## Abstract Previous studies have demonstrated the potential of growth factors in peripheral nerve regeneration. A method was developed for sustained delivery of nerve growth factor (NGF) for nerve repair with acellular nerve grafts to augment peripheral nerve regeneration. NGFβcontaining polymeric
Peripheral nerve regeneration using acellular nerve grafts
β Scribed by Kim, Byung-Soo ;Yoo, James J. ;Atala, Anthony
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 633 KB
- Volume
- 68A
- Category
- Article
- ISSN
- 0021-9304
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β¦ Synopsis
Abstract
Long gap peripheral nerve injuries usually require a graft to facilitate axonal regeneration into the distal nerve stump. The use of autografts is often limited because of graft availability and donorβsite morbidity. We investigated whether acellular nerve allografts would provide an appropriate channel for the promotion and induction of sciatic nerve regeneration in rats. Axons sprouted from the proximal portion and reached the distal portion in the 1 cmβlong grafts by 1 month. The number of axons in the regenerated nerves was similar to that of normal nerves at 1 month. Loading the grafts with Ξ²NGF and VEGF increased the number and mean diameter of axons and neovascularization in the regenerated nerves at 1 month. The motor conduction velocity increased over time and reached 63 Β± 10% of that of normal nerves at 6 months. The nerve injuries treated with the acellular grafts had a significant improvement in motor, nociception, and proprioception function compared to untreated nerves. The results from this study suggest that acellular nerve allografts may be a useful biomaterial for functional peripheral nerve regeneration. Β© 2003 Wiley Periodicals, Inc. J Biomed Mater Res 68A: 201β209, 2004
π SIMILAR VOLUMES
The bridging of nerve gaps is still one of the major problems in peripheral nerve surgery. The present experiment describes our attempt to engineer different biologic nerve grafts in a rat sciatic nerve model: cultured isogenic Schwann cells were implanted into 2-cm autologous acellular nerve grafts