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Viability of nerve grafts preseved in different storage medium
Carone, Antonio Luiz; Scabora, José Eduardo; Barros, Bruno Raposo; Esquisatto, Marcelo Augusto Marretto; Figueiredo, José Francisco; Langone, Francesco.
Affiliation
  • Carone, Antonio Luiz; University of Vale do Sapucaí. Faculty of Medicine. Department of Neurosurgery. Pouso Alegre. BR
  • Scabora, José Eduardo; Hermínio Ometto University Center. Department of Anatomy. Araras. BR
  • Barros, Bruno Raposo; State University of Campinas. Institute of Biology. Department of Physiology and Biophysics. Campinas. BR
  • Esquisatto, Marcelo Augusto Marretto; Hermínio Ometto University Center. Department of Anatomy. Araras. BR
  • Figueiredo, José Francisco; State University of Campinas. Faculty of Medical Sciences. Nucleus of Medicine and Experimental Surgery. Campinas. BR
  • Langone, Francesco; State University of Campinas. Institute of Biology. Department of Physiology and Biophysics. Campinas. BR
Braz. j. morphol. sci ; 24(1): 39-46, jan.-mar. 2007. ilus, tab
Article in En | LILACS | ID: lil-497610
Responsible library: BR734.1
ABSTRACT
We compared the structural features of nerve segments stored in two different solutions previous and after autologous transplantation. Male Wistar rats were divided into groups to obtain normal tibial nerves, freshly transplanted nerves, and nerves stored in Wisconsin/Belzer or Collins solution for 24 or 72 h at 4ºC and transplanted. Stored and transplanted segments were processed for morphologic and morphometric analysis. The cross-sections of segments stored in Wisconsin/Belzer and Collins solution presented aspects similar to that of normal nerves. The density of large-caliber myelinated axons was higher in grafts stored in Wisconsin/Belzer solution than in those preserved in Collins solution. But the density of myelinated axons regenerated through these grafts was around 80% to that registered in the fresh and Wisconsin/Belzer preserved grafts. Moreover, no significant differences in the morphometric parameters were observed between groups. Our data confirm the efficacy of Wisconsin/Belzer to nerve graft preservation and stimulate more detailed physiological, biochemical and molecular studies to rationalize the employment of less expensive and handful storage solutions for short term preservation of peripheral nerve grafts.
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Index: LILACS Main subject: Peripheral Nerves / Regeneration / Tibial Nerve / Transplantation, Autologous / Fibrin Tissue Adhesive Limits: Animals Language: En Journal: Braz. j. morphol. sci Journal subject: ANATOMIA Year: 2007 Type: Article
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Index: LILACS Main subject: Peripheral Nerves / Regeneration / Tibial Nerve / Transplantation, Autologous / Fibrin Tissue Adhesive Limits: Animals Language: En Journal: Braz. j. morphol. sci Journal subject: ANATOMIA Year: 2007 Type: Article