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聚乳酸-壳聚糖纤维/羟基磷灰石-硅酸钙复合支架材料的细胞相容性 被引量:10

Compatibility of osteoblasts on the polylactic acid-chitosan fiber/hydroxyapatite-calcium silicate composite scaffold material
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摘要 背景:实践证明,有机和无机材料单独应用都不是理想的支架材料。聚乳酸具有良好的生物相容性、生物降解性和生物吸收性,聚乳酸类复合材料将成为21世纪最重要的生物复合材料之一。目的:观察复合支架材料聚乳酸-壳聚糖纤维/羟基磷灰石-硅酸钙对成骨细胞黏附、增殖、分化的影响。方法:取新生24h内Wistar大鼠的颅盖骨,采用改良胶原酶消化法进行成骨细胞原代培养。通过倒置相差显微镜、苏木精-伊红染色、碱性磷酸酶染色、钙结节茜素红染色对获得的细胞进行生物学特性的观察与鉴定。然后将第3代细胞与聚乳酸/壳聚糖纤维、聚乳酸-壳聚糖纤维/硅酸钙、聚乳酸-壳聚糖纤维/羟基磷灰石-硅酸钙三种支架材料体外复合培养。培养3,6,9d后,采用倒置相差显微镜观察材料周边的细胞形态,通过碱性磷酸酶活性测定法和MTT法观察3种支架材料对细胞分化、增殖的影响。结果与结论:三种材料均有利于成骨细胞的黏附、生长、分化、增殖,而聚乳酸-壳聚糖纤维/羟基磷灰石-硅酸钙复合支架材料较聚乳酸/壳聚糖纤维、聚乳酸-壳聚糖纤维/硅酸钙支架材料促进成骨细胞的分化增殖效果更好,证实其生物相容性好,有望成为一种新型的骨组织工程支架材料。 BACKGROUND:Practice has proved that organic material and inorganic materials used alone are not ideal scaffold materials.Polylactic acid(PLA)possessing excellent biocompatibility,degradability and absorbability,PLAs composites will be one of the most important biocomposite in the 21st century.OBJECTIVE:To observe the effects of PLA-chitosan fiber(CF)/hydroxyapatite-calcium silicate(HA-CS)on adhesion,proliferation and differentiation of osteoblasts.METHODS:The rat osteoblasts were obtained from the cranium of newborn Wistar rats within 24 hours,and primarily cultured using modified collagenase digestion.The cells were generated and their biological characteristic was examined by inverted phase-contrast microscope,hematoxylin-eosin staining,alkaline phosphatase(ALP)staining and mineralized nodules staining.Then the cells at passage 3 were co-cultured with PLA-CF,PLA-CF/CS and PLA-CF/HA-CS in vitro.At 3,6 and 9 days of the culture,cell morphology was observed by inverted phase contrast microscopy.In addition,MTT assay and ALP activity test were used to observe the effects of three kinds of materials on cell differentiation and proliferation.RESULTS AND CONCLUSION:Osteoblasts attached on all three scaffold materials can adhere,grow,differentiate and proliferate.The effect of three materials on cell activity was PLA-CF/HA-CSPLA-CF/CSPLA-CF.The composite scaffold PLA-CF/HA-CS has a good compatibility,indicating that the material has a great potential for application in bone tissue engineering.
出处 《中国组织工程研究与临床康复》 CAS CSCD 北大核心 2010年第8期1397-1401,共5页 Journal of Clinical Rehabilitative Tissue Engineering Research
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参考文献15

  • 1Weir MD,Xu HH.Calcium phosphate cement containing resorbable fibers for short-term reinforcement and macroporosity.Biomatedals.2002; 23(1):193-202.
  • 2Xu HH,Simon CG Jr.Fast setting calcium phosphate-chitosan scaffold:mechanical properties andbiocompatibility.Biomaterials.2005; 26 (12):1337-1348.
  • 3Liao S,Wang W,Uo M,et al.A three-layered nano-carbonated hydroxyapatite/collagen/PLGA composite membrane for guided tissue regeneration.Biomaterials.2005;26(36):7564-7571.
  • 4Itoh S,KikuchiM,Koyama Y,et al Development of a novel biomaterial hydroxyapatita/collagen composite for medical use.Biomed Mater& Eng.2005; 15(1-2):29-41.
  • 5Hong ZK,Zhang PB,He CL,et al.Nano-compesite ofpoly(L-lactide)and surface grafted hydroxyapatite:Mechanicalproperties and biocompatibility.Biomatedals.2005; 32:6296-6304.
  • 6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.
  • 7el-Ghannam A,Ducheyne P,Shapiro IM.Formation of surface reaction products on bioactive glass and their effects on the expression of the osteoblastic phenotype and the deposition of mineralized extracellular matdx.Biomatedals.1997; 18(4):295-303.
  • 8涂小丽,刘宏伟,覃昱,李毅.骨髓基质细胞及其在牙周组织工程中的应用[J].口腔医学,2003,23(2):113-114. 被引量:9
  • 9Cadisle EM.Silicon:a possible factor in bone calcification.Science.1970; 167(916):279-280.
  • 10Xynos ID,EdgarAJ,Buttery LD,et al.Gene-expression profiling of human osteoblasts following treatment with the ionic products of Bioglass 45S5 dissolution.J Biomed Mater Res.2001 ;55(2):151-157.

二级参考文献20

  • 1Pitaru S, Naraynan SA, Liu HW, et al. The effect of age on the expression of mineralized tissue progemitors in the periodontium : the effect of the b FGF[J]. Periodont Res,1997,32(1 Pt 2) :179 - 182.
  • 2Van-Dijk LJ, Schakenraad JM, Van-der-Voort HM, et al. Cell- seeding of periodontal ligament fibroblasts. A novel technique to oreate new attachment. A pilot study[J]. Clin Periodontal, 1991,18(3):186- 197.
  • 3Yu JM, Emmons RV, Hanazono Y, et al. Expression of interferon-gamma by stromal cells inhibits murine long-term repopulation hematopoietic stem cell activity[J]. Exp- Hematol, 1999,27 : 895 - 903.
  • 4Jackson KA, Mi T, Goodell MA, et al. Hematopoietic potential of stem cells isolated from murine skeletal muscle[J]. Proc Natl Acad Sci USA,1999,96(25) : 14482 - 14486.
  • 5Vogel G. Harnessing the power of stem cells[J]. Science, 1999,283(5407) : 1432 - 1434.
  • 6Sonchez-Ramos J, Song S, Cardozo-Pelaez F, et al. Adult bone marrow stromal cells differentiate into neural cells in Vitro [J]. Experimentl Neurology, 2000,164(2) :247 - 256.
  • 7Maniatopoulos C, Socdek J, Melcher AH, et al. Bone formation in vitro stromal cells obtained from bone marrow of young adult rats[J] . Cell Tissue Res, 1988,254(2) :317 - 330.
  • 8Kadiyala S, Young RG, Thided MA, et al. Culture expanded canine mesenehymal stem cells possess osteochondrogenie potential in vivo and in vitro[J]. Cell Transplant, 1997,6(2) :125 - 134.
  • 9Wakiiani S, Gogo T, Pineda SJ, et al. Mesenehymal cell-based repair of large full, thickness defects of artioular cartilage [ J ]. Bone Joint Surgery Ameriean,1994,76-A(4) :579 - 592.
  • 10Narayanan SA, Yone mura K. Purification and characterization of a novel growth factor from cementum [ J]. Periodontal Res, 1993, 28(6Pt2) :563 - 565.

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