Nova Patents
NZ720002A

Absorbable iron alloy stent

Abstract

An absorbable iron alloy stent. The stent comprises an iron alloy base and a degradable polymer in surface contact with said base. The degradable polymer has a weight-average molecular mass of between 20,000 and 1,000,000 and a polydispersity coefficient of between 1.0 and 50. Once the iron alloy stent is implanted into a body, the degradable polymer degrades and produces carboxyl groups. Once the iron alloy stent is implanted into a body, the effects of corrosion by means of oxygen absorption enable the stent both to function initially as a mechanical support and then to degrade gradually, the amount of hydrogen produced during the degradation process not reaching levels that could lead to a risk of air embolism.

NZ720002A, drawing sheet 1
Sheet 1 of 3

Term

8.1 yearsto projected expiry

Projected expiry 31 October 2034, counted from filing; an application has no term until it is granted.

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

29 claims: 6 independent, 23 dependent

  1. 1
    What is claimed is:1. An absorbable iron-based alloy stent, comprising an iron-based alloy substrate and a degradable polyester in contact with the surface of the substrate, wherein the degradable polyester has a weight average molecular weight more than or equal to 20,000 and less than or equal to 1,000,000 and a polydispersity index more than or equal to 1.2 and less than or equal to 30, or more than 1.0 and less than 1.2, or more than 30 and less than or equal 50 wherein the surface of the iron based alloy substrate is coated with the degradable polyester in the form of a coating layer;and a wall thickness of the iron-based alloy substrate is more than or equal to 30 μm and less than 50 μm, and a thickness of the degradable polyester coating is more than or equal to 3 μm and less than or equal to 20 μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 50 μm and less than 100 μm, and the thickness of the degradable polyester coating is more than or equal to 5 μm and less than or equal to 25μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 100μm and less than 200 μm, and the thickness of the degradable polyester coating is more than or equal to 10 μm and less than or equal to 35μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 200μm and less than or equal to 300μm, and the thickness of the degradable polyester coating is more than or equal to 10 μm and less than or equal to 45μm.
  2. 12
    An absorbable iron-based alloy stent, comprising an iron-based alloy substrate and a degradable polymer in contact with the surface of the substrate, wherein the degradable polymer has a weight average molecular weight of more than or equal to 20,000 and less than or equal to 1,000, 000 and a polydispersity index of more than 1.0 and less than or equal to 50, and the degradable polymer degrades to produce a carboxyl group after the iron-based alloy stent is implanted into the body;wherein the degradable polymer is a blend of the degradable polyester and a degradable polyanhydride;or the degradable polymer is a degradable copolymer formed by copolymerizing monomers forming the degradable polyester and the degradable polyanhydride, and the degradable polyester and the degradable polyanhydride have weight average molecular weights of more than or equal to 20,000 and less than or equal to 1,000,000, and polydispersity indexes of more than 1.0 and less than or equal to 50;wherein the surface of the iron-based alloy substrate is coated with the degradable polymer in the form of a coating layer;and 510071060_1\ 92084NZP00 a wall thickness of the iron-based alloy substrate is more than or equal to 30 μm and less than 50 μm, and a thickness of the degradable polymer coating is more than or equal to 3 μm and less than or equal to 20 μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 50 μm and less than 100 μm, and the thickness of the degradable polymer coating is more than or equal to 5 μm and less than or equal to 25 μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 100 μm and less than 200 μm, and the thickness of the degradable polymer coating is more than or equal to 10 μm and less than or equal to 35μm;or the wall thickness of the iron-based alloy substrate is more than or equal to 200μm and less than or equal to 300μm, and the thickness of the degradable polymer coating is more than or equal to 10 μm and less than or equal to 45μm.
  3. 24
    The absorbable iron-based alloy stent as set forth in any one of the preceding claims , wherein the degradable polymer is mixed with an active drug, and the mass ratio of the degradable polymer to the drug is more than or equal to 0.1 and less than or equal to 20.
  4. 26
    The absorbable iron-based alloy stent as set forth in any one of claims 1 to 25, wherein the iron-based alloy substrate is selected from an iron-based alloy formed by doping at least one of C, N, O, S, P, Mn, Pd, Si, W, Ti, Co, Cr, Cu, and Re into pure iron.
  5. 28
    The absorbable iron-based alloy stent as set forth in 26, wherein the iron-based alloy substrate is selected from pure iron or an iron-based alloy formed by doping at least one of Mn, Pd, Si, W, Ti, Co, Cr, Cu, and Re into pure iron.
  6. 29
    The absorbable iron-based alloy stent as set forth in any one of claims 1 to 28 substantially as hereinbefore described.