with the longitudinal axis of the anchor to facilitate cell travel from bone marrow within the tunnel toward the opening in the outer surface of the bone.

12. The method of claim 7 further comprising deploying the proximal head portion of the flexible insert from a delivery sheath positioned over the opening in the outer surface of the bone, wherein during said deploying the proximal head portion spreads out from being wrapped in cylindrical fashion in the delivery sheath.

13. The method of claim 7 , wherein the distal portion of the flexible insert is in the form of a sheet.

Continuity (3)
Continuation 14052624 · Oct 11, 2013
Provisional Application 61713230 · Oct 12, 2012
Related Publication 20180042601A1 · Feb 15, 2018
Cited By (3)
US 12,185,933 US 12,185,937 US 12,357,296