EP1363695B1

Ingrowth preventing indwelling catheter assembly

Abstract

A surgically implantable delivery or drainage catheter assembly includes a porous fiber membrane that is permeable to the intended drainage or delivery fluid, yet has an outer surface morphology and porosity that prevents the ingrowth of tissue. The porous fiber membrane is created using a phase-inversion process which is controlled to select a desired porosity. A reinforcement member is also disposed within the porous fiber membrane.

EP1363695B1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 28 February 2022, 4.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

28 claims: 17 independent, 11 dependent

  1. 1
    A catheter assembly (100), comprising a length of non-porous flexible tubing (104); a porous tubular membrane segment (102) connected to the nonporous flexible tubing (104) and comprised of a porous fiber membrane; and a non-porous tip (106) secured to a second end of said porous tubular membrane segment (102); and characterized by :said porous tubular membrane segment (102) having a first end attached to an end of the nonporous flexible tubing (104), said porous fiber membrane having a porosity of less than 5 micrometers so as to be permeable to drainage or delivery of fluid but impermeable to tissue ingrowth;and a reinforcement member (118, 120, 124) disposed within the porous tubular membrane segment (102), said reinforcement member (118, 120, 124) being secured to said end of said non-porous flexible tubing and attached to said non-porous tip (106).
  2. 5
    The catheter assembly according to any of the preceding claims, wherein the fluid-flow rate of the porous fiber membrane is approximately 20 milliliters per hour.
  3. 6
    The catheter assembly according to any of the preceding claims, wherein the reinforcement member comprises a rigid tube (124) having apertures through a sidewall thereof.
  4. 10
    The catheter assembly according to any of the preceding claims, wherein an interior end of the tip (106) is formed to fit a catheter introducer.
  5. 11
    The catheter assembly according to any of the preceding claims, wherein the tip (106) includes a rounded exterior end.
  6. 12
    The catheter assembly according to any of the preceding claims, wherein the end of the tubing (104) is of reduced cross-sectional diameter, and an interior end of the tip (106) is of reduced cross-sectional diameter to facilitate the attachment of the porous tubular membrane segment (102) and maintain a generally uniform catheter assembly outer diameter.
  7. 13
    The catheter assembly according to any of the preceding claims, wherein said porous tubular membrane segment (102) comprises a polymeric porous fiber membrane that is permeable to drainage or delivery fluid at a flow rate between 5 milliliters to 100 milliliters per hour.
  8. 14
    The catheter assembly according to any of the preceding claims, wherein the porosity of the porous fiber membrane is within the range of 1 micrometer to 2 micrometers
  9. 15
    The catheter assembly according to any of the preceding claims, wherein the porous tubular membrane is comprised of polyether sulfone.
  10. 16
    A process for creating an ingrowth preventing indwelling catheter assembly (100), the ingrowth preventing indwelling catheter assembly having a distal end configured to be placed within an area of a patient's body, the process comprising the steps of:forming a length of porous fiber membrane tubing (102);characterized by : placing a reinforcement member (118, 120, 124) within the porous fiber membrane tubing (102);fixing a non-porous tip (106) to a first end of the porous fiber membrane tubing (102) to form the distal end of the ingrowth preventing indwelling catheter assembly, and securing the reinforcement member (118, 120, 124) to the non-porous tip;and attaching a length of non-porous and flexible tubing (104) to a second end of the porous fiber membrane tubing (102) and securing the reinforcement member (118, 120, 124) to the length of non-porous and flexible tubing (104), and wherein said porous fiber membrane tubing (102) has a porosity of less than 5 micrometers so as to be permeable to drainage or delivery of fluid but impermeable to tissue ingrowth.
  11. 22
    The process according to any of the preceding claims 16 through 21, wherein the placing step includes the step of placing a rigid tube having apertures through sidewalls thereof, a woven polymer sleeve, or a spring, within the porous tube.
  12. 23
    The process according to any of the preceding claims 16 through 22, wherein the placing step further includes the step of associating a rigid wire with the spring.
  13. 24
    The process according to any of the preceding claims 16 through 23, including the step of forming an interior end of the tip to fit a catheter introducer.
  14. 25
    The process according to any of the preceding claims 16 through 24, including the step of forming a shoulder (108) on the non-porous flexible tubing (104) and the tip to maintain a generally uniform catheter assembly outer diameter.
  15. 26
    The process according to any of the preceding claims 16 through 25, wherein the porous fiber membrane has a fluid-flow rate of up to 100 milliliters per hour.
  16. 27
    The process according to any of the preceding claims 16 through 25, wherein the porous fiber membrane has a fluid flow rate of approximately 20 milliliters per hour.
  17. 28
    The process according to any of the preceding claims 16 through 25, wherein said porous fiber membrane tubing (102) has a drainage or delivery fluid flow rate between 5 milliliters and 100 milliliters per hour.
Independent claims17