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Octyl-a-cyanoacrylate adhesive in the treatment of tibial transverse fracture in rabbits 被引量:3

Octyl-a-cyanoacrylate adhesive in the treatment of tibial transverse fracture in rabbits
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摘要 Objective: To observe the effect of octyl-a-cyanoacrylate upon bone healing and its degradation in vitro after middle tibial transverse fracture in rabbits, and to establish treatment of higher efficacy with the application of octyl-a-cyanoacrylate.Methods: Middle tibial transverse fracture model of New Zealand rabbits was established. In the experimental group, internal fixation with 2 mm Kirschner wires was performed and the broken ends were fixed with octyl-a-cyanoacrylate. In the control group, only internal fixation with 2 mm Kirschner wires was conducted. Animals were killed at preset time intervals of 2, 4, 6, 8, 10 and 12 weeks postoperatively and samples were harvested.Results: Two weeks after operation, clear fracture lines were observed in both the experimental and the control groups. Fibrous soft tissue connection was noted between the broken ends and there was soft tissue adhesion around the fracture site. There was no callus formation and the broken ends were surrounded by adhesive soft tissues. Obvious external callus formation was confirmed at 8 weeks after operation in both groups with partial disappearance of fracture lines. Ten and twelve weeks after the operation, fracture lines disappeared completely and there was obvious external callus formation and bone union. In the fourth week, fibrous cells and chondrocytes were found to grow into the colloid and surround it at the 6th week. The adhesive material was degraded and gradually absorbed at the 8th week. Chondrification was observed.Conclusions: Two weeks after fixation for tibial fracture in rabbits, octyl-a-cyanoacrylate begins in vivo degradation. Chondrocytes and fibrocytes gradually grow into the degradation area and surround the adhesive material, which broke into pieces at 8 weeks. Complete degradation and disappearance of the adhesive material is present between 10 and12 weeks. No barrier effect hampering fracture healing is noted. Objective: To observe the effect of octyl-a-cyanoacrylate upon bone healingand its degradation in vitro after middle tibial transverse fracture in rabbits, and to establishtreatment of higher efficacy with the application of octyl-a-cyanoacrylate. Methods: Middle tibialtransverse fracture model of New Zealand rabbits was established. In the experimental group,internal fixation with 2 mm Kirschner wires was performed and the broken ends were fixed withoctyl-a-cyanoacrylate. In the control group, only internal fixation with 2 mm Kirschner wires wasconducted. Animals were killed at preset time intervals of 2, 4, 6, 8, 10 and 12 weekspostoperatively and samples were harvested. Results: Two weeks after operation, clear fracture lineswere observed in both the experimental and the control groups. Fibrous soft tissue connection wasnoted between the broken ends and there was soft tissue adhesion around the fracture site. There wasno callus formation and the broken ends were surrounded by adhesive soft tissues. Obvious externalcallus formation was confirmed at 8 weeks after operation in both groups with partial disappearanceof fracture lines. Ten and twelve weeks after the operation, fracture lines disappeared completelyand there was obvious external callus formation and bone union. In the fourth week, fibrous cellsand chondrocytes were found to grow into the colloid and surround it at the 6th week. The adhesivematerial was degraded and gradually absorbed at the 8th week. Chondrification was observed.Conclusions: Two weeks after fixation for tibial fracture in rabbits, octyl-a-cyanoacrylate beginsin vivo degradation. Chondrocytes and fibrocytes gradually grow into the degradation area andsurround the adhesive material, which broke into pieces at 8 weeks. Complete degradation anddisappearance of the adhesive material is present between 10 and 12 weeks. No barrier effecthampering fracture healing is noted.
出处 《Chinese Journal of Traumatology》 CAS 2005年第4期240-244,共5页 中华创伤杂志(英文版)
基金 SupportedbyFundofSichuanTechnologyProgram(No.1007).
关键词 辛基-a-氰基丙烯酸盐粘合剂 胫骨横向骨折 动物实验 octyl-a-cyanoacrylate fractures fracture healing degradation
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