EP2004104A2

Improved methods of polymeric stent surface smoothing and resurfacing to reduce biologically active sites

Abstract

The present invention provides methods for fabricating a stent using a chemical treatment to smooth, polish or strengthen the stent. One such treatment involves exposing the stent to acetone or a similar solvent. In certain embodiments, the additional step comprises placing the stent in a bath containing acetone, or a similar solvent, where the bath also contains the polymer the stent is composed of. The acetone bath step may be conducted at a temperature that is below the glass transition temperature. The present invention also provides for methods of fabricating a stent using an acetone bath that comprises poly (lactic) acid. Other embodiments provide for methods of fabricating a stent using an acetone bath that comprises poly (lactic) acid and polyethylene glycol.

Term

0.5 yearsto projected expiry

Projected expiry 11 April 2027, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

23 claims: 4 independent, 19 dependent

  1. 1
    Claims of equivalent WO 2007116305 A2 CLAIMS 1. A method of decreasing sharp surfaces and/or irregularities of a polymeric stent, said method comprising:immersing at least part of a polymeric stent into a bath comprising at least one solvent and at least one biodegradable polymer.
  2. 2
    The method of decreasing reactive amino groups on a polymeric stent, said method comprising:fabricating a biodegradable polymeric stent;preparing a bath comprising at least one biodegradable polymer dissolved in at least one solvent;immersing at least part of the biodegradable polymeric stent into said bath for a predetermined period of time.
  3. 3
    The method of any of claims 1 - 2, wherein the at least one biodegradable polymer has a concentration greater than 1% weight/volume.
  4. 4
    The method of any of claims 1 - 3, wherein the biodegradable polymer has a concentration greater than 5% weight/volume.
  5. 5
    The method of any of claims 1 - 4, wherein the bath further comprises a polyether.
  6. 7
    The method of any of claims 1 - 6, wherein the temperature of the bath is below the glass transition temperature of the polymeric stent.
  7. 8
    The method of any of claims 1 - 7, wherein said polymeric stent is immersed in the bath for about 0.1 seconds.
  8. 9
    The method of any of claims 1 - 7, wherein said polymeric stent is immersed in the bath for about 0.5 seconds.
  9. 11
    The method of any of claims 1 - 10, wherein the bath is at a temperature below 50 0 C.
  10. 12
    The method of any of claims 1 - 11, wherein the atmospheric pressure over the bath is controlled.
  11. 13
    The method of any of claims 1 - 12, wherein the bath further comprises agents capable of reducing the surface tension of said bath.
  12. 16
    The method of any of claims 1 - 15, wherein said at least one solvent comprises acetone.
  13. 17
    The method of any of claims 1 - 15, wherein said at least one solvent comprises one or more types of chlorinated or halogenated hydrocarbons.
  14. 19
    The method of any one of claims 1 - 15, wherein said bath further comprises at least one solvent from the ketone family.
  15. 21
    The method of any one of claims 1 - 15, wherein said at least one solvent comprises an aldehyde.
  16. 22
    The method of any of claims 1 - 21, wherein the said polymeric stent and at least one biodegradable polymer comprise the same polymer.