Methylprednisolone microsphere sustained-release membrane inhibits scar formation at the site of peripheral nerve lesion

Neural Regen Res. 2016 May;11(5):835-41. doi: 10.4103/1673-5374.182713.

Abstract

Corticosteroids are widely used for the treatment of acute central nervous system injury. However, their bioactivity is limited by their short half-life. Sustained release of glucocorticoids can prolong their efficacy and inhibit scar formation at the site of nerve injury. In the present study, we wrapped the anastomotic ends of the rat sciatic nerve with a methylprednisolone sustained-release membrane. Compared with methylprednisone alone or methylprednisone microspheres, the methylprednisolone microsphere sustained-release membrane reduced tissue adhesion and inhibited scar tissue formation at the site of anastomosis. It also increased sciatic nerve function index and the thickness of the myelin sheath. Our findings show that the methylprednisolone microsphere sustained-release membrane effectively inhibits scar formation at the site of anastomosis of the peripheral nerve, thereby promoting nerve regeneration.

Keywords: biological agents; methylprenisolone; nanometer; nerve regeneration; neural regeneration; peripheral nerve; peripheral nerve injury; scar; sustained-release membrane.