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Combining Peripheral Nerve Grafting and Matrix Modulation to Repair the Injured Rat Spinal Cord
Published on: November 20, 2009
Regeneration through nerve isografts is independent of nerve geometry
David H Kawamura1, Tessa A Hadlock, Ida K Fox
1Division of Plastic and Reconstructive Surgery, Department of Surgery, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
Investigators have theorized that tortuosity in nerve grafts may adversely affect nerve regeneration. This study investigated the effect of graft configuration and redundancy on regeneration across 2.5-cm rat sciatic nerve isografts. Thirty-two Lewis rats were randomized to four nerve grafting groups defined by gap distance and isograft conformation. In Group 1, grafts were interposed into a 2-cm gap, resulting in mild graft redundancy. In Groups 2 and 3, grafts were tacked in sinusoidal or omega-shaped configurations, respectively, to bridge a 0.5-cm gap. In Group 4, grafts were interposed after 1 cm of native sciatic nerve was resected, resulting in no graft redundancy and an interstump distance of 2.5 cm. At 6 weeks, nerve tissue was harvested; subsequent histomorphometric analysis revealed no significant differences in regeneration between groups. These data suggest that regeneration through isografts is independent of the graft geometry and redundancy.