期刊文献+

Fluorescence microscopic analysis of bone osseointegration of strontium-substituted hydroxyapatite implants 被引量:4

Fluorescence microscopic analysis of bone osseointegration of strontium-substituted hydroxyapatite implants
原文传递
导出
摘要 The purpose of this study was to analyze the effect of strontium-substituted hydroxyapatite (Sr-HA) on bone osseointegration of the implants using fluorescence microscopy. We allocated 20 implants to two groups: Sr-HA group and HA group. Electrochemically deposited HA and Sr-HA coatings were applied onto the implants separately. All the implants were inserted into femur bone of rabbits. Oxytetracycline hydrochloride, alizarin-complexon, and calcein green were respectively administered 7, 28, and 46 d after the implantation. After eight weeks, femurs were retrieved and prepared for the fluorescence microscopy observation. We analyzed the bone mineral apposition rates (MARs), bone area ratios (BARs), and bone to implant contact (BIC) of the two groups. Fluorescence microscopic observation showed that all groups exhibited extensive early peri-implant bone formation. The MAR of the Sr-HA group was greater than that for pure HA from 7 to 28 d after implantation, but no significant difference was found at later stage. And the BIC showed difference at 7 and 28 d compared with pure HA. We concluded that Sr-HA coating can improve the bone osseointegration of the implant in the early stage compared with the HA coating. The purpose of this study was to analyze the effect of strontium-substituted hydroxyapatite (Sr-HA) on bone osseointegration of the implants using fluorescence microscopy. We allocated 20 implants to two groups: Sr-HA group and HA group. Electrochemically deposited HA and Sr-HA coatings were applied onto the implants separately. All the implants were inserted into femur bone of rabbits. Oxytetracycline hydrochloride, alizarin-complexon, and calcein green were respectively administered 7, 28, and 46 d after the implantation. After eight weeks, femurs were retrieved and prepared for the fluorescence microscopy observation. We analyzed the bone mineral apposition rates (MARs), bone area ratios (BARs), and bone to implant contact (BIC) of the two groups. Fluorescence microscopic observation showed that all groups exhibited extensive early peri-implant bone formation. The MAR of the Sr-HA group was greater than that for pure HA from 7 to 28 d after implantation, but no significant difference was found at later stage. And the BIC showed difference at 7 and 28 d compared with pure HA. We concluded that Sr-HA coating can improve the bone osseointegration of the implant in the early stage compared with the HA coating.
出处 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2012年第5期364-371,共8页 浙江大学学报(英文版)B辑(生物医学与生物技术)
基金 Project supported by the Excellent Youth Science Foundation of Zhejiang Provincial Natural Science Foundation of China(No.R2110374) the Provincial Department Co-building Foundation of Health Bureau of Zhejiang Province,China(No.WKJ2011-2-009)
关键词 Strontium-substituted hydroxyapatite HYDROXYAPATITE OSSEOINTEGRATION Strontium-substituted hydroxyapatite, Hydroxyapatite, Osseointegration
  • 相关文献

参考文献30

  • 1Boanini, E., Gazzano, M., Bigi, A., 2010. Ionic substitutions in calcium phosphates synthesized at low temperature. Acta Biomater., 6(6):1882-1894. [doi:10.1016/j.actbio.2009. 12.041].
  • 2Christoffersen, M.R., Christoffersen, N., Kolthoff, O., 1997. Effect of strontium ions on growth and dissolution of hydroxyapatite and on bone mineral detection. Bone, 20(1):47-54. [doi:10.1016/S8756-3282(96)00316-X].
  • 3Cooper, L.F., Zhou, Y., Takebe, J., Guo, J., Abron, A., Holmen, A., Ellingsen, J.E., 2006. Fluoride modification effects on osteoblast behavior and bone formation at TiO2 grit-blasted c.p. titanium endosseous implants. Biomate-rials, 27(6):926-936. [doi:10.1016/j.biomaterials.2005. 07.009].
  • 4Friberg, B., Sennerby, L., Linden, B., Lekholm, U., 1999. Stability measurements of one-stage Brnemark implants during healing in mandibles. A clinical resonance fre-quency analysis study. Int. J. Oral Maxillofac. Surg., 28(4):266-272. [doi:10.1016/S0901-5027(99)80156-8].
  • 5Gentleman, E., Fredholm, Y.C., Jell, G., Lotfibakhshaiesh, N., O′Donnell, M.D., Hill, R.G., Stevens, M.M., 2010. The effects of strontium-substituted bioactive glasses on os-teoblasts and osteoclasts in vitro. Biomaterials, 31(14): 3949-3956. [doi:10.1016/j.biomaterials.2010.01.121].
  • 6Hanawa, T., Kamira, Y., Yamamoto, S., Kohgo, T., Amemyia, A., Ukai, H., Murakami, K., Asaoka, K., 1997. Early bone formation around calcium-ion-implanted titanium in-serted into rat tibia. J. Biomed. Mater. Res., 36(1):131-136. [doi:10.1002/(SICI)1097-4636(199707)36:1<131::AID-JBM 16>3.0.CO;2-L].
  • 7He, F., Yang, G., Wang, X., Zhao, S., 2009. Effect of elec-trochemically deposited nanohydroxyapatite on bone bonding of sandblasted/dual acid-etched titanium implant. Int. J. oral Maxillofac. Implants, 24(5):790-799..
  • 8Jiao, M.J., Wang, X.X., 2009. Electrolytic deposition of magnesium-substituted hydroxyapatite crystals on tita-nium substrate. Mater. Lett., 63(27):2286-2289. [doi:10. 1016/j.matlet.2009.07.048].
  • 9Jinno, T., Kirk, S.K., Morita, S., Goldberg, V.M., 2004. Effects of calcium ion implantation on osseointegration of sur-face blasted titanium alloy femoral implants in a canine total hip arthroplasty model. J. Arthroplasty, 19(1): 102-109. [doi:10.1016/j.arth.2003.10.001].
  • 10Ni, G.X., Lin, J.H., Chiu, P.K.Y., Li, Z.Y., Lu, W.W., 2010. Effect of strontium-containing hydroxyapatite bone ce-ment on bone remodeling following hip replacement. J. Mater. Sci. Mater. Med., 21(1):377-384. [doi:10.1007/ s10856-009-3866-2].

同被引文献20

引证文献4

二级引证文献9

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