[1] Hosseinkhani H, Hosseinkhani M, Gabrielson NP, et al. DNA nanoparticles encapsulated in 3D tissue-engineered scaffolds enhance osteogenic differentiation of mesenchymal stem cells [J]. Biomed Mater ResA, 2007, 85A(1)∶47-60 [2] Hosseinkhani H, Inatsugu Y, Hiraoka Y, et al. Impregnation of plasmid DNA into three-dimensional scaffolds and medium perfusion enhance in vitro DNA expression of mesenchymal stem cells [J]. Tissue Eng,2005,11(9-10)∶1459-1475 [3] Gugala Z, Davis AR, Fouletier-Dilling CM, et al. Adenovirus BMP2-induced osteogenesis in combination with collagen carriers [J]. Biomaterials,2012,28(30)∶4469-4479 [4] 范丽,卢岩,林慧平,等.骨形成蛋白-2转染MG-63细胞增加其对壳聚糖膜的粘附[J].材料科学与工程学报,2011,29(6)∶911-915 [5] Chao Zou, Wenjian Weng, Xuliang Deng, et al. Preparation and characterization of porous β-tricalcium phosphaye/collagen composites with an integrated structure [J]. Biomaterials,2005,26∶5276-5284 [6] 马武秀,程迅生.自体骨移植修复骨缺损的研究进展[J].中国骨与关节损伤杂志.2011,26(6)∶574-576 [7] Silva GA, Ducheyne P, Reis RL. Materials in particulate form for tissue engineering.1.Basic concepts [J]. J Tissue Eng Regen Med,2007,1(1)∶4-24 [8] Kaige Lu, Deliang Zeng, Yilin Zhang, et al. BMP-2 Gene Modified Canine bMSCs Promote Ectopic Bone Formation Mediated by a Nonviral PEI Derivative [J]. Ann Biomed Eng.2011,39(6)∶1829-1839 [9] 邬薇薇,胡杨,何惠宇,等.BMP-2、bFGF基因转染的大鼠骨髓干细胞与牙胚细胞在体外混合培养对成牙基因的影响[J].口腔医学研究,2015,31(1)∶18-21 [10] Zeng D, Xia L, Zhang W, et al. Maxillary Sinus Floor Elevation Using a Tissue-Engineered Bone with Calcium-Magnesium Phosphate Cement and Bone Marrow Stromal Cells in Rabbits [J]. Tissue Eng Part A,2012,18(7-8)∶870-881 [11] 王晓娜,赵静辉,储顺礼,等.骨替代材料在口腔种植领域中的成骨效果[J].国际口腔医学杂志,2016,43(1)∶113-117 [12] 梁戈,郑昌琼,周大利,等.多孔β-TCP/rhBMP-2人工骨在小鼠体内的诱导成骨和早期降解行为的研究[J].海军总医院学报,2003,16(3)∶140-142 [13] Bozidar M, Hari S, Michael D, et al.β-tricalcium phosphate-type I collagen cones with or without a barrier membrane in hume extraction socket healing-clinical,histologic,histomorphometric,and immunohistochemical evaluation [J]. Clin Oral Invest, 2012, 16(10)∶581-590 [14] 官丙刚,杨迪生,严伟琪,等.纳米相复合材料β-TCP/胶原的细胞相容性研究[J].中国生物医学工程学报,2007,26(1)∶105-109 [15] 李娟,郑闱颖,卢岩,等.骨形成蛋白-2基因修饰的β-TCP/胶原复合材料修复颅骨缺损[J].材料科学与工程学报,2013,31(2)∶248-252 |