Use Of Absorbable Cyanoacrylate Glue To Repair An Open Cystotomy
Brian Seifman, Mark A. Rubin, Antoinette L. Williams, J. Stuart Wolf
Abstract
Brian Seifman, Mark A. Rubin, Antoinette L. Williams, J. Stuart Wolf
Abstract
PURPOSE: A biodegradable cyanoacrylate glue was tested for its ability to close bladder injuries in an established porcine model. Inflammation and encrustation associated with this glue were examined in a rabbit model. MATERIALS AND METHODS: Four domestic pigs underwent transverse cystotomy, which was closed with absorbable cyanoacrylate glue. Four weeks later the bladder was distended with normal saline to evaluate the repair. A total of 45 rabbits underwent cystotomy, which was closed with polyglactin suture, absorbable cyanoacrylate glue or nonabsorbable 2-octyl cyanoacrylate glue. The bladder was harvested at 4 or 12 weeks to evaluate inflammation, microcalcification and encrustation. RESULTS: All 4 pig bladders tolerated a pressure of 200 mm. Hg 4 weeks after closure. In the rabbit bladders there was no difference in inflammation in the groups at 4 and 12 weeks. The absorbable glue and suture groups had less microcalcification than the 2-octyl cyanoacrylate glue group at 4 and 12 weeks (p = 0.01 and 0.02, respectively). Encrustation was less in the suture and absorbable glue groups than in the 2-octyl cyanoacrylate glue group at 4 and 12 weeks (p = 0.004 and 0.02, respectively). CONCLUSIONS: An experimental absorbable cyanoacrylate glue has the strength to seal a large cystotomy. The inflammatory response to absorbable glue is similar to that to suture at 12 weeks. Absorbable glue does not promote calcification. These properties may make it a suitable material for replacing or augmenting suture in the urinary tract.
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PURPOSE: A biodegradable cyanoacrylate glue was tested for its ability to close bladder injuries in an established porcine model. Inflammation and encrustation associated with this glue were examined in a rabbit model. MATERIALS AND METHODS: Four domestic pigs underwent transverse cystotomy, which was closed with absorbable cyanoacrylate glue. Four weeks later the bladder was distended with normal saline to evaluate the repair. A total of 45 rabbits underwent cystotomy, which was closed with polyglactin suture, absorbable cyanoacrylate glue or nonabsorbable 2-octyl cyanoacrylate glue. The bladder was harvested at 4 or 12 weeks to evaluate inflammation, microcalcification and encrustation. RESULTS: All 4 pig bladders tolerated a pressure of 200 mm. Hg 4 weeks after closure. In the rabbit bladders there was no difference in inflammation in the groups at 4 and 12 weeks. The absorbable glue and suture groups had less microcalcification than the 2-octyl cyanoacrylate glue group at 4 and 12 weeks (p = 0.01 and 0.02, respectively). Encrustation was less in the suture and absorbable glue groups than in the 2-octyl cyanoacrylate glue group at 4 and 12 weeks (p = 0.004 and 0.02, respectively). CONCLUSIONS: An experimental absorbable cyanoacrylate glue has the strength to seal a large cystotomy. The inflammatory response to absorbable glue is similar to that to suture at 12 weeks. Absorbable glue does not promote calcification. These properties may make it a suitable material for replacing or augmenting suture in the urinary tract.
Key concepts: Cyanoacrylate, GLUE, Medicine, Surgery, Fibrous joint, Saline, Absorbable suture, Anesthesia