IP Library Granted Patent US 8,425,451
Granted Patent B2
US 8,425,451 · App. 13/151,983 · Granted Apr 23, 2013

Gastrointestinal anchor compliance

Inventors: Andy H. Levine (Newton, MA); David A. Melanson (Hudson, NH)
Assignee: GI Dynamics, Inc.
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Quick Facts
Patent No.
US 8,425,451
App. No.
13/151,983
Granted
Apr 23, 2013
Kind
B2
Abstract

A collapsible gastrointestinal anchor can be characterized in various embodiments by a radial force of about 0.1 Newtons (N) or greater at a compressed diameter of 25 millimeters (mm); by an average spring rate of about 13 Newtons/meter (N/m) or greater in a range of motion between a relaxed diameter and a compressive elastic deformation diameter; or by a radial force over the range of motion of about 0.1 N or greater. Typically, the anchor can be adapted to be retained within a subject's intestine, more typically in the duodenum, or particularly in the duodenal bulb just distal to the pylorus. A gastrointestinal implant device includes the collapsible gastrointestinal anchor and a floppy sleeve. The sleeve is open at both ends and adapted to extend into a subject's intestine, the anchor being coupled to a proximal portion of the sleeve. Also include are methods of implanting the gastrointestinal implant device in a subject, and methods of treating a subject for disease. The disclosed gastrointestinal invention leads to an improved ability to secure anchors and devices in the gastrointestinal tract while tending to minimize migration.

Claims (29)

1. A gastrointestinal implant device comprising:

a flexible sleeve, open at both ends and adapted to extend into a subject's intestine; and

a collapsible gastrointestinal anchor, coupled to a proximal portion of the sleeve and characterized by an average spring rate of between about 13 Newtons/meter (N/m) and about 35 N/m in a range of motion of about 20 mm or greater, the range of motion being within a diameter range defined by a relaxed diameter and a compressive elastic deformation diameter.

2. The gastrointestinal implant device of claim 1 , the spring rate being the spring rate while the anchor is unloaded from a compressed state.

3. The gastrointestinal implant device of claim 1 , characterized by a relaxed diameter of about 40 mm or greater.

4. The gastrointestinal implant device of claim 1 , the average value of the spring rate being between about 15 N/m and about 35 N/m.

5. The gastrointestinal implant device of claim 1 , the range of motion being about 30 mm or greater.

6. A method of treating a subject, comprising the steps of:

securing a gastrointestinal implant device within a subject's intestine, the device including a flexible sleeve, open at both ends and adapted to extend into the subject's intestine; and a collapsible gastrointestinal anchor, coupled to a proximal portion of the sleeve and characterized by an average spring rate of between about 13 Newtons/meter (N/m) and about 35 N/m in a range of motion of about 20 mm or greater, the range of motion being within a diameter range defined by a relaxed diameter and a compressive elastic deformation diameter; and

extending the distal end of the sleeve into the subject's intestine.

7. The method of claim 6 , the anchor being characterized by a relaxed diameter of about 40 mm or greater.

8. The method of claim 6 , the average value of the spring rate being between about 15 N/m and about 35 N/m.

9. The method of claim 6 , the range of motion being about 30 mm or greater.

10. A collapsible gastrointestinal anchor comprising a wave spring having a plurality of barbs extending therefrom, the wave spring being characterized by:

a relaxed diameter of about 40 millimeters (mm) or greater;

a compressive elastic deformation diameter of about 12 mm or less;

an average spring rate of between about 13 Newtons/meter (N/m) and about 35 N/m over a range of motion of about 20 mm or greater, the range of motion being within a diameter range defined by the relaxed diameter and the compressive elastic deformation diameter; and

a radial force under compression, the radial force being between about 0.1 Newtons (N) and about 1.5 N at a diameter of 25 mm, and the radial force being between about 0.1 N and about 1.5 N over the range of motion,

the spring rate and the radial force being the spring rate and the radial force while the spring is unloaded from a compressed state.

11. A gastrointestinal implant device comprising:

a flexible sleeve, open at both ends and adapted to extend into a subject's intestine; and

a collapsible gastrointestinal anchor coupled to a proximal portion of the sleeve, the anchor comprising a wave spring having a plurality of barbs extending therefrom,

the wave spring being characterized by a relaxed diameter of about 40 millimeters (mm) or greater; a compressive elastic deformation diameter of about 12 mm or less; an average spring rate of between about 13 Newtons/meter (N/m) and about 35 N/m over a range of motion of about 20 mm or greater, the range of motion being within a diameter range defined by the relaxed diameter and the compressive elastic deformation diameter; and a radial force under compression, the radial force being between about 0.1 Newtons (N) and about 1.5 N at a diameter of 25 mm, and the radial force being between about 0.1 N and about 1.5 N over the range of motion,

the spring rate and the radial forces being the spring rate and the radial forces while the spring is unloaded from a compressed state.

12. A method of treating a subject, comprising the steps of:

securing a gastrointestinal implant device within a subject's intestine, the device including a flexible sleeve, the sleeve open at both ends and adapted to extend into the subject's intestine, and a collapsible gastrointestinal anchor coupled to a proximal portion of the sleeve, the anchor comprising a wave spring having a plurality of barbs extending therefrom; and

extending the distal end of the sleeve into the subject's intestine,

the wave spring being characterized by a relaxed diameter of about 40 millimeters (mm) or greater; a compressive elastic deformation diameter of about 12 mm or less; an average spring rate of between about 13 Newtons/meter (N/m) and about 35 N/m over a range of motion of about 20 mm or greater, the range of motion being within a diameter range defined by the relaxed diameter and the compressive elastic deformation diameter; and a radial force under compression, the radial force being between about 0.1 Newtons (N) and about 1.5 N at a diameter of 25 mm, and the radial force being between about 0.1 N and about 1.5 N over the range of motion,

the spring rate and the radial forces being the spring rate and the radial forces while the spring is unloaded from a compressed state.

Assignments (2)
CHANGE OF NAME Recorded Aug 23, 2024
From: GI DYNAMICS, INC.
To: MORPHIC MEDICAL, INC.
Reel/Frame 068764/0087 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2011
From: LEVINE, ANDY H.; MELANSON, DAVID A.
To: GI DYNAMICS, INC.
Reel/Frame 026433/0608 →
Continuity (2)
Continuation 11147992 · Jun 8, 2005
Related Publication 20110301523A1 · Dec 8, 2011