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具有自塑能力可吸收注射型纳米骨浆
引用本文:罗萍,张阳德,彭健,周健,贾泽明,潘一峰.具有自塑能力可吸收注射型纳米骨浆[J].中国医学工程,2003,11(6):9-17.
作者姓名:罗萍  张阳德  彭健  周健  贾泽明  潘一峰
作者单位:1. 美国伯克利先进生物材料公司
2. 卫生部纳米生物技术重点实验室,湖南,长沙,410008
3. 卫生部肝胆肠外科研究中心,湖南,长沙,410008
4. 中南大学生物医学工程研究院,湖南,长沙,410008
基金项目:SupportedbyNational“863”ProgramofChina (No .2 0 0 2AA3 0 2 2 0 6)
摘    要:目的 为研制一种适应整形外科微创技术发展的一种可注射、可吸收、无产热、原位立即变硬的骨替代材料。方法 通过合成研制一种有缓冲性的黏滞性骨浆 ,在体外研究其生物相容性 ,同时在犬的双侧肱骨缺损模型上研究其自塑形和生物吸收特性。结果 实验证明该种植入材料具有极好的塑形性能 ,在 12~18周内完全吸收 ,临床上治疗骨折的X线显像充实 ,植入物吸收和骨再生存在一个合适的比例。结论 该文阐述了一种生物可吸收可调节硬化时间的注射性骨浆 ,该种骨浆的特性符合多数骨增生过程 ,具有自动充填 ,不产热 ,即便在潮湿和血运丰富的情况下亦有硬化 ,植入成分被设计为产生中性pH值的骨浆 ,能重建骨组织 ,不含有聚合体或可塑剂。大量体外研究表明该材料具有高度生物相容性和非致热源性。

关 键 词:纳米结晶羟基磷灰石(UA)  骨移植  骨替代  骨组织充填  注射型纳米骨浆  人造骨  生物体可吸收性骨水泥

Bioresorbable self-setting injectable nano- bone putty
LUO Ping ,ZHANG Yang-de ,PENG Jian ,ZHOU Jian ,JIA Ze-ming ,PAN Yi-feng.Bioresorbable self-setting injectable nano- bone putty[J].China Medical Engineering,2003,11(6):9-17.
Authors:LUO Ping  ZHANG Yang-de  PENG Jian  ZHOU Jian  JIA Ze-ming  PAN Yi-feng
Institution:LUO Ping 1,ZHANG Yang-de 2,PENG Jian 3,ZHOU Jian 4,JIA Ze-ming 3,PAN Yi-feng 4
Abstract:Objective:To develope an injectable, bioresorbable bone substitute that can immediately harden isothermally in situ for meeting developments in minimally invasive techniques for orthopedic surgery.Methods:A buffered viscous bone putty was produced by synthesis; biocompatibility was studied in vitro, and its characteristics of self-set and bioresorbability were investigated through canine bilateral humerus defect model.Result:The experiments demonstrated excellent remodeling of implanted material with full resorbtion in 12 to 18 weeks. Radiographic observations of healing fractures in clinical evaluation studies have confirmed that implant resorbtion and bone regeneration occur at a clinically acceptable rate. Conclusion:An injectable bioresorbable bone putty with adjustable hardening time is described. The performance characteristics of the putty meet the requirements for numerous bone augmentation procedures. The putty is self-setting, nearly isothermic, and can harden in situ even in wet or bloody environments. The components of the implant are designed to produce a neutral-pH putty that resembles bone hard tissue and do not contain polymers or ptasticizers. Numerous in vitro studies demonstrate that the putty is highly biocompatible and non-pyrogenic.
Keywords:nanocrystalline hydroxyapatite  nanobone graft  bone substitute  bone void filler  injectable nano-bone putty  synthetic bone  bioresorbable  bone cement
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