IP Library › Granted Patent US 10,456,237
Granted Patent B2
US 10,456,237 · App. 15/450,636 · Granted Oct 29, 2019

Esophageal stent including a valve member

Inventors: Michelle Hannon (Galway, IE); Nigel McMenamin (Galway, IE); Matthew Montague (Galway, IE); Michael G. Folan (Galway, IE); Alexandre Lambert (Bruyeres le Chatel, FR); Brian Joyce (Mayo, IE); Megan Niven (Minneapolis, MN); Allison M. Pearlman (Holden, MA)
Assignee: BOSTON SCIENTIFIC SCIMED, INC.
A61F2/04A61F2/2412A61F2/2418A61F2/958A61F2002/044A61F2210/0014A61F2210/0076A61F2230/0021A61F2230/0067
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Quick Facts
Patent No.
US 10,456,237
App. No.
15/450,636
Granted
Oct 29, 2019
Kind
B2
Abstract

An example medical device is disclosed. The example medical device includes a tubular scaffold. The scaffold includes a longitudinal axis, an inner surface and an outer surface. The medical device also includes a flexible valve extending radially inward from the inner surface of the scaffold. The valve includes an annular chamber extending circumferentially around the inner surface of the scaffold and is configured to shift from a closed configuration to an open configuration.

Claims (42)

1. An expandable medical device, comprising:

a tubular scaffold, the scaffold including a first end, a second end opposite the first end, an inner surface defining a lumen extending from the first end to the second end, an outer surface opposite the inner surface, and a central longitudinal axis extending from the first end to the second end, the scaffold formed of a plurality of struts defining openings therebetween, the openings extending from the inner surface to the outer surface through a wall of the scaffold;

a flexible valve extending radially inward from the inner surface of the scaffold into the lumen of the scaffold between a first circumferential location and a second circumferential location;

an inner layer of polymer material disposed on the scaffold and extending across the openings from the first circumferential location to the first end of the scaffold and from the second circumferential location to the second end of the scaffold, the flexible valve being formed from a portion of the inner layer extending between the first circumferential location and the second circumferential location which is spaced away from the scaffold between the first circumferential location and the second circumferential location; and

an outer layer of polymer material disposed on the scaffold and extending across the openings between the first circumferential location and the second circumferential location;

wherein the inner layer is circumferentially attached to the outer layer at the first circumferential location and the inner layer is circumferentially attached to the outer layer at the second circumferential location to form an annular chamber extending circumferentially around the central longitudinal axis of the scaffold between the first circumferential location and the second circumferential location, the annular chamber bounded by an inner surface of the inner layer extending from the first circumferential location to the second circumferential location and a surface of the outer layer extending from the first circumferential location to the second circumferential location;

wherein the valve narrows from the first circumferential location to a closure point of the valve, the valve being configured to shift from a closed configuration to an open configuration;

wherein the valve is configured to permit material to pass through the closure point of the valve from the first end to the second end, wherein the valve includes a surface texture configured to prohibit material from moving through the closure point of the valve from the second end to the first end, wherein the surface texture is only on a downward facing surface of the valve located between the closure point and the second circumferential location, wherein the surface texture is on an outer surface of the inner layer opposite the inner surface of the inner layer, the inner surface of the inner layer being devoid of the surface texture.

2. The medical device of claim 1 , wherein the valve further includes a first wall thickness adjacent the first location and a second wall thickness adjacent the second location, and wherein second wall thickness is thicker than the first wall thickness.

3. The medical device of claim 1 , wherein the inner layer is disposed along and in contact with the inner surface of the scaffold from the first circumferential location to the first end of the scaffold and the inner layer is disposed along and in contact with the inner surface of the scaffold from the second circumferential location to the second end of the scaffold.

4. The medical device of claim 3 , wherein the outer layer is disposed along and in contact with the outer surface of the scaffold from the first circumferential location to the first end of the scaffold and the outer layer is disposed along and in contact with the outer surface of the scaffold from the second circumferential location to the second end of the scaffold.

5. The medical device of claim 1 , wherein the inner layer directly contacts the outer layer in openings between the first circumferential location and the first end of the scaffold, and the inner layer directly contacts the outer layer in openings between the second circumferential location and the second end of the scaffold.

6. The medical device of claim 5 , wherein the outer layer extends along an entire length of the scaffold from the first end to the second end.

7. The medical device of claim 1 , wherein the chamber is air-filled.

8. The medical device of claim 1 , wherein the chamber is filled with a material selected from the group comprising liquids, gels and polymers.

9. The medical device of claim 1 , wherein the surface texture includes at least two projections extending toward the second end.

10. The medical device of claim 9 , wherein each of the projections includes a first lateral surface, a second lateral surface and a tip region disposed between the first lateral surface and the second lateral surface, and wherein the first lateral surface is designed to direct a flow of the material away from a closure point of the valve.

11. The medical device of claim 1 , wherein at least a portion of the valve includes a coating comprising one or more acid neutralizers.

