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Surface Modification of Titanium Implant and In Vitro Biocompatibility Evaluation

机译:钛植入和体外生物相容性评价的表面改性

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The improvement of the amount of OH functional groups and bioactivity of titanium metal was attempted by chemical treatment and subsequent hot water treatments. The surface morphology, chemical composition and crystal structure were used to characterize the Ti surfaces and their biocompatibility was evaluated by culturing with osteoblasts. Porous network bioactive anatase were prepared by immersion in the 5 M NaOH at 80°C for 24 h, followed by soaking in the water at 80°C for 48 h. The treatment with H{sub}2O{sub}2/HCl solution at 80°C for 30 min followed by hot water aging also produced an anatase titania gel layer. Percentage of surface OH groups was determined by XPS analysis. After chemical treatment and subsequent aging in hot water, the amount of surface OH groups increased. The modified Ti surface promoted the proliferation and the ALP activities of osteoblasts. These results indicate that the NaOH or H{sub}2O{sub}2/HCl treatment and subsequent hot water immersion improve the biocompatibility of Ti samples. On the other hand, a high OH group concentration is very important as functional groups for the apatite nucleation or biochemical modification via an organometallic interface of immobilizing biomolecules.
机译:通过化学处理和随后的热水处理来企图改善OH官能团和钛金属生物活性的量。表面形态,化学成分和晶体结构用于表征Ti表面,并通过用成骨细胞培养来评价它们的生物相容性。通过在80℃下浸入5M NaOH的24小时内制备多孔网络生物活性锐钛矿,然后在80℃下浸泡在水中48小时。在80℃下用H {Sub} 2O {Sub} 2 / HCl溶液的处理30分钟,然后加热水老化也产生了锐钛矿二氧化钛层。表面OH基团的百分比由XPS分析确定。化学处理和在热水中随后造成衰老后,表面OH基团的量增加。改性Ti表面促进了成骨细胞的增殖和ALP活性。这些结果表明NaOH或H {亚} 2O {Sub} 2 / HCl处理和随后的热水浸渍改善了Ti样品的生物相容性。另一方面,高OH基团浓度是通过固定生物分子的有机金属界面的磷灰石成核或生物化学改性的官能团是非常重要的。

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