IP Library › Granted Patent US 10,888,444
Granted Patent B2
US 10,888,444 · App. 16/176,451 · Granted Jan 12, 2021

Esophageal stent including a valve member

Inventors: Martin Coyne (Galway, IE); Niall Feeney (Galway, IE); James Byrne (Galway, IE); Harshad Holehonnur (Galway, IE); Jonathan Dolan (Galway, IE)
Assignee: BOSTON SCIENTIFIC SCIMED, INC.
A61F2/90A61F2/04A61F2/2412A61F2/2418B29D23/00A61F2002/044A61F2210/0076A61F2230/0008A61F2240/001A61F2250/0039A61F2250/0069A61L27/3679
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Quick Facts
Patent No.
US 10,888,444
App. No.
16/176,451
Granted
Jan 12, 2021
Kind
B2
Abstract

An example medical device is disclosed. An example medical device includes an expandable stent. The stent includes a tubular scaffold formed of one or more interwoven filament. The tubular scaffold includes an inner surface and a flexible valve extending radially inward from the inner surface of the scaffold. Further, the valve is configured to shift between a closed configuration and an open configuration and the one or more filaments of the scaffold bias the valve to the closed configuration while in a nominally deployed state.

Claims (38)

1. An expandable stent, comprising:

a tubular scaffold formed of one or more interwoven filaments, the tubular scaffold including an inner surface; and

a flexible valve extending radially inward from the inner surface of the scaffold;

wherein the valve is configured to shift between a closed configuration and an open configuration;

wherein the one or more filaments of the scaffold bias the valve to the closed configuration while in a nominally deployed state,

wherein the tubular scaffold includes a first tapered region and a second tapered region, and wherein the valve is positioned between the first tapered region and the second tapered region.

2. The stent of claim 1 , wherein the valve shifts from the closed configuration to the open configuration due to a peristaltic force applied to the tubular scaffold.

3. The stent of claim 1 , wherein the valve includes a valve opening extending therethrough, and wherein the valve opening is ovular-shaped in the open configuration.

4. The stent of claim 1 , wherein the first tapered region is configured to funnel material toward the valve.

5. The stent of claim 1 , wherein the one or more filaments of the scaffold are configured to radially expand to shift the valve from the closed configuration to the open configuration when subjected to a radial expansion force of 0.800 N/cm 2 or greater.

6. The stent of claim 1 , further comprising a coating disposed along the one or more filaments, and wherein the valve is formed from a portion of the coating.

7. The stent of claim 1 , wherein the valve is a two-way valve configured to permit material to pass through the valve in a first direction and a second direction, and wherein the first direction is opposite the second direction.

8. An expandable stent, comprising:

a braided tubular scaffold formed of a plurality of interwoven filaments, the tubular scaffold including a first end, a second end and a lumen extending therethrough, the tubular scaffold further including a narrowed region positioned between the first end and the second end; and

a flexible valve positioned within the lumen at the narrowed region;

wherein the plurality of interwoven filaments apply a radially compressive force on the valve to bias the valve to a closed configuration while the stent is in a nominally deployed state.

9. The stent of claim 8 , wherein the radially compressive force is less than or equal to 0.800 N/cm 2 .

10. The stent of claim 8 , wherein the narrowed region includes a first diameter while in the nominally deployed state, and wherein the narrowed region is configured to radially expand to open the valve when subjected to a radially expanding force of 0.800 N/cm 2 or greater.

11. The stent of claim 8 , wherein the valve shifts from the closed configuration to an open configuration due to a peristaltic force applied to the plurality of interwoven filaments.

12. The stent of claim 11 , wherein the valve includes a valve opening extending therethrough, and wherein the valve opening is ovular-shaped in the open configuration.

13. The stent of claim 8 , further comprising a coating disposed along the plurality of filaments, and wherein the valve is formed from a portion of the coating.

14. An expandable stent, comprising:

a tubular scaffold formed of one or more interwoven filaments, the tubular scaffold including an inner surface; and

a flexible valve extending radially inward from the inner surface of the scaffold;

wherein the valve is configured to shift between a closed configuration and an open configuration;

wherein the one or more filaments of the scaffold bias the valve to the closed configuration while in a nominally deployed state;

wherein the one or more filaments of the scaffold are configured to radially expand to shift the valve from the closed configuration to the open configuration when subjected to a radial expansion force of 0.800 N/cm 2 or greater.

15. The stent of claim 14 , wherein the valve shifts from the closed configuration to the open configuration due to a peristaltic force applied to the tubular scaffold.

16. The stent of claim 14 , wherein the tubular scaffold includes a narrowed region positioned between a first tapered region and a second tapered region, and wherein the valve is positioned in the narrowed region.

17. An expandable stent, comprising:

a tubular scaffold formed of one or more interwoven filaments, the tubular scaffold including an inner surface; and

a flexible valve extending radially inward from the inner surface of the scaffold;

wherein the valve is configured to shift between a closed configuration and an open configuration;

wherein the one or more filaments of the scaffold bias the valve to the closed configuration while in a nominally deployed state;

wherein the valve is a two-way valve configured to permit material to pass through the valve in a first direction and a second direction, and wherein the first direction is opposite the second direction.

18. The stent of claim 17 , wherein the one or more filaments of the scaffold are configured to radially expand to shift the valve from the closed configuration to the open configuration when subjected to a radial expansion force of 0.800 N/cm 2 or greater.

19. The stent of claim 17 , wherein the tubular scaffold includes a narrowed region positioned between a first tapered region and a second tapered region, and wherein the valve is positioned in the narrowed region.

20. The stent of claim 17 , wherein the valve includes a valve opening extending therethrough, and wherein the valve opening is ovular-shaped in the open configuration.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2019
From: COYNE, MARTIN; FEENEY, NIALL; BYRNE, JAMES; HOLEHONNUR, HARSHAD; DOLAN, JONATHAN
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 048182/0233 →
Continuity (2)
Provisional Application 62579990 · Nov 1, 2017
Related Publication 20190125558A1 · May 2, 2019