Comparison of the regeneration induced by acellular nerve allografts processed with or without chondroitinase in a rat model

  • Im, Jin-Hyung
  • Lee, Joo-Yup
  • Lee, Saerom
  • Lee, Myung-Gyu
  • Chung, Yang-Guk
  • 외 1명
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초록

There have been various studies about the acellular nerve allograft (ANA) as the alternative of autologous nerve graft in the treatment of peripheral nerve defects. As well as the decellularization process methods of ANA, the various enhancement methods of regeneration of the grafted ANA were investigated. The chondroitin sulfate proteoglycans (CSPGs) inhibit the action of laminin which is important for nerve regeneration in the extracellular matrix of nerve. Chondroitinase ABC (ChABC) has been reported that it enhances the nerve regeneration by degradation of CSPGs. The present study compared the regeneration of ANA between the processed without ChABC group and the processed with ChABC group in a rat sciatic nerve 15mm gap model. At 12weeks postoperatively, there was not a significant difference in the histomorphometric analysis. In the functional analysis, there were no significant differences in maximum isometric tetanic force, wet muscle weight of tibialis anterior. The processed without ChABC group had better result in ankle contracture angle significantly. In conclusion, there were no significant differences in the regeneration of ANA between the processed without ChABC group and the processed with ChABC group.

키워드

Acellular nerve allograftChondroitin sulfate proteoglycansChondroitinasePeripheral nerve regenerationProcessed nerve allograftRat modelCELL BASAL LAMINASPINAL-CORDSCIATIC-NERVEEXTRACELLULAR-MATRIXAXONAL REGENERATIONPERIPHERAL-NERVESFUNCTIONAL INDEXINCREASESREPAIRRECONSTRUCTION
제목
Comparison of the regeneration induced by acellular nerve allografts processed with or without chondroitinase in a rat model
저자
Im, Jin-HyungLee, Joo-YupLee, SaeromLee, Myung-GyuChung, Yang-GukKim, Ki-Won
DOI
10.1007/s10561-019-09770-x
발행일
2019-06
유형
Article
저널명
Cell and Tissue Banking
20
2
페이지
307 ~ 319