EP2113230A2

Drug-Delivery Endovascular Stent and Method for Treating Restenosis

Abstract

An endovascular stent (20) for placement at a vascular injury site for inhibiting restenosis at the site comprises a body (22) having an open lattice structure formed of linked filaments (24, 26), and a drug-release coating carried on the filaments, the coating having a thickness of between 3-30 microns and composed of (i) 20 to 80 weight percent polymer substrate and (ii) 20 to 80 weight percent macrocyclic triene compound. The stent is expandable from a contracted condition, in which the stent can be delivered to a vascular injury site via catheter, and an expanded condition, in which the stent coating can be placed in contact with the vessel at the injury site. The coating is effective to release an amount of the compound to inhibit restenosis at the site.

EP2113230A2, drawing sheet 1
Sheet 1 of 23

Term

Term ended

Projected expiry passed 24 April 2023, 3.4 years ago.

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21 claims: 12 independent, 9 dependent

  1. 1
    An endovascular stent for placement at a vascular injury site for inhibiting restenosis at the site, comprising:a body having an open lattice structure formed of linked filaments, a drug-release coating carried on the filaments, the coating having a thickness of between 3-30 microns and composed of (i) 20 to 80 weight percent polymer substrate and (ii) 20 to 80 weight percent macrocyclic triene compound;said stent being expandable from a contracted condition, in which the stent can be delivered to a vascular injury site via catheter, and an expanded condition, in which the stent coating can be placed in contact with the vessel at the injury site;said coating being effective to release an amount of the compound to inhibit restenosis at the site.
  2. 2
    An endovascular stent for placement at a vascular injury site, for inhibiting restenosis at the site, comprising a radially expandable, tubular body formed of a lattice of connected filaments, each filament having top, edge and bottom support surfaces, and a drug-release coating containing a restenosis-inhibiting drug, said coating being only on the top surfaces of said filaments.
  3. 5
    The stent of any preceding claim, wherein said drug-release coating coats at least a portion of the edge surfaces of said filaments.
  4. 6
    The stent of any preceding claim, wherein the inside surfaces of said stent body are coated with a second drug-release coating containing a second drug.
  5. 7
    The stent of any preceding claim, wherein the depth of said drug-release coating on the filament outside surfaces is non-uniform.
  6. 8
    The stent of any preceding claim wherein the polymer substrate is selected from the group consisting of polymethylmethacrylate, ethylene vinyl alcohol, polylactide polymers, ε-caprolactone, ethyl vinyl acetate, polyvinyl alcohol, and polyethylene oxide.
  7. 9
    The stent of any preceding claim wherein the polymer substrate is selected from the group consisting of poly- dl -lactic acid, poly-d-lactic acid, and poly-l-lactic acid.
  8. 10
    The stent of any preceding claim wherein the polymer substrate is a bioerodable polymer substrate.
  9. 11
    The stent of any preceding claim further comprising a polymer undercoat disposed between the filaments of the stent body and the drug-release coating.
  10. 14
    The stent of any preceding claim wherein said drug-release coating further includes a bioactive agent selected from the group consisting of antiplatelet agents, fibrinolytic agents, and thrombolytic agents.
  11. 16
    The stent of any preceding claim wherein said drug is a macrocyclic triene compound having the formula:where (i) R is H or CH 2 -X-OH, and X is a linear or branched alkyl group containing 1 to 7 carbon atoms, when R' is H ( R' is at the 28 position O ) or (ii) at least one of R and R' have the form: where m is an integer from 1 to 3 and R 1 and R 2 are each a hydrogen, or an alkyl radical having from one to three carbon atoms, or, alternatively, wherein R 1 and R 2 together with a nitrogen atom to which they are attached form a saturated heterocyclic ring having four carbon atoms.
  12. 18
    The stent of any preceding claim wherein said stent is a bare metal stent or a bioerodable stent.