Literature DB >> 25631262

The deposition of strontium-substituted hydroxyapatite coatings.

Adrian R Boyd1, L Rutledge, L D Randolph, I Mutreja, B J Meenan.   

Abstract

Strontium substituted hydroxyapatite (SrHA) coatings have received a lot of interest recently as strontium (Sr) has been shown to have the dual benefit of promoting bone formation and reducing bone resorption, in vivo. In this work, SrHA coatings were deposited onto polycrystalline titanium surfaces using radio frequency (RF) magnetron co-sputtering and compared to those deposited from HA alone. In particular, the influence of different levels of Sr-substitution of the sputtering targets (5 and 13% Sr-substituted HA targets) on the properties of the deposited coatings produced at a low discharge power level (150 W) were investigated using FTIR, XPS, XRD, ToFSIMS and AFM techniques (both before and after annealing at 500 °C). The results show that Sr could be successfully incorporated into the HA lattice to form SrHA coatings and that they contained no other impurities. However, the coating produced from the 13% Sr-substituted target had a higher Ca+Sr/P ratio (1.95±0.14) and Sr content when compared to the coating produced from the 5% Sr-substituted target (1.58±0.20). The deposition rate also decreased with increasing Sr content of the sputtering targets. Furthermore, as the Sr content of the coatings increased, so did the preferred 002 orientation of the coating along with increased surface roughness and heterogeneity of the surface features. Therefore, this study has shown that RF magnetron sputtering offers a means to control attendant properties of Sr-substituted HA, such as the crystallinity, stoichiometry, phase purity and surface topography.

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Year:  2015        PMID: 25631262     DOI: 10.1007/s10856-014-5377-z

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  30 in total

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2.  Bonding of bone to apatite-coated implants.

Authors:  R G Geesink; K de Groot; C P Klein
Journal:  J Bone Joint Surg Br       Date:  1988-01

3.  Occurrence of nitrogenous species in precipitated B-type carbonated hydroxyapatites.

Authors:  M Vignoles; G Bonel; R A Young
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4.  Novel synthesis and characterization of an AB-type carbonate-substituted hydroxyapatite.

Authors:  Iain R Gibson; William Bonfield
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5.  The effect of strontium-substituted hydroxyapatite coating on implant fixation in ovariectomized rats.

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6.  Effects of strontium in modified biomaterials.

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Review 7.  Bioceramics of calcium orthophosphates.

Authors:  Sergey V Dorozhkin
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8.  Biomineralized strontium-substituted apatite/titanium dioxide coating on titanium surfaces.

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9.  Influence of discharge power level on the properties of hydroxyapatite films deposited on Ti6A14V with RF magnetron sputtering.

Authors:  K van Dijk; H G Schaeken; J C Wolke; C H Marée; F H Habraken; J Verhoeven; J A Jansen
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Authors:  C Capuccini; P Torricelli; F Sima; E Boanini; C Ristoscu; B Bracci; G Socol; M Fini; I N Mihailescu; A Bigi
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  6 in total

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2.  Strontium-doped hydroxyapatite polysaccharide materials effect on ectopic bone formation.

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4.  Direct monitoring of single-cell response to biomaterials by Raman spectroscopy.

Authors:  Mary Josephine McIvor; Preetam K Sharma; Catherine E Birt; Hayley McDowell; Shannon Wilson; Stephen McKillop; Jonathan G Acheson; Adrian R Boyd; Brian J Meenan
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5.  Si, Sr, Ag co-doped hydroxyapatite/TiO2 coating: enhancement of its antibacterial activity and osteoinductivity.

Authors:  Haixia Qiao; Guiqin Song; Yong Huang; Hao Yang; Shuguang Han; Xuejiao Zhang; Zhenhui Wang; Jing Ma; Xiaopei Bu; Li Fu
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6.  Degradation and biocompatibility of a series of strontium substituted hydroxyapatite coatings on magnesium alloys.

Authors:  Xuenan Gu; Wenting Lin; Dan Li; Hongmei Guo; Ping Li; Yubo Fan
Journal:  RSC Adv       Date:  2019-05-14       Impact factor: 4.036

  6 in total

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