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一种基于硫酸钙和聚磷酸镁的生物活性可降解复合骨水泥。

A Bioactive Degradable Composite Bone Cement Based on Calcium Sulfate and Magnesium Polyphosphate.

作者信息

Peng Suping, Yang Xinyue, Zou Wangcai, Chen Xiaolu, Deng Hao, Zhang Qiyi, Yan Yonggang

机构信息

School of Chemical Engineering, Sichuan University, Chengdu 610065, China.

College of Physics, Sichuan University, Chengdu 610065, China.

出版信息

Materials (Basel). 2024 Apr 18;17(8):1861. doi: 10.3390/ma17081861.

Abstract

Calcium sulfate bone cement (CSC) is extensively used as a bone repair material due to its ability to self-solidify, degradability, and osteogenic ability. However, the fast degradation, low mechanical strength, and insufficient biological activity limit its application. This study used magnesium polyphosphate (MPP) and constructed a composite bone cement composed of calcium sulfate (CS), MPP, tricalcium silicate (CS), and plasticizer hydroxypropyl methylcellulose (HPMC). The optimized CS/MPP/CS composite bone cement has a suitable setting time of approximately 15.0 min, a compressive strength of 26.6 MPa, and an injectability of about 93%. The CS/MPP/CS composite bone cement has excellent biocompatibility and osteogenic capabilities; our results showed that cell proliferation is up to 114% compared with the control after 5 days. After 14 days, the expression levels of osteogenic-related genes, including Runx2, BMP2, OCN, OPN, and COL-1, are about 1.8, 2.8, 2.5, 2.2, and 2.2 times higher than those of the control, respectively, while the alkaline phosphatase activity is about 1.7 times higher. Therefore, the CS/MPP/CS composite bone cement overcomes the limitations of CSC and has more effective potential in bone repair.

摘要

硫酸钙骨水泥(CSC)因其具有自固化能力、可降解性和成骨能力,而被广泛用作骨修复材料。然而,其快速降解、低机械强度和不足的生物活性限制了它的应用。本研究使用聚磷酸镁(MPP),构建了一种由硫酸钙(CS)、MPP、硅酸三钙(CS)和增塑剂羟丙基甲基纤维素(HPMC)组成的复合骨水泥。优化后的CS/MPP/CS复合骨水泥具有约15.0分钟的合适凝固时间、26.6兆帕的抗压强度和约93%的可注射性。CS/MPP/CS复合骨水泥具有优异的生物相容性和成骨能力;我们的结果表明,5天后细胞增殖与对照组相比高达114%。14天后,成骨相关基因Runx2、BMP2、OCN、OPN和COL-1的表达水平分别比对照组高约1.8、2.8、2.5、2.2和2.2倍,而碱性磷酸酶活性约高1.7倍。因此,CS/MPP/CS复合骨水泥克服了CSC的局限性,在骨修复方面具有更有效的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acc6/11051185/1d550d5662b9/materials-17-01861-g001.jpg

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