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生物可降解性组织工程支架材料的制备 被引量:1

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摘要 多孔性生物可降解支架材料的选择与制备是组织工程技术成功应用的关键所在。本文综述了制备多孔性生物可降解支架的几种不同方法 :纤维编织法、溶媒浇铸 /粒子滤取法、熔融成型法、气体发泡法和相分离 /乳化法 ;
作者 王彦平
出处 《甘肃科技》 2003年第12期30-31,共2页 Gansu Science and Technology
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  • 1Langer R,Vacanti J. Tissue engineering[J]. Science, 1993,260:920.
  • 2Lanza RP, Langer R, Vacanti J. Principles of Tissue Engineering[M]. Vol 2.New York:Academic Press. 2000:251-252.
  • 3Singh L, Kumar V, Ratner BD. Generation of porous microcellular 85/15 poly (DL-lactide-co-glycolide) foams for biomedical applications[J]. Biomaterials ,2004, 25(13) :2611.
  • 4Lu LC, Peter SJ, Lyman MD, et al. In vitro degradation of porous poly( L-lactic acid) foams [J]. Biomaterials, 2000,21 (15): 1595.
  • 5Lu LC, Peter SJ, Lyman MD, et al. In vitro and in vivo degradation of porous poly( DL-lactic-co-glycolic acid) foams[J]. Biomaterials,2000,21(18): 1837.
  • 6Thomson RC, Mikos AG, Beahm E, et al. Guided tissue fabrication from periosteum using preformed biodegradable polymer scaffolds [J].Biomaterials, 1999,20(21 ): 2007.
  • 7Liao CJ, Chen CF, Chen JH, et al. Fabrication of porous biodegradable polymer scaffolds using a solvent merging/particulate leaching method[J]. J Biomed Mater Res,2002,59(4) :676.
  • 8Hu YH, Grainger DW, Winn SR, et al. Fabrication of poly(α-hydroxy acid) foam scaffolds using multiple solvent systems [ J ]. J Biomed Mater Res ,2002,59(3) :563.
  • 9Nam YS,Park TG. Porous biodegradable polymeric scaffolds prepared by thermally induced phase separation [ J ]. J Biomed Mater Res,1999,47:8.
  • 10Whang K, Thomas CH, Healy KE. A novel method to fabricate biodegradable scaffolds[J]. Polymer, 1995,6:837.

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同被引文献26

  • 1Langer R,Vacanti J. Tissue engineering[J]. Science, 1993,260:920.
  • 2Lanza RP, Langer R, Vacanti J. Principles of Tissue Engineering[M]. Vol 2.New York:Academic Press. 2000:251-252.
  • 3Singh L, Kumar V, Ratner BD. Generation of porous microcellular 85/15 poly (DL-lactide-co-glycolide) foams for biomedical applications[J]. Biomaterials ,2004, 25(13) :2611.
  • 4Lu LC, Peter SJ, Lyman MD, et al. In vitro degradation of porous poly( L-lactic acid) foams [J]. Biomaterials, 2000,21 (15): 1595.
  • 5Lu LC, Peter SJ, Lyman MD, et al. In vitro and in vivo degradation of porous poly( DL-lactic-co-glycolic acid) foams[J]. Biomaterials,2000,21(18): 1837.
  • 6Thomson RC, Mikos AG, Beahm E, et al. Guided tissue fabrication from periosteum using preformed biodegradable polymer scaffolds [J].Biomaterials, 1999,20(21 ): 2007.
  • 7Liao CJ, Chen CF, Chen JH, et al. Fabrication of porous biodegradable polymer scaffolds using a solvent merging/particulate leaching method[J]. J Biomed Mater Res,2002,59(4) :676.
  • 8Hu YH, Grainger DW, Winn SR, et al. Fabrication of poly(α-hydroxy acid) foam scaffolds using multiple solvent systems [ J ]. J Biomed Mater Res ,2002,59(3) :563.
  • 9Nam YS,Park TG. Porous biodegradable polymeric scaffolds prepared by thermally induced phase separation [ J ]. J Biomed Mater Res,1999,47:8.
  • 10Whang K, Thomas CH, Healy KE. A novel method to fabricate biodegradable scaffolds[J]. Polymer, 1995,6:837.

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