IP Library Granted Patent US 8,936,027
Granted Patent B2
US 8,936,027 · App. 13/116,836 · Granted Jan 20, 2015

Prevention of myocardial infraction induced ventricular expansion and remodeling

Inventors: William P. Santamore (Medford, NJ); Jeanne M. Lesniak (Natick, MA)
Assignee: Cormend Technologies, LLC
A61B17/3468A61B17/00234A61B17/064A61K9/0024A61B17/00491A61B17/0644A61B17/068A61B2017/00243A61B2017/00247A61B2017/00862A61B2017/0404A61B2017/0412A61B2017/0422A61B2017/0427A61B2017/0437A61B2017/044A61B2017/0443A61B2017/0464A61B2017/048A61B2017/0641A61B2017/0647A61B2017/0649A61B2018/00392A61F2/2451A61F2/2493A61F2002/249Y10S623/904
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Quick Facts
Patent No.
US 8,936,027
App. No.
13/116,836
Granted
Jan 20, 2015
Kind
B2
Abstract

A method for direct therapeutic treatment of myocardial tissue in a localized region of a heart having a pathological condition. The method includes identifying a target region of the myocardium and applying material directly and substantially only to at least a portion of the myocardial tissue of the target region. The material applied results in a physically modification the mechanical properties, including stiffness, of said tissue. Various devices and modes of practicing the method are disclosed for stiffening, restraining and constraining myocardial tissue for the treatment of conditions including myocardial infarction or mitral valve regurgitation.

Claims (71)

1. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the target region is an infarct region and the material bonds to dead cells.

2. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting a material comprises injecting rods.

3. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting material comprises injecting coated micro-particles coated with a material selected from Transforming Growth Factor Beta 1, Transforming Growth Factor Beta 2, Transforming Growth Factor Beta 3, collagen, and matrix metalloprotease inhibitors.

4. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting material comprises injecting micro-particles which absorb water.

5. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting material comprises injecting lyophilized microspheres.

6. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting material comprises injecting microspheres of cross-linked dextran.

7. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting material comprises injecting microspheres of cross-linked dextran suspended in a carrier gel.

8. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting purified alginate.

9. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting a liquid embolic.

10. The method of claim 9 , wherein the step of injecting the liquid embolic comprises injecting a cyanoacrylate material.

11. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting dual shelled microspheres.

12. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the material becomes encapsulated in the myocardium.

13. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting a mixture of at least two precursors, the mixture having a viscosity suitable for injection, the precursors increasing in viscosity and/or stiffness when mixed.

14. The method of claim 13 , wherein the precursors contain stiffening particulates.

15. The method of claim 13 , wherein the precursors are mixed in situ.

16. The method of claim 13 , wherein the precursors are mixed prior to injection.

17. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting polymer material.

18. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of the myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting a hydrogel.

19. The method of claim 18 , wherein the step of injecting a hydrogel comprises injecting an absorbable hydrogel.

20. The method of claim 18 , wherein the step of injecting a hydrogel comprises injecting a non-absorbable hydrogel.

21. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated; and

injecting a material into the target region to stiffen at least the target region of the myocardium, wherein the step of injecting the material comprises injecting a bioactive agent.

22. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated;

accessing the heart through an open chest approach; and

injecting a material into the target region to stiffen at least the target region of the myocardium.

23. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated;

accessing the heart through a mini-thoracotomy; and

injecting a material into the target region to stiffen at least the target region of the myocardium.

24. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated;

accessing the heart through a percutaneous approach;

injecting a material into the target region to stiffen at least the target region of the myocardium.

25. The method of claim 24 , wherein the step of accessing the heart through a percutaneous approach comprises:

introducing a catheter into a vein or artery and navigating the catheter to the target region.

26. A method for direct localized therapeutic treatment of myocardial tissue in a heart, the method comprising the steps of:

identifying a target region of myocardium of the heart to be treated;

injecting a material into the target region; and

inserting a mechanical device into the target region of the myocardium, the mechanical device and the material stiffening at least the target region.

27. A material for stiffening myocardial tissue comprising a gel matrix having a viscosity suitable for injection through a catheter or needle into myocardial tissue of a heart, the gel matrix being a carrier for particulate material such that the gel matrix and particulate combination stiffens myocardial tissue.

28. A material for stiffening myocardial tissue comprising at least two biocompatible polymer precursors having a viscosity suitable for injection through a needle or catheter into the myocardium of a heart, the biocompatible polymer precursors when mixed increasing in viscosity and/or stiffness to stiffen the myocardium.

Continuity (4)
Continuation 10958063 · Oct 4, 2004
Continuation 10131090 · Apr 25, 2002
Provisional Application 60286521 · Apr 27, 2001
Related Publication 20120109044A1 · May 3, 2012