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首页> 外文期刊>Materials science & engineering >Preparation and biocompatibility evaluation of bioactive glass-forsterite nanocomposite powder for oral bone defects treatment applications
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Preparation and biocompatibility evaluation of bioactive glass-forsterite nanocomposite powder for oral bone defects treatment applications

机译:生物活性玻璃-镁橄榄石纳米复合粉体在口腔骨缺损治疗中的制备及生物相容性评价

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摘要

Bone defects which emerge around dental implants are often seen when implants are placed in areas with insufficient alveolar bone, in extraction sockets, or around failing implants. Bone regeneration in above-mentioned defects using of bone grafts or bone substitutes may cure the long-term prognoses of dental implants. Biocompatibility, bioactivity and osteogenic properties are key factors affecting the applications of a bone substitute. This study was aimed at preparation, characterization, biocompatibility and bioactivity evaluation of the bioactive glass-forsterite nanocomposite powder as a desired candidate for oral bone defect treatments. Nanocomposite powders containing 58S bioactive glass and different amounts of forsterite nanopowder were synthesized in situ by sol-gel technique. Characterization of the prepared nanocomposite powders and their cytotoxicity assessment was performed via MTT test. Bioactivity assessment was done by immersing the prepared powder in the simulated body fluid (SBF). Results showed that nanocomposite powders containing forsterite with crystallite size of 20-50 nm were successfully fabricated by calcination at 600 ℃ The prepared bioactive glass-forsterite nanocomposite powders revealed high in vitro biocompatibility; besides, the nanocomposite containing 20 wt.% forsterite showed a substantial increase in the cell viability compared with control groups. During immersion in SBF, the formation of apatite layer confirmed the bioactivity of bioactive glass-forsterite nanocomposite powders. According to the results, the fabricated nanocomposite powders can be introduced as a promising candidate for oral bone imperfection treatments and hard tissue mend.
机译:当将种植体放置在牙槽骨不足的区域,拔牙窝中或出现故障的种植体周围时,通常会看到在牙齿种植体周围出现的骨缺损。使用骨移植物或骨替代物修复上述缺陷中的骨,可以治愈牙科植入物的长期预后。生物相容性,生物活性和成骨特性是影响骨替代物应用的关键因素。这项研究的目的是制备,表征,生物相容性和生物活性的玻璃镁橄榄石纳米复合粉体,作为口腔骨缺损治疗的理想候选者。采用溶胶-凝胶法原位合成了含有58S生物活性玻璃和不同量镁橄榄石纳米粉的纳米复合粉体。制备的纳米复合粉体的表征及其细胞毒性评估通过MTT试验进行。通过将制备的粉末浸入模拟体液(SBF)中进行生物活性评估。结果表明,在600℃下煅烧成功制备了含镁橄榄石的微晶尺寸为20-50 nm的纳米复合粉体。制备的生物活性玻璃-镁橄榄石纳米复合粉体具有较高的体外生物相容性。此外,与对照组相比,含有20重量%镁橄榄石的纳米复合材料显示出细胞活力的显着提高。在浸入SBF的过程中,磷灰石层的形成证实了生物活性玻璃-镁橄榄石纳米复合粉体的生物活性。根据结果​​,可以将制备的纳米复合粉末引入口腔骨缺损治疗和硬组织修复的有希望的候选物中。

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