Nova Patents
EP0341049A2

Multi-layer cannula structure.

Abstract

A swellable cannula is formed of concentric inner and outer hydrophilic and substantially non-hydrophilic layer structures (12, 14, 40, 42, 44). The hydrophilic layer structure (12, 14, 40) comprises at least 2/3rds of the cross-sectional area of the wall of the cannula. The substantially non-hydrophilic layer structure (14, 12, 42, 44) is either substantially water impermeable or allows water to pass through at a controlled rate. The substantially non-hydrophilic layer structure may also control the diffusion of medicaments. The cannula has control softenability and swellability characteristics.

EP0341049A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 4 May 2009, 17.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

22 claims: 1 independent, 21 dependent

  1. 1
    A cannula having a multi-layer wall structure with proximal and distal end portions (22,26,20,32) and an inner lumen (36), and comprising:a) a hydrophilic layer structure having one or more hydrophilic layers (12,14,40) having respective outer and inner surfaces and being formulated of a hydrophilic material which increases in volume more than 1.3:1 upon contact with an aqueous medium at 37oC, said hydrophilic layer structure comprising at least 2/3rds of the cross-sectional area of said wall structure, said inner lumen swelling such that its cross-sectional area increases more than 20% upon contact of said hydrophilic layer structure with said aqueous medium at 37oC;and b) a substantially non-hydrophilic layer structure having one or more substantially non-hydrophilic layers (14,12,42) having respective outer and inner surfaces and being formulated of a substantially non-hydrophilic material;an outer or inner surface of each of said hydrophilic layers being bonded to a corresponding inner or outer surface of at least one of said substantially non-hydrophilic layers, said bonded hydrophilic and substantially non-hydrophilic layers being of a construction such that they remain bonded to one another following swelling of said lumen such that its cross-­sectional area increases more than 20% upon contact of said hydrophilic layer structure with said aqueous medium at 37oC.