首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >The effects of Sr concentration on physicochemical properties, bioactivity and biocompatibility of sub-micron bioactive glasses spheres
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The effects of Sr concentration on physicochemical properties, bioactivity and biocompatibility of sub-micron bioactive glasses spheres

机译:SR浓度对亚微米生物活性玻璃球体的物理化学性质,生物活性和生物相容性的影响

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We synthetized a series of strontium-substituted submicron bioactive glasses spheres (Sr-SBG, SiO2-P2O5-CaO-SrO) in which strontium was substituted for calcium on a mole percentage basis, then investigated the effect of strontium-substituted amount on morphologies, physicochemical properties, apatite-forming bioactivity of SBG and evaluated the proliferation, differentiation and mineralization of Sr-SBG with different strontium substitution amounts by co-cultured with human dental pulp cells (HDPCs). Results showed that Sr-SBG with different strontium substitution amounts were successfully fabricated and substituting different strontium amounts did not affect the morphology and particle size of SBG. All the Sr-SBG possessed good apatite-forming ability, but substituting a certain amount of strontium for calcium would weaken the apatite-forming ability of SBG. Additionally, all the Sr-SBG extractions promoted proliferation, early odontogenic differentiation and mineralization of HDPCs, however, the cell proliferation, differentiation and mineralization abilities would be reduced when the substituted amount of strontium was excess (15 mol%). This study suggests that Sr-SBG with moderate strontium substitution amounts can be used as a more promising biomaterial for dental repair. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:我们合成一系列锶取代的亚微米生物活性眼镜(SR-SBG,SiO2-P2O5-CAO-SRO),其中锶以摩尔百分比取代钙,然后研究了锶取代量对形态的影响,物理化学性质,SBG的磷灰石形成生物活性,并通过用人牙髓细胞(HDPCs)共培养,评估了SR-SBG的增殖,分化和矿化,不同的锶取代量(HDPC)。结果表明,具有不同锶取代量的SR-SBG成功制造和取代不同的锶量不影响SBG的形态和粒度。所有SR-SBG都具有良好的磷灰石形成能力,但取代一定量的锶锶将削弱SBG的磷灰石形成能力。此外,所有SR-SBG提取促进增殖,HDPC的早期幼儿发生分化和矿化,然而,当取代的锶过量(15mol%)时,细胞增殖,分化和矿化能力将降低。本研究表明,具有中等锶取代量的SR-SBG可用作牙科修复的更有前途的生物材料。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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