IP Library Granted Patent US 10,568,737
Granted Patent B2
US 10,568,737 · App. 15/909,610 · Granted Feb 25, 2020

Replacement mitral valves

Inventors: Spencer Noe (Santa Cruz, CA); Dan Wallace (Santa Cruz, CA); Jonathan Oakden (Santa Cruz, CA)
Assignee: Cephea Valve Technologies, Inc.
A61F2/2418A61F2/2409A61F2/2445A61F2002/825A61F2220/0008A61F2220/0016A61F2220/0041A61F2230/001A61F2230/0006A61F2230/0054A61F2250/006A61F2250/0018A61F2250/0069
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Quick Facts
Patent No.
US 10,568,737
App. No.
15/909,610
Granted
Feb 25, 2020
Kind
B2
Abstract

A prosthetic mitral valve includes an anchor assembly, a strut frame, and a plurality of replacement leaflets secured to the annular strut frame. The anchor assembly includes a ventricular anchor, an atrial anchor, and a central portion there between. The ventricular anchor and the atrial anchor are configured to flare radially outwards relative to the central portion. The annular strut frame is disposed radially within the anchor assembly and is attached to the anchor assembly. The central portion is configured to align with a native valve orifice and the ventricular anchor and the atrial anchor are configured to compress native cardiac tissue therebetween.

Claims (36)

1. A prosthetic mitral valve comprising:

an anchor assembly comprising a ventricular anchor, an atrial anchor, and a central portion there between, the anchor assembly having an expanded configuration in which the ventricular anchor and the atrial anchor flare radially outwards relative to the central portion, further wherein the atrial anchor includes a plurality of atrial cells and the ventricular anchor includes a plurality of ventricular cells;

an annular strut frame disposed radially within the anchor assembly, wherein a first plurality of the atrial cells are positioned radially inwards relative to a second plurality of the atrial cells such that the first plurality of the atrial cells and the second plurality of the atrial cells radially overlap, and wherein the first plurality of atrial cells attach the strut frame to the anchor assembly; and

a plurality of replacement leaflets secured to the annular strut frame.

2. The prosthetic mitral valve of claim 1 , wherein the central portion is configured to align with a native valve orifice, and wherein the ventricular anchor and the atrial anchor are configured to compress native cardiac tissue there between.

3. The prosthetic mitral valve of claim 1 , wherein an atrial end of the strut frame is attached to the anchor assembly.

4. The prosthetic mitral valve of claim 1 , wherein atrial tips of the strut frame are attached to the anchor assembly.

5. The prosthetic mitral valve of claim 1 , wherein an atrial end of the strut frame is flared radially outwards.

6. The prosthetic mitral valve of claim 5 , wherein a flare of the strut frame is configured to substantially conform to the flare of the atrial anchor.

7. The prosthetic mitral valve of claim 1 , wherein a ventricular end of the strut frame is spaced away from the anchor assembly.

8. The prosthetic mitral valve of claim 7 , wherein the ventricular end of the strut frame is spaced away from the anchor assembly by a radial distance of 1-15mm.

9. The prosthetic mitral valve of claim 1 , wherein the anchor assembly and the strut frame are configured to self-expand from a constrained configuration to an expanded configuration.

10. The prosthetic mitral valve of claim 1 , wherein the strut frame is attached to the anchor assembly with a plurality of rivets.

11. The prosthetic mitral valve of claim 1 , wherein the first plurality of atrial cells end in apexes that are attached to the strut frame.

12. The prosthetic mitral valve of claim 11 , wherein the apexes are radially aligned with outer-most tips of the second plurality of atrial cells.

13. The prosthetic mitral valve of claim 1 , wherein the first plurality of atrial cells is angled at approximately 70-80 degrees relative to an axis that extends through the central portion.

14. The prosthetic mitral valve of claim 13 , wherein the second plurality of atrial cells is angled at approximately 20-30 degrees relative to the axis that extends through the central portion.

15. The prosthetic mitral valve of claim 1 , wherein the annular strut frame flares radially outwards at 70-80 degrees relative to the axis that extends through the central portion.

16. A prosthetic mitral valve comprising:

an anchor assembly comprising a ventricular anchor, an atrial anchor, and a central portion therebetween, the anchor assembly having an expanded configuration in which the ventricular anchor and the atrial anchor flare radially outwards relative to the central portion, further wherein the atrial anchor includes a plurality of atrial cells;

an annular strut frame disposed radially within the anchor assembly, wherein a first plurality of the atrial cells are interior apexes and a second plurality of atrial cells are outermost atrial cells, the first plurality of the atrial cells positioned radially inwards relative to the second plurality of the atrial cells such that the first plurality of the atrial cells and the second plurality of the atrial cells radially overlap, and wherein the interior apexes of the first plurality of atrial cells attach the strut frame to the anchor assembly; and

a plurality of replacement leaflets secured to the annular strut frame.

17. The prosthetic mitral valve of claim 16 , wherein the central portion is configured to align with a native valve orifice.

18. The prosthetic mitral valve of claim 16 , wherein the ventricular anchor and the atrial anchor are configured to compress native cardiac tissue there between.

19. The prosthetic mitral valve of claim 16 , wherein an atrial end of the strut frame is attached to the anchor assembly.

20. The prosthetic mitral valve of claim 16 wherein atrial tips of the strut frame are attached to the anchor assembly.

21. The prosthetic mitral valve of claim 16 , wherein an atrial end of the strut frame is flared radially outwards.

22. The prosthetic mitral valve of claim 21 , wherein a flare of the strut frame is configured to substantially conform to the flare of the atrial anchor.

23. The prosthetic mitral valve of claim 16 , wherein a ventricular end of the strut frame is spaced away from the anchor assembly.

24. The prosthetic mitral valve of claim 23 , wherein the ventricular end of the strut frame is spaced away from the anchor assembly by a radial distance of 1-15mm.

25. The prosthetic mitral valve of claim 16 , wherein the anchor assembly and the strut frame are configured to self-expand from a constrained configuration to an expanded configuration.

26. The prosthetic mitral valve of claim 16 , wherein the strut frame is attached to the anchor assembly with a plurality of rivets.

27. The prosthetic mitral valve of claim 16 , wherein the apexes are radially aligned with outer-most tips of the second plurality of atrial cells.

28. The prosthetic mitral valve of claim 16 , wherein the first plurality of atrial cells is angled at approximately 70-80 degrees relative to an axis that extends through the central portion.

29. The prosthetic mitral valve of claim 28 , wherein the second plurality of atrial cells is angled at approximately 20-30 degrees relative to the axis that extends through the central portion.

30. The prosthetic mitral valve of claim 28 , wherein the annular strut frame flares radially outwards at 70-80 degrees relative to the axis that extends through the central portion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: NOE, SPENCER; WALLACE, DAN; OAKDEN, JONATHAN
To: CEPHEA VALVE TECHNOLOGIES, INC.
Reel/Frame 047767/0223 →
SECURITY INTEREST Recorded Oct 12, 2018
From: CEPHEA VALVE TECHNOLOGIES, INC.
To: ABBOTT VASCULAR INC.
Reel/Frame 047151/0729 →
Continuity (4)
Continuation PCTUS2018014902 · Jan 23, 2018
Provisional Application 62513877 · Jun 1, 2017
Provisional Application 62449498 · Jan 23, 2017
Related Publication 20180206984A1 · Jul 26, 2018
Cited By (9)
US 12,201,521 US 12,290,456 US 12,295,838 US 12,329,635 US 12,403,008 US 12,419,743 US 12,539,209 US 12,558,243 US 12,708,513