期刊文献+

两种钛表面成骨细胞附着静态与动态观察 被引量:1

Static and living observation on osteoblasts on two kinds of titanium surfaces
下载PDF
导出
摘要 目的体外构建钛表面成骨细胞生长模型,对细胞生长情况进行动静态观察。方法将光滑钛片(光滑钛片组)及多孔海绵状钛(海绵钛组)处理为酸碱表面和钙磷沉积表面,接种成骨细胞,12 h、48 h实时观察,48 h后钛表面细胞固定,扫描电镜观察。结果光滑钛片组可见细胞充分延展附着,其中钙磷表面组细胞附着更多,可见细胞下钙磷沉积。海绵钛组可动态观察成骨细胞在海绵钛内立体生长,在钛珠间形成细胞桥。结论本研究构建形成钛表面成骨细胞生长体外模型,可进行钛表面细胞生长的实时观察与分析。 Objective To establish titanium-osteoNast interface model in vitro, observe the osteoblast morphology in static and living. Methods The smooth and the sponge-like titanium were treated to acid-alkali surface and calcium & phosphorus surface respectively. Seeded osteoblasts on titanium surface and observed after 12 h and 48 h. Result On smooth titanium surface, osteoblasts extension adhesion was obsereved. There were more osteoblasts on calcium & phosphorus surface especially and calcium crystal could be seen beneath the cells. In sponge-like titanium group, osteoblasts cuhured in 3-dimensiun and cell bridges could be seen in living. Conclusion Titanium-osteoblast interface model in vitro was successful established. It could be used to observe and analyse osteoblast on titanium in living and static.
出处 《广东牙病防治》 2013年第11期582-585,共4页 Journal of Dental Prevention and Treatment
基金 广东省医学科学技术研究基金(A2010090) 广东省自然科学基金(S2011010001940) ITI Research Grant(8112012) 留学人员科技活动项目
关键词 多孔海绵状钛 成骨细胞 形态 Titanium Sponge-like titanium Osteoblast Murphology
  • 相关文献

参考文献10

二级参考文献50

共引文献21

同被引文献13

  • 1Yang GL, He FM, Yang XF, et al. In vivo evaluation of bone-bonding ability of RGD-coated porous implant using layer-by-layer electrostatic self-assembly[J]. J Biomed Ma- ter Res A, 2009, 90(1): 175-185.
  • 2Schuler M, Owen GR, Hamilton DW, et al. Biomimetic mo- dification of titanium dental implant model surfaces using the RGDSP-peptide sequence: a cell morphology study[J]. Biomaterials, 2006, 27(21):4003 -4015.
  • 3Bagno A, Piovan A, Dettin M, et al. Human osteoblast-like cell adhesion on titanium substrates covalently functionalized with synthetic peptides[J]. Bone, 2007, 40(3):693-699.
  • 4Liu WQ, Martinez JA, Durand J, et al. RGD-mediated ad- hesive interactions are important for peripheral axon out- growth in vivo[J]. Neurobiol Dis, 2009, 34(1): 11-22.
  • 5Ryu J J, Park K, Kim HS, et al. Effects of anodized titanium with Arg-Gly-Asp (RGD) peptide immobilized via chemical grafting or physical adsorption on bone cell adhesion and differentiation[J]. Int J Oral Maxillofac Implants, 2013,28 (4):963-972.
  • 6Park JC, Lee JB, Daculsi G, et al. Novel analysis model for implant osseointegration using ectopic bone formation via the recombinant human bone morphogenetic protein-2/ma- croporous biphasic calcium phosphate block system in rats: a proof-of-concept study[J]. J Periodontal Implant Sci, 2012, 42(4):136-143.
  • 7Choi H, Park N J, Jamiyandorj O, et al. Improvement of osteogenic potential of biphasic calcium phosphate bone substitute coated with two concentrations of expressed re- combinant human bone morphogenetic protein 2[J]. J Pe- riodontal Implant Sci, 2012, 42(4): 119-126.
  • 8Willett N J, Li MT, Uhrig BA, et al. Attenuated human bone morphogenetic protein-2-mediated bone regeneration in a rat model of composite bone and muscle injury[J]. Tissue Eng Part C Methods, 2013, 19(4):316-325.
  • 9Kroese-Deutman HC, van den Dolder J, Spauwen PH, et al. Influence of RGD-loaded titanium implants on bone for- mation in vivo[J]. Tissue Eng, 2005, 11(11/12):1867-1875.
  • 10Chen WC, Ko CL. Roughened titanium surfaces with silane and further RGD peptide modification in vitro[J]. Mater Sci Eng C Mater Biol Appl, 2013, 33(5):2713-2722.

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部