IP Library Patent Application 13071660
Patent Application
App. No. 13/071,660

MULTI LAYER COEXTRUDED CATHETER SHAFT

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Quick Facts
Patent No.
US None
App. No.
13/071,660
Abstract

A central venous catheter is provided having an outer tubular member and an inner tubular member that are preferably formed as a single integrated tube containing polymer material of different durometer and varying amounts of radiopaque filler material. The polymer durometer of the inner tubular member is higher than the polymer durometer of the outer tubular member. The percentage by weight of the filler material contained in the inner tubular member is higher than that of the outer tubular member. The combination of the higher durometer inner tubular member and the lower durometer outer tubular member along the length of the tube provides the desired tensile strength, hardness, chemical resistance and fatigue resistance and at the same time provides the desired flexibility and radiopacity.

Claims (34)

1 . A catheter shaft, comprising:

a monolithic tube comprising:

an outer tubular member having an inner surface and an outer surface, wherein the outer tubular member comprises a polymer material of a first durometer and a first amount of a radiopaque filler; and

an inner tubular member comprising an inner surface and an outer surface, wherein the inner tubular member comprises a polymer material of a second durometer and a second amount of the radiopaque filler, wherein the second durometer is greater than the first durometer, and wherein the outer tubular member is defined in a coaxially surrounding relationship to the inner tubular member, wherein the outer tubular member and the inner tubular member define a total catheter wall thickness.

2 . The catheter shaft of claim 1 , wherein the outer tubular member has a first strength, wherein inner tubular member has a second strength, and wherein the second strength is greater than the first strength.

3 . The catheter shaft of claim 1 , wherein the outer tubular member is substantially transparent.

4 . The catheter shaft of claim 1 , wherein the outer tubular member has a first modulus, and wherein the inner tubular member has a second modulus, and wherein the second modulus is greater than the first modulus.

5 . The catheter shaft of claim 1 , wherein at least a portion of the inner surface of the outer tubular member is positioned in contacting relationship to at least a portion of the outer surface of the inner tubular member.

6 . The catheter shaft of claim 1 , wherein the percentage by weight of the radiopaque filler comprised therein the inner tubular member is greater than the percentage by weight of radiopaque filler material in the outer layer.

7 . The catheter shaft of claim 1 , wherein the filler material in the inner tubular member is from about 0% to about 40% by weight.

8 . The catheter shaft of claim 1 , wherein the filler material in the outer tubular member is from about 0% to about 40% by weight.

9 . The catheter shaft of claim 8 , wherein the filler material in the outer tubular member is about 0% by weight.

10 . The catheter shaft of claim 1 , wherein the total catheter wall thickness varies over the length of the catheter shaft.

11 . The catheter shaft of claim 1 , wherein the outer tubular member has a wall thickness, and wherein the inner tubular member has a wall thickness.

12 . The catheter shaft of claim 11 , wherein the wall thickness of the inner tubular member is greater than the wall thickness of the outer tubular member.

13 . The catheter shaft of claim 11 , wherein the wall thickness of the outer tubular member is greater than the wall thickness of the inner tubular member.

14 . The catheter shaft of claim 11 , wherein the thickness of the outer tubular member comprises from about 25% to about 75% of the total wall thickness.

15 . The catheter shaft of claim 11 , wherein the thickness of the inner tubular member comprises from about 25% to about 75% of the total wall thickness.

16 . The catheter shaft of claim 11 , wherein the wall thickness of the outer tubular member varies over the length of the catheter shaft.

17 . The catheter shaft of claim 11 , wherein the wall thickness of the inner tubular member varies over the length of the catheter shaft.

18 . The catheter shaft of claim 1 , wherein the monolithic tube defines one or more lumens.

19 . The catheter shaft of claim 1 , wherein the catheter defines two lumens.

20 . The catheter shaft of claim 1 , further comprising a hub component attached to the proximal tube segment and configured to remain outside of a patient body.

21 . The catheter shaft of claim 1 , wherein the outer tubular member is more flexible than the inner tubular member.

22 . The catheter shaft of claim 1 , wherein the flexibility of the catheter shaft varies along the length of the catheter shaft.

23 . A catheter shaft, comprising:

an outer tubular member having an inner surface and an outer surface, wherein the outer tubular member comprises a polymer material of a first durometer and a first amount of a radiopaque filler; and

an inner tubular member comprising an inner surface and an outer surface, wherein the inner tubular member comprises a polymer material of a second durometer and a second amount of the radiopaque filler, wherein the second durometer is greater than the first durometer, and wherein the outer tubular member is defined in a coaxially surrounding relationship to the inner tubular member, wherein the outer tubular member and the inner tubular member define a total catheter wall thickness; and

a means for seamlessly positioning the outer tubular member and the inner tubular member in a coaxial relationship to each other such that the outer tubular member and the inner tubular member together form a monolithic tube.

24 . An integral venous access catheter shaft comprising:

a monolithic tube comprising:

a proximal tube segment of a first polymer material comprising less than 30% by weight radiopaque filler and having a first durometer between about 70 Shore D to about 45 Shore D, wherein the proximal tube segment has a proximal tube segment burst strength;

a distal tube segment of a second polymer material comprising between about 30% and 50% by weight radiopaque filler and having a second durometer between about 80 Shore A and 60 Shore D, wherein the second durometer value is less than the first durometer value, wherein the burst strength of the distal tube segment is less than the proximal tube segment burst strength, and wherein the percentage radiopaque filler by weight of the proximal tube segment is between about 30 to 80% less than the percentage radiopaque filler by weight of the distal tube segment; and

a transition tube segment seamlessly interposed between the proximal and the distal tube segments to form the monolithic tube, the transition tube segment having a varying mixture of the first and second polymer materials, wherein the ratio of the first polymer material to the second polymer material decreases from a proximal end to a distal end of the transition tube segment, and wherein the percentage by weight of the filler increases from the proximal end to the distal end of the transition segment.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Nov 14, 2016
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: ANGIODYNAMICS, INC.
Reel/Frame 040688/0540 →
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2013
From: JPMORGAN CHASE BANK N.A., AS ADMINISTRATIVE AGENT
To: ANGIODYNAMICS, INC.
Reel/Frame 031315/0361 →
SECURITY AGREEMENT Recorded Sep 30, 2013
From: ANGIODYNAMICS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 031315/0720 →
SECURITY AGREEMENT Recorded May 23, 2012
From: ANGIODYNAMICS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 028260/0329 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2011
From: ZANONI, MICHAEL S; CASEY, THOMAS V, II; NENTWICK, BRIAN F; RECINELLA, DANIEL K; APPLING, WILLIAM M.
To: ANGIODYNAMICS, INC.
Reel/Frame 026048/0338 →