IP Library Granted Patent US 10,765,414
Granted Patent B2
US 10,765,414 · App. 15/269,814 · Granted Sep 8, 2020

Sealing mechanism for closure devices

Inventor: Troy T. White (Maple Grove, MN)
Assignee: TERUMO PUERTO RICO, L.L.C.
A61B17/0057A61B2017/00004A61B2017/00619A61B2017/00623A61B2017/00628A61B2017/00654A61B2017/00659
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Quick Facts
Patent No.
US 10,765,414
App. No.
15/269,814
Granted
Sep 8, 2020
Kind
B2
Abstract

A deployment device for bringing a sealing plug into position within a puncture tract or incision, and bringing an anchor into position adjacent a tissue puncture, is provided. The deployment device is designed to facilitate easier positioning of the sealing plug, wherein a separate tamping tool is not required. The sealing plug is held in place on the shaft of the anchor by a structure, for example, a knob or boss. The anchor, anchor shaft, and sealing plug may be made of various biocompatible resorbable materials such that the anchor may resorb very quickly, leaving the tissue or artery lumen clear, and the sealing plug may resorb more slowly, to assist in maintaining hemostasis. The deployment device may include a bypass device which maintains the anchor in either an extended or bent configuration. Further, the anchor may include at least one rib, to provide support to the anchor.

Claims (19)

1. An anchor assembly for sealing a tissue puncture, the anchor assembly comprising a flexible anchor, an anchor shaft configured to receive a sealing plug made of a bioresorbable material so that the anchor shaft passes through the sealing plug, and a boss, the anchor shaft possessing a distal-most end and a proximal-most end, the flexible anchor being fixedly disposed at the distal-most end of the anchor shaft so that the flexible anchor is positionally fixed with respect to the distal-most end of the anchor shaft, the boss being fixedly disposed at the proximal-most end of the anchor shaft so that the boss is positionally fixed with respect to the proximal-most end of the anchor shaft, the anchor comprising a bioresorbable material that resorbs more rapidly than a bioresorbable material composing the anchor shaft and a bioresorbable material composing the boss, the flexible anchor being a flexible low profile body that is bendable or foldable to be positioned inside a deployment device for delivery to a location of the tissue puncture.

2. The anchor assembly of claim 1 , wherein the anchor assembly is connectable to the sealing plug by a filament, the sealing plug and the filament being made of at least one bioresorbable material.

3. The anchor assembly of claim 2 , wherein the anchor bioresorbable material resorbs more rapidly than the sealing plug and filament bioresorbable material.

4. The anchor assembly of claim 1 , wherein the flexible anchor that is bendable or foldable to be positioned inside the deployment device for delivery to the location of the tissue puncture comprises at least one flexible rib.

5. An anchor assembly for sealing a tissue puncture, the anchor assembly comprising:

an anchor,

an anchor shaft configured to receive a sealing plug made of a bioresorbable material so that the anchor shaft passes through the sealing plug, the anchor shaft possessing a distal-most end and a proximal-most end, and

a boss,

the anchor being fixed to the distal-most end of the anchor shaft so that the anchor is positionally fixed with respect to the distal-most end of the anchor shaft and the boss being fixed to the proximal-most end of the anchor shaft so that the boss is positionally fixed with respect to the proximal-most end of the anchor shaft,

wherein the anchor comprises a bioresorbable material that resorbs more rapidly than a bioresorbable material composing the anchor shaft and a bioresorbable material composing the boss,

the anchor including a surface distal to the distal-most end of the anchor shaft and at least one rib on the surface, and

the anchor together with the at least one rib being a flexible low profile body that is bendable or foldable to be positioned inside a deployment device for delivery to a location of the tissue puncture.

6. The anchor assembly of claim 5 , wherein the at least one rib comprises a plurality of ribs equidistantly spaced about the anchor.

7. The anchor assembly of claim 5 , wherein the anchor shaft is integrally formed with the anchor.

8. The anchor assembly of claim 5 , wherein the anchor shaft is semi-flexible.

9. The anchor assembly of claim 5 , wherein the boss is semi-flexible.

10. The anchor assembly of claim 5 , wherein the anchor shaft is fixedly coupled with the anchor.

11. The anchor assembly of claim 5 , wherein the anchor defines a first cross-sectional area, the anchor shaft defines a second cross-sectional area, and the boss defines a third cross-sectional area, the first cross-sectional area being greater than the second cross-sectional area and the third cross-sectional area being greater than the second cross-sectional area.

12. The anchor assembly of claim 1 , wherein the anchor defines a first cross-sectional area, the anchor shaft defines a second cross-sectional area, and the boss defines a third cross-sectional area, the first cross-sectional area being greater than the second cross-sectional area and the third cross-sectional area being greater than the second cross-sectional area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2017
From: ST. JUDE MEDICAL PUERTO RICO LLC
To: TERUMO PUERTO RICO, L.L.C.
Reel/Frame 041520/0883 →
Continuity (2)
Division 13590722 · Aug 21, 2012
Related Publication 20170007220A1 · Jan 12, 2017
Cited By (1)
US 12,383,246