[1] James RA, Schultz RL.Hemidesmosomes and adhe- sion of junctional epithelial cells to metal implants. A prelimi- nary report[J]. J Oral Implantology, 1974, 4(3): 294-298 [2] 曹采方. 牙周病学[M]. 北京: 人民卫生出版社, 2001, 6-8 [3] 钟金晟,等.人牙龈结合上皮细胞和口腔龈上皮细胞生物学特性的比较. 北京大学学报[J], 2015, 47(1) : 32-36 [4] James RA.Hemidesmosomes and adhesion of junc- tional epithelial cells to metal implants. A preliminary report[J]. J Oral Implants, 1974, 4(3) : 294-298 [5] Pendegrass CJ, et al.Intraosseous transcutaneous amputation prostheses versus dental implants: a comparison be- tween keratinocyte and gingival epithelial cell adhesion in vitro. Eur Cell Mater[J].2015, 19(29) : 237-249 [6] Miao X, et al.The response of human osteoblasts, ep- ithelial cells, fibroblasts, macrophages and oral bacteria to nano- structured titanium surfaces: a systematic study. International Journal of Nanomedicine[J], 2017 : 12 1415-1430 [7] 徐淑兰. 影响钛牙种植体-牙龈界面上皮重附着的研究状况. 广东牙病防治, 1996, 4(4) : 57-61 [8] 石红. 牙种植体一牙酿组织界面研究的概况.国外医学口腔医学分册[J], 1993, 20(2) : 65-68 [9] Na A, Xiao hui R, Marco W, et al. Initial attachment, subsequent cell proliferation/viability and gene expression of epi- thelial cells related to attachment and wound healing in response to different titanium[J]. Dent Mater, 2012, 28(12) : 1207-1214 [10] Maristella D C, Pao la T, Claudio F, et al. Spreading of epithelial cells on machined and sandblasted titanium surfac- es : an in vitro study[J]. J Periodontol, 2003, 74(3) : 289-295 [11] Lauer G, Wiedmann M, Otten J, et al.The titaniu sur- face texture effects adherence and growth of human gingival kera- tinocytes and human maxillar osteoblast-like cells in vitro[J]. Biomaterials, 2001, 22(20) : 2799-2809 [12] Baharloo B, Texteor M, Brunette DM.Substratum roughness alters the growth, area, and focal adhesions of epitheli- al cells, and their proximity to titanium surfaces. J Biomed Mater Res A[J], 2005, 74(1): 12-22 [13] Becker W, Becker BE, Prichard JF, et al.Root isola- tion for new attachment procedures. A surgical and suturing method: three case reports. Journal of Periodontology, 1987, 58(12) : 819-826 [14] Guy Sc, McQuade MJ, Scheidt MJ, et al. In vitro at- tachment of human gingival fibroblasts to endosseous implant materials[J]. Journal of Periodontol, 1993, 64(6) : 542-546 [15] Tan XW, Beuerman RW, Shi ZL, et al.In vivo evalu- ation of titanium oxide and hydroxyapatite as an artificial cornea skirt. J Mater Sci Mater Med[J]. 2012, 23(4) : 1063-1072 [16] 孟维艳,赵爽,王鹤龄, 等.不同钛表面形貌对人牙龈成纤维细胞附着及胶原沉积的影响. 实用口腔医学杂志[J], 2017, 33(6) : 772-777 [17] Lima da Costa Valente, Antonio Carlos Shimano, El- cio Marcantonio Junior, et al. Relationship Between the Surface Chemical Composition of Implants and Contact With the Sub- strate. Journal of Oral Implantology[J], 2015, 41(1) : 17-21 [18] 李英. 牙龈结合上皮对铸造钛种植体附着状况的超微结构研究, 第二军医大学学报[J], 2000, 5(21): 460-462 [19] Megumi NAGAI, Tohru HAYAKAWA1, Akira FU- KATSU, et al. In vitro Study of Collagen Coating of Titanium Im- plants for Initial Cell Attachment. Dental Materials Journal[J], 2002, 21(3) : 250-260 [20] 刘建平, 宋应亮, 王忠义等. 三种钦金属表面处理方法对牙周膜成纤维细胞附着和生长的影响. 实用口腔医学杂志[J], 2001, 17(1) : 54-56 [21] 蒋滔, 程祥荣, 夏海斌, 等. 兔骨髓基质细胞在不同纯钛表面的早期粘附. 口腔医学研究[J], 2004, 20(3) : 230-232 [22] Xin-chao Miao, Dong-hui Wang, Lian-yi Xu, et al. The response of human osteoblasts, epithelial cells, fibroblasts, macrophages and oral bacteria to nanostructured titanium surfac- es: a systematic study. International Journal of Nanomedicine[J], 2017, 12 : 1415-1430 [23] Pivodova V, Frankova J, Ulrichova J.Osteoblast and gingival fibroblast markers in dental implant studies. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub[J], 2011, 155(2) : 109-116 [24] 王丽波. 种植体表面特征对软组织附着的研究进展. 现代医药卫生[J], 2016, 2(32) : 405-4061 |