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将粘土矿物掺入到磷酸镁骨水泥中,以提高其力学强度和生物活性。

Incorporation of clay minerals into magnesium phosphate bone cement for enhancing mechanical strength and bioactivity.

机构信息

Key Laboratory of Clay Mineral Applied Research of Gansu Province, Center of Eco-Material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, People's Republic of China.

出版信息

Biomed Mater. 2023 Feb 1;18(2). doi: 10.1088/1748-605X/acb4cd.

Abstract

The poor mechanical strength and bioactivity of magnesium phosphate bone cements (MPCs) are the vital defects for bone reconstruction. Clay minerals have been widely used in biomedical field due to the good reinforcing property and cytocompatibility. Here, laponite, sepiolite or halloysite were incorporated to fabricate MPCs composite, and the composition, microstructure, setting time, compressive strength, thermal stability, degradation performance,bioactivity and cell viability of MPCs composite were investigated. The results suggested that the MPCs composite possessed appropriate setting time, high mechanical strength and good thermal stability. By contrast, MPCs composite containing 3.0 wt.% of sepiolite presented the highest compressive strength (33.45 ± 2.87 MPa) and the best thermal stability. The degradation ratio of MPCs composite was slightly slower than that of MPCs, and varied in simulated body fluid and phosphate buffer solution. Therefore, the obtained MPCs composite with excellent bioactivity and cell viability was expected to meet the clinical requirements for filling bone defect.

摘要

磷酸镁骨水泥(MPCs)的机械强度差和生物活性低是其用于骨修复的主要缺陷。粘土矿物由于具有良好的增强性能和细胞相容性而被广泛应用于生物医学领域。本研究将凹凸棒石、海泡石或坡缕石掺入到 MPCs 中,制备 MPCs 复合材料,并对其组成、微观结构、凝固时间、抗压强度、热稳定性、降解性能、生物活性和细胞活力进行了研究。结果表明,MPCs 复合材料具有适宜的凝固时间、较高的机械强度和良好的热稳定性。相比之下,含有 3.0wt%海泡石的 MPCs 复合材料具有最高的抗压强度(33.45 ± 2.87 MPa)和最佳的热稳定性。MPCs 复合材料的降解率比 MPCs 略慢,在模拟体液和磷酸盐缓冲溶液中变化。因此,所得的 MPCs 复合材料具有优异的生物活性和细胞活力,有望满足填充骨缺损的临床要求。

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