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Ultrastructural analysis of guided nerve regeneration using progesterone- and pregnenolone-loaded chitosan prostheses

✍ Scribed by M. E. Chávez-Delgado; U. Gomez-Pinedo; A. Feria-Velasco; M. Huerta-Viera; S. Castro Castañeda; F. A. López-Dellamary Toral; A. Parducz; S. Luquín-De Anda; J. Mora-Galindo; J. García-Estrada


Publisher
John Wiley and Sons
Year
2005
Tongue
English
Weight
454 KB
Volume
74B
Category
Article
ISSN
1552-4973

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✦ Synopsis


Abstract

Recently, numerous guide chambers for the treatment of injured nerves made up of different biomaterials have been designed, capable of hosting living cells or carrying neurotrophic or neuroactive substances to be directly released to the injured tissue. In this study, chitosan prostheses containing neurosteroids (progesterone and pregnenolone) were used for bridging a 10‐mm gap in the rabbit facial nerve. Gas chromatography was used to quantify neurosteroid content in the prostheses prior to and after subcutaneous implantation at different periods of up to 60 days. The regeneration of the nerve fibers were evaluated at 15 and 45 days after axotomy by means of ultrastructural morphometric analysis. Different nerve fibers regenerative patterns were seen depending the groups studied and the analyzed stages. At 15 days after axotomy, the newly regenerating tissue revealed Schwann cells holding nonmyelinated nerve fiber bundles in an incipient and organized regenerative pattern. At 45 days, the regenerating tissue showed myelinated nerve fibers of different sizes, shapes, and myelin sheath thickness. Although the regeneration of the nerve fibers under neurosteroid treatment showed statistically significant differences in comparison with vehicle regenerated tissue, progesterone‐loaded chitosan prostheses produced the best guided nerve regeneration response. These findings indicate that chitosan prostheses allowed regeneration of nerve fibers in their lumen, and when containing neurosteroids produced a faster guided nerve regeneration acting as a long‐lasting release delivery vehicle. © 2005 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater