nHA/α-CSH复合植骨材料的研制及其固化时间和抗压强度测定
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国家自然科学基金资助项目(50830102),军队“十二五”科技计划(CWS11J110)


Setting property and compressive strength of nHA/α-CSH combined bone grafts
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    摘要:

    目的 构建纳米羟基磷灰石(nHA)/α型半水硫酸钙(α-CSH)复合植骨材料并对其固化性能和机械强度进行观测。方法 测试不同液/固比、不同二水硫酸钙(CSD)促凝剂含量条件下复合植骨材料的固化时间和压缩强度,并进行X线衍射(XRD)和扫描电镜(ESM)观察。结果 复合骨水泥的固化时间随着nHA的增加而增加,随着CSD的增加而降低。含20%nHA、80%α-CSH的骨修复材料固化时间为(169±36) min;而含5%nHA、20%CSD、75%α-CSH的骨修复材料固化时间为(6±1.1) min。抗压强度随着nHA的增加而降低。纯α-CSH的平均压缩强度为(12.3±2.4) MPa,而含20%nHA、80%α-CSH的骨修复材料为(4.8±0.6) MPa。XRD检测显示固化后α-CSH转化为CSD,没有其他物质生成。ESM显示固化后nHA镶嵌在了CSD的晶体结构上,呈两相结构。结论 通过调节nHA、α-CSH和促凝剂CSD的含量可以控制复合骨水泥的固化时间和机械强度,为临床应用提供适宜条件。

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    Objective To develop a new type of combined bone grafts mainly including nanometer hydroxyapatite (n-HA) and α-calcium sulphate hemihydrate (α-CSH), and investigate its setting property and compressive strength. Methods The setting time and compressive strength of nHA/α-CSH combined bone grafts with different liquid-to-solid (L/S) ratio or calcium sulphate dehydrate (CSD) amount were measured and observed by the X-ray diffraction (XRD) and the scanning electron microscope (SEM). Results The setting time of combined bone grafts was increased along with the increase of L/S ratio or nHA amount, and reduced with the increase of CSD amount. The setting time of the compound with 20% of nHA, 80% of α-CSH was (169±36) min, while that of the compound with 5% of nHA, 20% of CSD, 75% of α-CSH was (6±1.1) min. The compressive strength of combined bone grafts reduced along with the increase of nHA amount. The average compressive strength of pure α-CSH was (12.3±2.4) MPa, while that of the compound with 20% of nHA, 80% of CSH was (4.8±0.6) MPa. The XRD results showed that no other materials were produced except that α-CSH was transformed to CSD during the setting process. The SEM results indicated that nHA was filled in the crystal structure of the CSD, presenting two-phase structure. Conclusions The setting time and compressive strength of nHA/α-CSH combined bone grafts can be adjusted by the different proportion of nHA, CSD amount and L/S ratio, which provides an appropriate condition for clinical application.

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毛克政,毛克亚,程自申,李鹏,王义国,肖波,徐教,王秀梅,崔福斋. nHA/α-CSH复合植骨材料的研制及其固化时间和抗压强度测定[J].医用生物力学,2013,28(3):333-337

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  • 收稿日期:2012-07-04
  • 最后修改日期:2012-08-31
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