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羧甲基壳聚糖锌(CMCS-Zn)/α-半水硫酸钙(α-CSH)复合材料的物理化学和生物学性质。

Physicochemical and biological properties of carboxymethyl chitosan zinc (CMCS-Zn)/α‑calcium sulfate hemihydrate (α-CSH) composites.

机构信息

Guangdong Provincial Key Laboratory of Bone and Cartilage Regenerative Medicine, Nanfang Hospital, Southern Medical University, Guangzhou 510515, PR China; Department of Orthopedics, The Third Hospital of Xiamen, Xiamen 361100, PR China.

Guangdong Provincial Key Laboratory of Bone and Cartilage Regenerative Medicine, Nanfang Hospital, Southern Medical University, Guangzhou 510515, PR China; Department of Orthopedics and Traumatology, Nanfang Hospital, Southern Medical University, Guangzhou 510515, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Dec;131:112496. doi: 10.1016/j.msec.2021.112496. Epub 2021 Oct 16.

Abstract

To improve the osteoinductivity, antibacterial activity, and clinical application of calcium sulfate hemihydrate (CSH), carboxymethyl chitosan zinc (CMCS-Zn) and α-CSH were prepared using different mass ratios. The setting time and injectability of the CMCS-Zn/α-CSH composite were increased with increasing CMCS-Zn content. After adding different amounts of CMCS-Zn to α-CSH, the fine lamellar structure of CMCS-Zn was found by scanning electron microscopy (SEM), which is evenly distributed in the matrix of α-CSH. With the increase of CMCS-Zn, the pores on the surface gradually increased. After mixing CMCS-Zn and α-CSH, no new phase was measured by X-ray diffraction (XRD) and Fourier transform (FTIR) spectroscopy. The degradation rate of CMCS-Zn/α-CSH decreased with increasing CMCS-Zn content, and the pH was stable during the degradation process. The release of Zn increased with increasing CMCS-Zn content, while the release of Ca decreased. Extracts of CMCS-Zn/α-CSH composites up-regulated the osteoinduction and migration of rat bone marrow stem cells. The antibacterial ability of CMCS-Zn/α-CSH was evaluated as a function of CMCS-Zn content. In the rat bone defect model, 5% CMCS-Zn/α-CSH group revealed a higher volume and density of trabeculae by micro-CT 8 weeks after the operation. Therefore, CMCS-Zn/α-CSH was demonstrated to be an adjustable, degradable, substitute biomaterial (with osteogenesis-promoting effects) for use in bone defects, which also has antibacterial activity that can suppress bone infection.

摘要

为了提高半水硫酸钙(CSH)的成骨诱导性、抗菌活性和临床应用,采用不同质量比制备了羧甲基壳聚糖锌(CMCS-Zn)和α-CSH。随着 CMCS-Zn 含量的增加,CMCS-Zn/α-CSH 复合材料的凝固时间和可注射性增加。向α-CSH 中添加不同量的 CMCS-Zn 后,通过扫描电子显微镜(SEM)发现 CMCS-Zn 的细片状结构均匀分布在α-CSH 的基质中。随着 CMCS-Zn 的增加,表面上的孔逐渐增加。混合 CMCS-Zn 和α-CSH 后,X 射线衍射(XRD)和傅里叶变换(FTIR)光谱均未测量到新相。CMCS-Zn/α-CSH 的降解速率随 CMCS-Zn 含量的增加而降低,降解过程中 pH 值稳定。随着 CMCS-Zn 含量的增加,Zn 的释放增加,而 Ca 的释放减少。CMCS-Zn/α-CSH 复合材料的提取物上调了大鼠骨髓间充质干细胞的成骨诱导和迁移。CMCS-Zn/α-CSH 的抗菌能力作为 CMCS-Zn 含量的函数进行了评估。在大鼠骨缺损模型中,手术后 8 周,5%CMCS-Zn/α-CSH 组通过 micro-CT 显示出更高的小梁体积和密度。因此,CMCS-Zn/α-CSH 被证明是一种可调节、可降解的替代生物材料(具有促进成骨作用),可用于骨缺损,同时还具有抗菌活性,可抑制骨感染。

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