Methods for making oxidation resistant polymeric material
The present invention relates to methods for making oxidation resistant medical devices that comprise polymeric materials, for example, ultra-high molecular weight polyethylene (UHMWPE). The invention also provides methods of making antioxidant-doped medical implants, for example, doping of medical devices containing cross-linked UHMWPE with vitamin E by diffusion and materials used therein.
1. A method of making a medical implant comprising antioxidant-blended non-oxidizing polymeric material containing detectable residual free radicals, wherein the method comprising the steps of:
(i) blending polymeric material with an antioxidant in the absence of a supercritical fluid, thereby forming an antioxidant-blended polymeric material;
(ii) consolidating the antioxidant-blended polymeric blend;
(iii) irradiating the consolidated polymeric blend material with ionizing radiation at an elevated temperature that is above room temperature and below the melting point of the polymeric material, thereby forming the antioxidant-blended cross-linked, and non-oxidizing polymeric material containing detectable residual free radicals, wherein the consolidated polymeric blend material is irradiated with a dose ranging from about 25 kGy to about 1000 kGy; and
(iv) machining the consolidated cross-linked polymeric blend material, thereby forming the medical implant.
2. The method of claim 1 , wherein the consolidated polymeric blend material is irradiated by electron-beam radiation with a dose of between about 50 and about 1000 kGy.
3. The method of claim 1 , wherein the polymeric material is cross-linked by electron-beam radiation at a dose rate of about 2 to about 3,000 Mrad/minute.
4. The method of claim 1 , wherein the polymeric material is ultrahigh molecular weight polyethylene.
5. The method of claim 1 , wherein the antioxidant is α-tocopherol or vitamin E.