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电纺羧甲基壳聚糖复合rhBMP-2生长因子纤维膜的制备
引用本文:唐涛,谢彤,齐宏旭,胡平. 电纺羧甲基壳聚糖复合rhBMP-2生长因子纤维膜的制备[J]. 中华老年口腔医学杂志, 2010, 8(4): 243-246
作者姓名:唐涛  谢彤  齐宏旭  胡平
作者单位:1. 清华大学医院口腔科,北京,100084
2. 清华大学化工系,北京,100084
基金项目:清华-裕元医学科学研究基金项目 
摘    要:目的:利用静电纺丝技术以羧甲基壳聚糖复合生长因子(rhBMP-2)缓释微球制备牙周组织再生引导膜。方法:将载有生长因子的钙藻酸盐微球与主体羟基磷灰石(CCS/nHA)羧甲基壳聚糖混合利用静电纺丝技术制得具有"串珠"丝状结构的复合纤维膜,并观察微球及纤维膜的体外释药过程。结果:电纺技术制备出具有一定力学强度的缓释微球的纤维膜。体外释药在50hr时纤维膜释放速率78%,较微球的释放速率96%缓慢,之后各自接近平缓释放。结论:用静电纺丝技术平台制备缓释再生引导膜是可行的,这一技术为牙周组织再生术的完善和发展提供新的研究空间,其生物学性能尚需进一步研究。

关 键 词:静电纺丝  缓释  微球  生长因子(rhBMP-2)  羧甲基壳聚糖  羟基磷灰石(CCS/nHA)  引导牙周组织再生

Preparation of Carboxymethy Chitosan Compound with growth factor based Fibers Membrane with Emlectrospinning
TANG Tao,XIE Tong,QI Hong-xu,HU Ping. Preparation of Carboxymethy Chitosan Compound with growth factor based Fibers Membrane with Emlectrospinning[J]. Chinese JOurnal of Geriatric Dentistry, 2010, 8(4): 243-246
Authors:TANG Tao  XIE Tong  QI Hong-xu  HU Ping
Affiliation:.(Tsinghua University hospital,Beijing 100084,China)
Abstract:Objective:Based on fibers electrospinning technology,we prepared periodontal tissue regeneration membrane with microspheres from which bone morphogenetic protein growth factor (rhBMP2) are sustaining released.Methods:By mixing the calcium alginate microspheres carrierd of rhBMP-2 in with Carboxymethyl chitosan and CCS /nHA,and making use of electrospinning technique,we made fibericated membrane of beads-in-fiber structure.And then,we observed the medication releasing process from both microspheres and membrane.Results:Making use of this new method,a new periodontal tissue regeneration membrane with higher mechanical strength can be prepared.It is found that medication releasing growth factor released more slowly (with a rate of 78%) than which from microspheres (which rate is 96%).This shows its postponed releasing effect.Conclusion:It is possible to prepare periodontal tissue regeneration membrane by using electrospinning technology.This study provided a new research space for periodontal tissue regeneration.However,its biological properties should be studied further.
Keywords:fibers emlectrospinning  sustained release  microspheres  bone morphogenetic proteins(rhBMP-2)  CCS/nHA  Carboxymethylchitosan  guided tissue regeneration  GTR
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