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壳聚糖膜在大鼠脊髓组织中的降解及其生物相容性 被引量:1

Biodegradation and biocompatibility of chitosan film in rat spinal cord
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摘要 背景:以往关于壳聚糖的生物相容性研究多局限于神经细胞的体外实验,而壳聚糖在神经系统体内尤其是在脊髓局部的相容性尚不清楚。目的:观察壳聚糖在大鼠脊髓组织内的降解率及生物相容性。设计、时间及地点:随机对照动物实验,于2005-08/2006-07在武汉协和医院泌尿外科实验室完成实验。材料:健康成年SD大白鼠36只,随机分为壳聚糖组和对照组,每组18只。方法:在壳聚糖组和对照组大鼠脊髓分别植入壳聚糖膜和医用丝线。主要观察指标:于术后1,2,4周测定壳聚糖膜质量,计算降解率;观察2组大鼠植入区局部炎细胞数量变化,评估生物相容性。结果:壳聚糖可在大鼠体内逐渐降解,术后1,2,4周降解率分别为14.8%,18.9%,25.0%。壳聚糖植入局部炎细胞计数高于对照组(P<0.05),但同属异物炎症反应,并无明显的全身不良反应。结论:壳聚糖膜易于降解并与脊髓组织有良好的生物相容性,是一种可应用于脊髓损伤修复的生物材料。 BACKGROUND: The past studies on biocompatibility of chitosan mainly focus on in vitro experiment, it is unclear if chitosan has good biocompatibility in vivo, especially that in local area of the spinal cord. OBJECTIVE: To study the biodegradation and biocompatibility of chitosan film in the spinal cord. DESIGN, TIME AND SETTING: The randomized controlled animal experiment was carded out in the Urology Laboratory of Wuhan Union Hospital from August 2005 to July 2006. MATERIAL: Thirty-six adult Sprague-Dawley rats were randomly divided into experimental group and control group, eighteen rats in each goup. METHODS: Chitosan film and silk suture were respectively transplanted into spinal cord of rats in the two groups. MAIN OUTCOME MEASURES: At 1, 2, 4 weeks after surgery, the weight of chitosan film was measured to calculate the rate of degradation, and biocompatibility was assessed by observing local inflammatory reaction. RESULTS: The biodegradation rate of chitosan film were 14.8%, 18.9%, 25.0% after the transplantation at 1, 2 and 4 weeks, respectively. The amount of inflammatory cells of local tissues in the experimental group were significantly higher than those in the control group (P 〈 0.05), but there were no obvious systemic reaction. CONCLUSION: Chitosan films can be easily biodegraded and has good biocompatibility in the spinal cord, which can be used in repairing spinal cord injury.
作者 李伟 肖传国
出处 《中国组织工程研究与临床康复》 CAS CSCD 北大核心 2008年第36期7131-7134,共4页 Journal of Clinical Rehabilitative Tissue Engineering Research
基金 国家重点基础研究发展计划(“九七三”计划)资助项目(2003CB515300)~~
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参考文献16

  • 1Khor E, Lim LY. Implantable applications of chitin and chitosan. Biomaterials. 2003;24(1 3):2339-2349
  • 2Kim BS, Kim CS, Lee KM.. The intracellular uptake ability of chitosan-coated Poly (D.L-lactideco-glycolide) nanoparticles. Arch Pharm Res 2008;31(8):1050-1054
  • 3Sapra B, Jain S, Tiwary AK. Transdermal delivery of carvedilol containing glycyrrhizin and chitosan as permeation enhancers: biochemical, biophysical, microscopic and pharmacodynamic evaluation. Drug Deliv 2008;15(7):443-454
  • 4Amado S, Simms MJ, Armada da Silva PA et al, Use of hybrid chitosan membranes and N IE-I 15 cells for promoting nerve regeneration in an axonotmesis rat model. Biomaterials 2008;29(33):4409-4419
  • 5Nomura H, Baladie B, Katayama Y, et al. Delayed implantation of intramedullary chitosan channels containing nerve grafts promotes extensive axonal regeneration after spinal cord injury. Neurosurgery 2008;63(1):127-141
  • 6程映华,梁晶,王晓冬,张沛云,郑祖根,顾晓松.壳聚糖神经干细胞复合物修复大鼠完全性脊髓损伤的组织学观察[J].中华实验外科杂志,2004,21(1):26-27. 被引量:21
  • 7李剑,姜保国,张殿英,张宏波,党育,尚永刚,杨明.生物套管小间隙桥接修复周围神经的实验研究[J].中华手外科杂志,2003,19(2):118-120. 被引量:27
  • 8程映华,梁晶,王晓冬,张沛云,郑祖根,顾晓松.壳聚糖与神经干细胞生物相容性的研究[J].苏州大学学报(医学版),2002,22(5):506-509. 被引量:8
  • 9Zhang P, Xu H, Zhang D et al. The biocompatibility research of functional Schwann cells induced from bone mesenchymal cells with chitosan conduit membrane,Artif Cells Blood Substit Immobil Biotechnol 2006;34(1 ):89-97
  • 10中华人民共和国科学技术部.关于善待实验动物的指导性意见.2006-09-30[08-08-26].http://www.most.gov.cn/zfwj/zfwj2006/200512R20051214_54389.htm.

二级参考文献9

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同被引文献24

  • 1中华人民共和国科学技术部.关于善待实验动物的指导性意见.2006.09-30
  • 2Khor E, Lira LY. Implantable applications of chitin and chitosan. Biomaterials. 2003;24(13):2339-2349.
  • 3Rafat M, Li F, Fagerholm P, et aI.PEG-stabilized carbodiimide crosslinked collagen-chitosan hydrogels for corneal tissue engineering. Biomaterials. 2008;29(29):3960-3972.
  • 4Burkatovskaya M, Castano AP, Demidova-Rice TN, et al.Effect of chitosan acetate bandage on wound healing in infected and noninfected wounds in mice. Wound Repair Regen. 2008;16(3):425-431.
  • 5Luppi B,Bigucci F, Mercolini L, et aI.Novel mucoadhesive nasal inserts based on chitosan/hyaluronate polyelectrolyte complexes for peptide and protein delivery. J Pharm Pharmacol. 2009;61(2):151-157.
  • 6Li F, wang L, Jin XM, et aI.The immunologic effect of TGF-betal chitosan nanoparticle plasmids on ovalbumin-induced allergic BALB/c mice. Immunobiology. 2009;214(2):87-99.
  • 7Tin S, Sakharkar KR, Lim CS, et al.Activity of Chitosans in combination with antibiotics in Pseudomonas aeruginosa. Int J Biol Sci. 2009;5(2):153-160.
  • 8Li X, Yang Z, Zhang A, et aI.Repair of thoracic spinal cord injury by chitosan tube implantation in adult rats. Biomaterials. 2009;30(6):1121-1132.
  • 9Amado S, Simoes M J, Armada da Silva PA, et aI.Use of hybrid chitosan membranes and N1 E-115 cells for promoting nerve regeneration in an axonotmesis rat model. Biomaterials. 2008;29(33):4409-4419.
  • 10Yi X,Jin GH,Tian ML,et aI.Shenjing Jiepouxue Zazhi. 2007;23(5):506-510.

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