IP Library › Granted Patent US 11,324,583
Granted Patent B1
US 11,324,583 · App. 17/497,199 · Granted May 10, 2022

Multi-lumen stent-graft and related surgical methods

Inventors: Pierre Galvagni Silveira (Florianópolis, BR); Andrea Piga Carboni (Florianópolis, BR)
Assignee: Archo Medical LTDA
A61F2/07A61F2002/061A61F2002/077A61F2250/0039
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Quick Facts
Patent No.
US 11,324,583
App. No.
17/497,199
Granted
May 10, 2022
Kind
B1
Abstract

A multi-lumen stent-graft including a graft portion and a stent frame. The stent-graft includes multiple through-channels formed of the graft portion. The graft portion can comprise a PTFE material and the through-channels can be formed of fused portions of the graft portion. The stent-graft can be used in a prostheses that connects multiple vessel branches such as for the repair of aortic aneurysms or other vessels of the body.

Claims (42)

1. A multi-lumen expandable stent-graft comprising:

a graft sleeve formed of a single tube of polymer material having a sleeve diameter and comprising:

a first open end including a first cylindrical wall having an upper rim;

a second open end including a second cylindrical wall having a lower rim, the first open end spaced apart from the second open end along a longitudinal axis,

a hub length extending from the upper rim of the first open end to the lower rim of the second open end, the hub length between 4 and 9 cm; and

a plurality of parallel flow channels extending between the first open end and the second open end and defining a channel length therebetween, the channel length being between 50% and 90% of the hub length, the plurality of parallel flow channels including:

a first flow channel formed by a first linear connected segment of the polymer material channel and including inlet and outlet ports in communication with the respective first and second open ends of the graft sleeve, the first linear connected segment aligned parallel with the longitudinal axis of the stent-graft, the first linear connected segment having a first width;

a second flow channel formed by a second linear connected segment of the polymer material channel and including inlet and outlet ports in communication with the respective first and second open ends of the graft sleeve, the second linear connected segment aligned parallel with the longitudinal axis of the stent-graft, the second linear connected segment having a second width;

a third flow channel formed by a third linear connected segment of the polymer material channel and including inlet and outlet ports in communication with the respective first and second open ends of the graft sleeve, the third linear connected segment aligned parallel with the longitudinal axis of the stent-graft, the third linear connected segment having a third width;

a fourth flow channel formed by a the first, second, and third linear connected segments of the polymer material channel and including inlet and outlet ports in communication with the respective first and second open ends of the graft sleeve;

a self-expanding wire stent coaxially mounted over the graft sleeve and affixed to said graft sleeve at the first cylindrical wall of the first open end and the second cylindrical wall of the second open end;

wherein the polymer material of the graft sleeve comprises Polytetrafluoroethylene (PTFE) and the first, second, and third linear connected segments comprise fused portions of the PTFE material;

wherein a summation of 1) a circumference of each of the first, second, third and fourth flow channels and 2) twice a sum of the first, second, and third widths of the respective first, second, and third linear connected segments is equal to a circumference of the single tube of polymer material; and

wherein a first diameter of the first flow channel is within 5% to 25% of the sleeve diameter, a second diameter of the second flow channel is within 5% to 25% of the sleeve diameter, a third diameter of the third flow channel is within 5% to 25% of the sleeve diameter, and a fourth diameter of the fourth flow channel is within 50% to 75% of the sleeve diameter.

2. A multi-lumen expandable stent-graft comprising:

a graft sleeve comprising polymer material forming first, second and third flow channels between a first open end and a second open end;

a self-expanding wire stent coaxially mounted over the graft sleeve and affixed to said graft sleeve at the first and second open ends;

wherein the first flow channel is formed by a first linear connected segment of the polymer material channel, the first linear connected segment aligned parallel with a longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

wherein the second flow channel is formed by a second linear connected segment of the polymer material channel, the second linear connected segment aligned parallel with the longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

wherein the third flow channel is formed by a third linear connected segment of the polymer material channel, the third linear connected segment aligned parallel with the longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

wherein a first diameter of the first flow channel is within 10% to 40% of a sleeve diameter of the first and second open ends, a second diameter of the second flow channel is within 10% to 40% of the sleeve diameter, and a third diameter of the third flow channel is within 50% to 80% of the sleeve diameter.

3. The stent-graft of claim 2 , wherein a channel length of the first, second, and third channels is between 50% and 90% of a hub length extending from an upper rim of the first open end to a lower rim of the second open end.

4. The stent-graft of claim 2 , wherein a channel length of the first, second, and third channels is between 75% and 90% of a hub length extending from an upper rim of the first open end to a lower rim of the second open end.

5. The stent-graft of claim 2 , wherein the first, second, and third channels are parallel.

6. The stent-graft of claim 2 , wherein the first, second, and third flow channels are unsupported by the self-expanding wire stent.

7. The stent-graft of claim 2 , wherein the first and second open ends each include a cylindrical wall portion supported by the self-expanding wire stent.

8. The stent-graft of claim 7 , wherein the cylindrical wall of the first open end has a length that is between 2 and 5 times greater than a length of the cylindrical wall of the second open end.

9. The stent-graft of claim 2 , wherein respective ends of the first, second, and third linear connected segments are spaced inwardly from the first and second open ends.

10. The stent-graft of claim 2 , wherein the first and second open ends include folded portions of the polymer material.

11. The stent-graft of claim 2 , wherein the first and second open ends include an additional layer of the polymer material that encapsulates first and second ends of the graft sleeve.

12. The stent-graft of claim 2 , wherein the graft sleeve comprises a single tube of the polymer material and a total circumference of each of the flow channels is equal to a circumference of the single tube of polymer material.

13. The stent-graft of claim 2 , wherein the polymer material of the graft sleeve comprises Polytetrafluoroethylene (PTFE) and the first, second, and third linear connected segments comprise fused portions of the PTFE material.

14. The stent-graft of claim 13 , wherein the fused portions of the PTFE material are formed by melting the PTFE material above a melting temperature thereof.

15. The stent-graft of claim 13 , wherein the fused portions of the PTFE material are formed by ultrasonic welding.

16. The stent-graft of claim 13 , wherein the fused portions of the first linear connected segment includes an intermediate layer of PTFE material.

17. A multi-lumen expandable stent-graft comprising:

a graft sleeve comprising polymer material forming first, second and third flow channels between a first open end and a second open end;

a self-expanding wire stent coaxially mounted over the graft sleeve and affixed to said graft sleeve at the first and second open ends;

wherein the first flow channel is formed by a first linear connected segment of the polymer material channel, the first linear connected segment aligned parallel with a longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

wherein the second flow channel is formed by a second linear connected segment of the polymer material channel, the second linear connected segment aligned parallel with the longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

wherein the third flow channel is formed by a third linear connected segment of the polymer material channel, the third linear connected segment aligned parallel with the longitudinal axis of the stent-graft, and includes inlet and outlet ports spaced inwardly from the first and second open ends of the graft sleeve;

a fourth flow channel, wherein a first diameter of the first flow channel is within 5% to 25% of a sleeve diameter of the first and second open ends, a second diameter of the second flow channel is within 5% to 25% of the sleeve diameter, a third diameter of the third flow channel is within 5% to 25% of the sleeve diameter and a fourth diameter of the fourth flow channel is within 50% to 75% of the sleeve diameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2022
From: SILVEIRA, PIERRE GALVAGNI; CARBONI, ANDREA PIGA
To: ARCHO MEDICAL LTDA
Reel/Frame 059493/0883 →
Continuity (1)
Provisional Application 63203046 · Jul 6, 2021
Cited By (1)
US 12,496,182