SrHPO4 改性氧氯化镁骨水泥的理化特性和体外活性

IF 1.8 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Research Express Pub Date : 2023-12-05 DOI:10.1088/2053-1591/ad1261
Jinlun Feng, Jianguo Liao, Ting-jian Ma, Wenjie Guo, Junying Chen, Xiaofang He, Haohuai Liu
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引用次数: 0

摘要

针对氯氧镁水泥(MOC)具有优异的力学性能和良好的生物活性但耐水性差的缺点,采用磷酸氢锶(SrHPO4)作为MOC的耐水性改性剂,研究了SrHPO4对MOC的强度、耐水性、体外降解和生物活性的影响;结果表明,SrHPO4能增强MOC的耐水性,其中含4.0 wt% SrHPO4的MOC初始强度为92.3±2.5 MPa,在SBF溶液中浸泡84 d后强度仍为8.2±0.9 MPa;样品在SBF溶液中的降解实验表明,SrHPO4-MOC的降解是可控的,降解产生的低碱性环境促进了羟基磷灰石在水泥表面的沉积,表明SrHPO4-MOC材料具有良好的降解性能和生物活性;细胞实验表明,与MOC相比,SrHPO4-MOC无细胞毒性,可促进细胞增殖,有望成为骨修复的新材料。
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Physicochemical properties and in vitro activity of SrHPO4 modified magnesium oxychloride bone cement
In response to the shortcomings of magnesium oxychloride cement (MOC), which has excellent with outstanding mechanical properties and favorable bioactivity but poor water resistance, strontium hydrogen phosphate (SrHPO4) was used as a water resistance modifier for MOC in the paper, and the effects of SrHPO4 on the strength, water resistance, in vitro degradation and bioactivity of MOC were investigated; the results showed that SrHPO4 could enhance the water resistance of MOC, in which the initial strength of MOC containing 4.0 wt% SrHPO4 was 92.3 ± 2.5 MPa, and the strength was still 8.2 ± 0.9 MPa after 84 d of immersion in SBF solution; the degradation experiments of the samples in SBF solution showed that the degradation of SrHPO4-MOC was controlled, and the low alkaline environment created by the degradation promoted the deposition of hydroxyapatite on the cement surface, it indicated that SrHPO4-MOC material had good degradation properties and bioactivity; cell experiments showed that compared with MOC, SrHPO4-MOC was noncytotoxic and could promote cell proliferation, which was expected to be a new material for bone repair.
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来源期刊
Materials Research Express
Materials Research Express MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.50
自引率
4.30%
发文量
640
审稿时长
12 weeks
期刊介绍: A broad, rapid peer-review journal publishing new experimental and theoretical research on the design, fabrication, properties and applications of all classes of materials.
期刊最新文献
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