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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Fluoride-containing bioactive glasses: Glass design, structure, bioactivity, cellular interactions, and recent developments
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Fluoride-containing bioactive glasses: Glass design, structure, bioactivity, cellular interactions, and recent developments

机译:含氟生物活性玻璃:玻璃的设计,结构,生物活性,细胞相互作用和最新进展

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摘要

Bioactive glasses (BGs) are known to bond to both hard and soft tissues. Upon exposure to an aqueous environment, BG undergoes ion exchange, hydrolysis, selective dissolution and precipitation of an apatite layer on their surface, which elicits an interfacial biological response resulting in bioactive fixation, inhibiting further dissolution of the glass, and preventing complete resorption of the material. Fluorine is considered one of the most effective in-vivo bone anabolic factors. In low concentrations, fluoride ions (F-) increase bone mass and mineral density, improve the resistance of the apatite structure to acid attack, and have well documented antibacterial properties. F- ions may be incorporated into the glass in the form of calcium fluoride (CaF2) either by part-substitution of network modifier oxides, or by maintaining the ratios of the other constituents relatively constant. Fluoride-containing bioactive glasses (FBGs) enhance and control osteoblast proliferation, differentiation and mineralisation. And with their ability to release fluoride locally, FBGs make interesting candidates for various clinical applications, dentinal tubule occlusion in the treatment of dentin hypersensitivity. This paper reviews the chemistry of FBGs and the influence of F- incorporation on the thermal properties, bioactivity, and cytotoxicity; and novel glass compositions for improved mechanical properties, processing, and bioactive potential. (c) 2015 Elsevier B.V. All rights reserved.
机译:众所周知,生物活性玻璃(BG)可以粘合到硬组织和软组织上。暴露于水性环境中后,BG会在其表面上发生磷灰石层的离子交换,水解,选择性溶解和沉淀,这会引起界面生物反应,从而导致生物活性固定,抑制玻璃的进一步溶解并阻止其完全吸收。材料。氟被认为是最有效的体内骨合成代谢因子之一。在低浓度下,氟离子(F-)会增加骨骼质量和矿物质密度,提高磷灰石结构对酸侵蚀的抵抗力,并具有充分证明的抗菌性能。 F-离子可以通过网络改性剂氧化物的部分取代或通过将其他成分的比例保持相对恒定来以氟化钙(CaF2)形式掺入玻璃中。含氟生物活性玻璃(FBG)增强并控制成骨细胞的增殖,分化和矿化。 FBG具有局部释放氟化物的能力,因此成为各种临床应用的有趣候选者,牙本质小管阻塞可治疗牙本质过敏症。本文综述了FBG的化学性质以及F-掺入对热性质,生物活性和细胞毒性的影响。以及用于改善机械性能,加工和生物活性潜力的新型玻璃组合物。 (c)2015 Elsevier B.V.保留所有权利。

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