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Novel PLA/Chitosan Composite MaterialsPrepared by SCF-CO_(2) Technique

Novel PLA/Chitosan Composite MaterialsPrepared by SCF-CO_2 Technique
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摘要 Because of the incomparable merits (nontoxicity, non-remainder, fast transfer mass) of supercritical carbon dioxide fluid technique(SC-CO2), it was used to developed a series of novel biodegradable tissue engineering scaffold materials in this research. The novel PLA/chitosan composite materials could be molded to different shapes, and the porosity of the materials were over 200 lam and connected. Chondrocyte cultivation, subcutaneous and intramuscular implantation were mainly discussed this paper. The results showed that the cells could well adhere, grow and multiplicate on the surface of the materials, which indicated good biocompatibility of the composite materials. The plantation test revealed that the PLA materials had already dismissed 2 month late in the body, while the composite materials could still keep certain strength and shape, and the most important things is the response of the tissue toward the implanted PLA/chitosan composite materials was mild and had far less inflammation than PLA materials. 8 to 16 weeks later, fiber membrane was stable; degradation of the materials was seen clear and tissue had already spread into it. Because of the incomparable merits (nontoxicity, non-remainder, fast transfer mass) of supercritical carbon dioxide fluid technique(SC-CO2), it was used to developed a series of novel biodegradable tissue engineering scaffold materials in this research. The novel PLA/chitosan composite materials could be molded to different shapes, and the porosity of the materials were over 200 μm and connected.Chondrocyte cultivation, subcutaneous and intramuscular implantation were mainly discussed this paper. The results showed that the cells could well adhere, grow and multiplicate on the surface of the materials, which indicated good biocompatibility of the composite materials. The plantation test revealed that the PLA materials had already dismissed 2 month late in the body, while the composite materials could still keep certain strength and shape, and the most important things is the response of the tissue toward the implanted PLA/chitosan composite materials was mild and had far less inflammation than PLA materials. 8 to 16 weeks later, fiber membrane was stable; degradation of the materials was seen clear and tissue had already spread into it.
出处 《Chinese Journal of Biomedical Engineering(English Edition)》 2005年第2期85-92,共8页 中国生物医学工程学报(英文版)
基金 This work was supported by the national key project“973”program of China.(No.G1999054306) “863”program of ministry of education in China(2OOlAA625050) Guangdong Science and technology bureau(No.A302020104).
关键词 Supercritical fluid technique PLA CHITOSAN IMPLANTATION 壳聚糖复合物 SCF-CO2技术 二氧化碳流动技术 生物材料 临床应用
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参考文献6

  • 1Goodwin CJ,Braden M,Downes S,et al.Release of bioactive human growth hormone from a biodegradable material : Poly(-caprolactone)[].Journal of Biomechanics.1998
  • 2Zhang YQ.Applications of natural silk protein sericin in biomaterials[].Biotechnology Advances.2002
  • 3Saldanha V,Grande DA.Extracellular matrix protein gene expression of bovine chondrocytes cutured on resorbable scaffolds[].Biomaterials.2000
  • 4Chuang WY,Young TH,Yao CH.Properties of the poly (vinyl alcohol ) chitosan blend and its effect on the culture of fibroblast in vitro[].Biomaterials.1999
  • 5Chu FL,Lu A,Liszkowski M,et al.Enhanced growth of animal and human endothelial cells on biodegradable polymers[].Biothimica et Biophysica Acta.1999
  • 6Yoshiaki I,Toshie T,Akitada N.Effect of heat treatment of poly(L-lactide) on the response of osteoblast -like Mc3T3 cells[].Biomaterials.2000

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