12. The medical device of claim 1 , wherein the medical device includes a second valve.

13. An esophageal stent, comprising:

an expandable tubular scaffold, the scaffold including a first end, a second end opposite the first end, a central longitudinal axis extending from the first end to the second end, an inner surface defining a lumen extending from the first end to the second end, and an outer surface opposite the inner surface, the scaffold formed of a plurality of struts defining openings therebetween, the openings extending from the inner surface to the outer surface through a wall of the scaffold; and

an inner layer of polymer material extending continuously from the first end to the second end of the tubular scaffold, the inner layer of polymer material extending radially inward of and spaced away from the inner surface of the scaffold between a first circumferential detachment location and a second circumferential detachment location to define a valve within the lumen, the valve formed as a unitary portion of the inner layer;

wherein an inner surface of the inner layer is in contact with the inner surface of the scaffold and extends across openings of the scaffold from the first circumferential detachment location to the first end of the scaffold;

wherein the inner surface of the inner layer is in contact with the inner surface of the scaffold and extends across openings of the scaffold from the second circumferential detachment location to the second end of the scaffold;

wherein the valve is configured to funnel material along the central longitudinal axis from the first end to the second end;

wherein the valve is configured to radially expand from a closed configuration to an open configuration;

wherein the valve is configured to permit material to pass through the valve from the first end to the second end, wherein the valve includes a surface texture configured to prohibit material from moving through the valve from the second end to the first end, wherein the surface texture is only on a downward facing surface of the valve located between the closure point and the second circumferential location, wherein the surface texture is on an outer surface of the inner layer opposite the inner surface of the inner layer, the inner surface of the inner layer being devoid of the surface texture.

14. The stent of claim 13 , wherein the surface texture includes at least two projections extending toward the second end.

15. The stent of claim 13 , wherein the valve further defines an annular chamber extending continuously circumferentially around the central longitudinal axis.

16. The stent of claim 15 , wherein the chamber is filled with air.

17. The stent of claim 13 , further comprising an outer layer of polymer material extending continuously from the first end to the second end of the scaffold along the outer surface.

18. The stent of claim 17 , wherein the inner layer directly contacts the outer layer in openings between the first circumferential detachment location and the first end of the scaffold, and the inner layer directly contacts the outer layer in openings between the second circumferential detachment location and the second end of the scaffold.

19. An esophageal stent for treating acid reflux, comprising:

an expandable tubular member having a wall formed of a plurality of braided filaments defining openings therebetween, the tubular member including a first end, a second end opposite the first end, and a central longitudinal axis extending from the first end to the second end, the wall having an inner surface defining a lumen extending from the first end to the second end, and an outer surface opposite the inner surface; and

an inner layer of polymer material extending continuously from the first end to the second end of the tubular member, the inner layer of polymer material extending radially inward of and spaced away from the inner surface of the wall between a first circumferential detachment location and a second circumferential detachment location to define a valve within the lumen, the valve formed as a unitary portion of the inner layer;

wherein the inner layer is in contact with the inner surface of the wall and extends across openings of the tubular member from the first circumferential detachment location to the first end of the tubular member;

wherein the inner layer is in contact with the inner surface of the wall and extends across openings of the tubular member from the second circumferential detachment location to the second end of the tubular member; and

an outer layer of polymer material extending continuously from the first end to the second end of the tubular member along and in contact with the outer surface of the wall;

wherein the inner layer is circumferentially attached to the outer layer at the first circumferential detachment location and the inner layer is circumferentially attached to the outer layer at the second circumferential detachment location to form an annular chamber extending circumferentially around the central longitudinal axis of the tubular member between the first circumferential detachment location and the second circumferential detachment location, the annular chamber bounded by an inner surface of the inner layer extending from the first circumferential detachment location to the second circumferential detachment location and a surface of the outer layer extending from the first circumferential detachment location to the second circumferential detachment location;

wherein the valve is configured to funnel material along the central longitudinal axis;

wherein the valve is configured to permit material to pass through the valve in a first direction and to prevent material from passing through the valve in a second direction, wherein the first direction is opposite the second direction;

wherein the valve includes a surface texture configured to prohibit material from moving through the valve in the second direction, wherein the surface texture is only on a downward facing surface of the valve located between the closure point and the second circumferential location, wherein the surface texture is on an outer surface of the inner layer opposite the inner surface of the inner layer, the inner surface of the inner layer being devoid of the surface texture.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2017
From: HANNON, MICHELLE; MCMENAMIN, NIGEL; MONTAGUE, MATTHEW; FOLAN, MICHAEL G.; LAMBERT, ALEXANDRE; JOYCE, BRIAN; NIVEN, MEGAN; PEARLMAN, ALLISON M.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 043017/0594 →
Continuity (2)
Provisional Application 62304739 · Mar 7, 2016
Related Publication 20170252144A1 · Sep 7, 2017