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甲壳素-聚己内酯复合接骨板的生物吸收率研究

The biological absorb rate of chitin-polycaprolactone bone plate
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摘要 目的 :了解甲壳素 聚己内酯复合可吸收接骨板在动物体内的降解速度及随时间的变化。 方法 :在实验组中 ,将甲壳素 聚己内酯复合可吸收接骨板及螺钉 ,包埋于 2 8只新西兰白兔右胫骨中段 ;在对照组中 ,选择 8只新西兰白兔 ,于相应部位植入金属钢板。实验组动物于手术后 2、4、6、8、12、2 4、36周处死。对照组于术后 4、8周时分别处死。实验组的动物均行生物吸收率 (BAR)测定。 结果 :甲壳素 聚己内酯复合接骨板及螺钉在动物体内可降解。 4周组吸收率为 4 .36 % ,6周组为 7.13% ,12周组为 12 .8% ,36周组为 16 .37%。 结论 :甲壳素 聚己内酯复合接骨板在体内可吸收 ,随时间的延长 ,生物吸收率逐渐增加 。 Objectives:To investigate the degradation speeds of reabsorbable bone plates by animal experiment. Methods:In the test group, the reabsorbable bone plates and bolts, which were made of chitin and polycaprolactone, were embedded in the middle region of the right tibia of rabbit. The follow up times were 2,4,6,8,12,24 and 36 weeks after operation. In the control group, the reabsorbable bone plates and bolts were replaced with metal bone plates and bolts. The follow up times were 4,8 weeks, after which the biologic absorb rate(BAR) were estimated. Results:The chitin and polycaprolactone bone plates and bolts could degrade. The BAR was 4.36% by 4 weeks, 7.13 % by 6 weeks,12.8% by 12 weeks, and 16.37% by 36 weeks. Conclusions:The chitin and ploycaprolactone bone plates and bolts was reabsorbable, the BAR was increased with time, but the relationship was not linear.
出处 《医学研究生学报》 CAS 2002年第5期405-407,共3页 Journal of Medical Postgraduates
关键词 甲壳素-聚己内酯 接骨板 生物吸收率 内固定 可吸收 生物降解 Internal fixation Reabsorbable Biodegradation Chitin polycaprolactone acid Plate
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  • 1Muller RA,Brady JM,Cutright DE.Degradation rates of oral resorbable implants(Polylactates and polyglycolates),Rate modification with changes in PLA/PGA copolymer ratios[J].J Biomed Mater Res,1977,11:711-719.
  • 2Getter L, Cutright DE,Bhaskar SN,et al.A biogradeabel intraosseous appliance in the treatment of mandibular fractures[J].J Oral Surg,1972,30:344-348.
  • 3Rokkanen P,Bstman O,Vainionp S,et al.Biodegradable implants in fracture fixation:Early results of treatment of fractures of the ankle[J].The Lancet,1985,22(6):1422-1424.
  • 4Onishi H,machida Y.Biodegradation and distribution of water-soluble chitosan in mice[J].Biomaterials,1999,20(2):175-182.
  • 5Tomihata K,Ikada Y.In vitro and in vivo degradation of films of chitin and its deacetylated derivatives[J].Biomaterials,1997,18(7):567-575.
  • 6曹宗顺,卢凤琦.药用壳聚糖生物降解膜的研制[J].中国医药工业杂志,1996,27(1):14-16. 被引量:26
  • 7Chung LY,Schmidt RJ,Hamlyn PF,et al.Biocompatibility of potential wound management products:fungal mycelia as a source of chitin/chitosan and their effect on the proliferation of human F1000 fibroblasts in culture[J].J Biomed Mater Res,1994,28(4):463-469.
  • 8Varum KM,Myhr MM,Hjerde RJ,et al.In vitro degradation rates of partially N-acetylated chitosans in human serum[J].Carbohydr Res,1997,299(1-2):99-101.
  • 9Skarja GA,Woodhouse KA.Synthesis and characterization of degradable polyurethane elastomers containing and amino acid-based chain extender[J].J biomater Sci Polym Ed,1998,9(3):271-295.
  • 10孙磊,甘志华,徐莘香,景遐斌.人工合成聚己内酯体内降解的研究[J].中华实验外科杂志,1999,16(2):169-170. 被引量:19

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