COATED EPTFE LINERS FOR CATHETERS
Expanded polytetrafluoroethylene (ePTFE) tubings are provided with a thermoplastic tie layer coating on the outer surface thereof to serve, e.g., as flexible liners for catheters. The thermoplastic tie layer coating can be anchored into the pores of the ePTFE but advantageously does not permeate through to the inner surface of the tubing. In this way, the outer surface of the tubing can adhere to an outer jacket material while the inner surface of the tubing remains lubricious.
1 . A coated tubing, comprising:
an expanded polytetrafluoroethylene (ePTFE) tubing with an inner surface and an outer surface and a wall with a thickness; and
a thermoplastic tie layer coating on at least a portion of the outer surface.
2 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating is on substantially all of the outer surface.
3 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating permeates into the wall from the outer surface through the wall of the ePTFE tubing to a depth of 80% or less of the wall thickness.
4 . The coated tubing of claim 3 , wherein the thermoplastic tie layer coating permeates into the wall from the outer surface through the wall of the ePTFE tubing to a depth of 60% or less of the wall thickness.
5 . The coated tubing of claim 4 , wherein the thermoplastic tie layer coating permeates into the wall from the outer surface through the wall of the ePTFE tubing to a depth of 50% or less of the wall thickness.
6 . The coated tubing of claim 1 , wherein the inner surface comprises no thermoplastic tie layer coating.
7 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating has an average coating thickness from the outer surface outwards of 1 μm or greater.
8 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating has a durometer hardness between 93A and 55D.
9 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating comprises or consists essentially of one or more of a polyether block amide, a polyurethane, a nylon, or a derivative or copolymer thereof.
10 . The coated tubing of claim 3 , wherein the thermoplastic tie layer coating is non-uniformly distributed throughout the wall thickness.
11 . The coated tubing of claim 1 , wherein the ePTFE tubing has an inner diameter of 0.6 mm or greater.
12 . The coated tubing of claim 1 , wherein the ePTFE tubing has an average wall thickness of 0.03 mm or greater.
13 . The coated tubing of claim 1 , wherein the ePTFE tubing has an internodal distance (IND) of greater than 5 μm.
14 . A catheter comprising the coated tubing of claim 1 , configured such that the catheter has a catheter inner surface corresponding to the inner surface of the ePTFE tubing.
15 . The catheter of claim 14 , further comprising a reinforcing layer on an outer surface of the coated tubing (e.g., a braided or coiled wire).
16 . The catheter of claim 14 , further comprising a catheter jacket.
17 . A catheter assembly comprising:
an expanded polytetrafluoroethylene (ePTFE) liner with an inner surface and an outer surface and a wall thickness; and
a thermoplastic tie layer coating with an average coating thickness of 1 μm or greater and a durometer hardness between 93A and 55D disposed on the outer surface of the ePTFE liner to give a coated liner,
wherein the ePTFE liner has a bonding affinity to the thermoplastic tie layer coating.
18 . The catheter assembly of claim 17 , wherein the thermoplastic tie layer coating is on substantially all of the outer surface.
19 . The coated tubing of claim 1 , wherein the thermoplastic tie layer coating permeates into the wall from the outer surface through the wall of the ePTFE tubing to a depth of 80% or less of the wall thickness.
20 . The catheter assembly of claim 17 , wherein the inner surface comprises no thermoplastic tie layer coating.