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  • Effects of a micro/nano rough strontium-loaded surface on osseointegration.

Effects of a micro/nano rough strontium-loaded surface on osseointegration.

International journal of nanomedicine (2015-07-28)
Yongfeng Li, Yaping Qi, Qi Gao, Qiang Niu, Mingming Shen, Qian Fu, Kaijin Hu, Liang Kong
摘要

We developed a hierarchical hybrid micro/nanorough strontium-loaded Ti (MNT-Sr) surface fabricated through hydrofluoric acid etching followed by magnetron sputtering and evaluated the effects of this surface on osseointegration. Samples with a smooth Ti (ST) surface, micro Ti (MT) surface treated with hydrofluoric acid etching, and strontium-loaded nano Ti (NT-Sr) surface treated with SrTiO3 target deposited via magnetron sputtering technique were investigated in parallel for comparison. The results showed that MNT-Sr surfaces were prepared successfully and with high interface bonding strength. Moreover, slow Sr release could be detected when the MNT-Sr and NT-Sr samples were immersed in phosphate-buffered saline. In in vitro experiments, the MNT-Sr surface significantly improved the proliferation and differentiation of osteoblasts compared with the other three groups. Twelve weeks after the four different surface implants were inserted into the distal femurs of 40 rats, the bone-implant contact in the ST, MT, NT-Sr, and MNT-Sr groups were 39.70%±6.00%, 57.60%±7.79%, 46.10%±5.51%, and 70.38%±8.61%, respectively. In terms of the mineral apposition ratio, the MNT-Sr group increased by 129%, 58%, and 25% compared with the values of the ST, MT, and NT-Sr groups, respectively. Moreover, the maximal pullout force in the MNT-Sr group was 1.12-, 0.31-, and 0.69-fold higher than the values of the ST, MT, and NT-Sr groups, respectively. These results suggested that the MNT-Sr surface has a synergistic effect of hierarchical micro/nano-topography and strontium for enhanced osseointegration, and it may be a promising option for clinical use. Compared with the MT surface, the NT-Sr surface significantly improved the differentiation of osteoblasts in vitro. In the in vivo animal experiment, the MT surface significantly enhanced the bone-implant contact and maximal pullout force than the NT-Sr surface.

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DAPI, for nucleic acid staining
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噻唑蓝, 98%
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噻唑蓝, powder, BioReagent, suitable for cell culture, suitable for insect cell culture, ≥97.5% (HPLC)
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亚甲蓝, certified by the Biological Stain Commission
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氯化四唑氮蓝, ≥90.0% (HPLC)
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亚甲蓝 溶液, for microscopy, concentrate according to Ehrlich, concentrated, aqueous solution
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钙黄绿素, Used for the fluorometric determination of calcium and EDTA titration of calcium in the presence of magnesium.
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氯化四唑氮蓝, powder, electrophoresis grade
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亚甲蓝 溶液, 0.05 wt. % in H2O
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依地芬, ≥95% (HPLC)