Metallic implant which is degradable in vivo
The invention relates to a medical implant made of a metallic material. After fulfilling its temporary support function, the implant is degraded by corrosion at a predetermined rate. Negative long-term effects are thus avoided.
1. A device comprising a medical implant made from a metallic material degradable in vivo through corrosion,
wherein the material has a thickness and a composition consisting of an alloy having iron as its major constituent,
wherein the material contains 88-99.8% iron, 0.1-7% chromium, 0-3.5% nickel, and less than 5% other metals, and, optionally, up to 7% carbon,
wherein the implant is a vascular support in the form of a stent.
2. The device of claim 1 , wherein the material further contains up to 7% carbon.
3. The device of claim 1 , wherein the thickness of the material is selected with regard to the composition of the material in order to provide substantially complete degradation or corrosion of the device in vivo within from about 5 days to about 6 months.
4. The device of claim 1 , wherein the thickness of the material is selected with regard to the composition of the material in order to provide substantially complete degradation or corrosion of the device in vivo within from about 2 weeks to about 8 weeks.
5. The device of claim 1 , wherein the thickness of the material is selected with regard to the composition of the material in order to provide substantially complete degradation or corrosion of the device in vivo within from 6 months to 10 years.
6. The device of claim 1 , wherein the thickness of the material is selected with regard to the composition of the material in order to provide substantially complete degradation or corrosion of the device in vivo within from about 1 year to about 5 years.