IP Library Patent Application 10327371
Patent Application
App. No. 10/327,371

Pseudoelastic stents having a drug coating and a method of producing the same

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Quick Facts
Patent No.
US None
App. No.
10/327,371
Abstract

An implantable medical device, such as a stent, having linear pseudoelastic behavior and a polymeric drug coating is disclosed. A method of producing an implantable medical device having linear pseudoelastic behavior and a polymeric drug coating is also disclosed.

Claims (38)

1 . An implantable medical device for insertion into a biological lumen, comprising:

a metallic body constructed of a linear pseudoelastic material including a ternary element selected from the group consisting of palladium, platinum, chromium, niobium, rhodium, tungsten, tantalum, and zirconium; and

a coating comprising a polymer disposed over a portion of the body, wherein the coating further comprises a therapeutic substance.

2 . The implantable medical device of claim 1 , wherein the linear pseudoelastic material does not undergo phase transformation when the body is subjected to stress.

3 . (canceled)

4 . An implantable medical device for insertion into a biological lumen, comprising;

a metallic substrate; and

a coating comprising a polymer disposed over a portion of the substrate, wherein the substrate is in a martensitic phase when the substrate is stressed into a first shape and the substrate remains in a martensitic phase when the stress on the substrate is relieved to assume a second shape, and wherein a stress-strain hysteresis curve for the substrate does not include a stress plateau, and wherein the substrate includes a ternary element selected from the group consisting of palladium, platinum, chromium, niobium, rhodium, tungsten, tantalum, and zirconium.

5 . (canceled)

6 . A stent for insertion into a biological lumen, comprising:

a self-expanding body comprising a cold formed nickel-titanium alloy, the self-expanding body including a plurality of laser-cut struts that have been physically descaled so that substantially all of the cold formed nickel-titanium alloy exhibits linear pseudoelastic behavior and substantially none of the cold formed nickel-titanium alloy exhibits nonlinear pseudoelastic behavior; and

a coating disposed over a portion of the body, the coating comprising a polymer and a therapeutic substance.

7 . The stent of claim 6 , wherein the cold formed nickel-titanium alloy comprises a cold worked percentage of about 30% to about 60%.

8 . (canceled)

9 . (canceled)

10 . The stent of claim 6 , wherein the alloy has a transformation temperature greater than a mammalian body temperature.

11 . The stent of claim 6 , wherein the nickel-titanium alloy is pseudo elastic when stressed without onset of stress-induced martensite.

12 .- 15 . (canceled)

16 . A method of producing the implantable medical device of claim 1 , comprising:

forming struts by selectively removing portions of the metallic body, the metallic body being a tubular substrate, the substrate comprising a cold worked metallic material; and

applying the coating to the struts, the coating comprising the polymer and a therapeutic sub stance.

17 . The method of claim 16 , wherein when stress is applied to the coated struts to place the struts into a compressed form, the substrate exhibits linear pseudo elasticity during the application of the stress.

18 . The method of claim 17 , wherein the application of stress does not create stress-induced martensite in the substrate.

19 . The method of claim 16 , wherein the formation of the struts is performed by using a low-energy laser.

20 . The method of claim 16 , wherein the formation of the struts is performed by chemical etching.

21 . The device of claim 1 , wherein the biological lumen is a vascular lumen.

22 . The device of claim 4 , wherein the coating further comprises a therapeutic agent.

23 . The device of claim 4 , wherein the biological lumen is a vascular lumen.

24 . The stent of claim 6 , wherein the biological lumen is a vascular lumen.

25 . The device of claim 1 , wherein the metallic body comprises substantially only the linear pseudoelastic material that is in a martensite phase.

26 . A stent for insertion into a biological lumen, comprising:

a self-expanding stent body comprising a cold formed nickel-titanium alloy that exhibits linear pseudoelasticity, the self-expanding stent body including a plurality of struts formed therein in a manner that does not alter the linear pseudoelastic behavior of the cold formed nickel-titanium alloy; and

a coating disposed over at least a portion of the stent body, the coating comprising a polymer and a therapeutic substance.

27 . A method of forming the stent of claim 26 , comprising:

cutting the plurality of struts in a body constructed of the cold formed nickel-titanium alloy that exhibits the linear pseudoelastic behavior so that the linear pseudoelastic behavior of the cold formed nickel-titanium alloy is not substantially altered.

28 . A stent, comprising:

a self-expanding stent body including a plurality of laser-cut struts, the self-expanding stent body constructed of a cold formed nickel-titanium alloy, the cold formed nickel-titanium alloy exhibiting linear pseudoelastic behavior at least in heat-affected zones of the self-expanding stent body affected by the laser cutting used to form the plurality of struts; and

a coating disposed over at least a portion of the self-expanding stent body, the coating comprising a polymer and a therapeutic substance.

Assignments (2)
CHANGE OF NAME Recorded Apr 23, 2009
From: ADVANCED CARDIOVASCULAR SYSTEMS, INC.
To: ABBOTT CARDIOVASCULAR SYSTEMS, INC.
Reel/Frame 022590/0957 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2002
From: LIN, ZHI CHENG; MCINTOSH, WINNETTE
To: ADVANCED CARDIOVASCULAR SYSTEMS, INC.
Reel/Frame 013622/0643 →