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硅酸钙/海藻酸盐复合材料:作为生物活性可注射水凝胶的制备及性能评价。

The calcium silicate/alginate composite: preparation and evaluation of its behavior as bioactive injectable hydrogels.

机构信息

Med-X Research Institute, Department of Biomedical Engineering, Shanghai Jiaotong University, 1954 HuaShan Road, Shanghai 200030, China.

出版信息

Acta Biomater. 2013 Nov;9(11):9107-17. doi: 10.1016/j.actbio.2013.06.022. Epub 2013 Jun 21.

Abstract

In this study, an injectable calcium silicate (CS)/sodium alginate (SA) hybrid hydrogel was prepared using a novel material composition design. CS was incorporated into an alginate solution and internal in situ gelling was induced by the calcium ions directly released from CS with the addition of d-gluconic acid δ-lactone (GDL). The gelling time could be controlled, from about 30s to 10 min, by varying the amounts of CS and GDL added. The mechanical properties of the hydrogels with different amounts of CS and GDL were systematically analyzed. The compressive strength of 5% CS/SA hydrogels was higher than that of 10% CS/SA for the same amount of GDL. The swelling behaviors of 5% CS/SA hydrogels with different contents of GDL were therefore investigated. The swelling ratios of the hydrogels decreased with increasing GDL, and 5% CS/SA hydrogel with 1% GDL swelled by only less than 5%. Scanning electron microscopy (SEM) observation of the scaffolds showed an optimal interconnected porous structure, with the pore size ranging between 50 and 200 μm. Fourier transform infrared spectroscopy and SEM showed that the CS/SA composite hydrogel induced the formation of hydroxyapatite on the surface of the materials in simulated body fluid. In addition, rat bone mesenchymal stem cells (rtBMSCs) cultured in the presence of hydrogels and their ionic extracts were able to maintain the viability and proliferation. Furthermore, the CS/SA composite hydrogel and its ionic extracts stimulated rtBMSCs to produce alkaline phosphatase, and its ionic extracts could also promote angiogenesis of human umbilical vein endothelial cells. Overall, all these results indicate that the CS/SA composite hydrogel efficiently supported the adhesion, proliferation and differentiation of osteogenic and angiogenic cells. Together with its porous three-dimensional structure and injectable properties, CS/SA composite hydrogel possesses great potential for bone regeneration and tissue engineering applications.

摘要

在这项研究中,通过设计新颖的材料组成,制备了一种可注射的硅酸钙(CS)/海藻酸钠(SA)杂化水凝胶。将 CS 掺入海藻酸钠溶液中,并通过直接从 CS 释放的钙离子与添加的 D-葡萄糖酸 δ-内酯(GDL)引发内部原位凝胶化。通过改变添加的 CS 和 GDL 的量,可以将凝胶时间从约 30s 控制到 10min。系统分析了具有不同 CS 和 GDL 含量的水凝胶的机械性能。对于相同量的 GDL,5% CS/SA 水凝胶的压缩强度高于 10% CS/SA 水凝胶。因此,研究了不同 GDL 含量的 5% CS/SA 水凝胶的溶胀行为。随着 GDL 的增加,水凝胶的溶胀比降低,而含有 1% GDL 的 5% CS/SA 水凝胶的溶胀比小于 5%。支架的扫描电子显微镜(SEM)观察显示出最佳的互连多孔结构,孔径在 50 至 200μm 之间。傅里叶变换红外光谱和 SEM 表明,CS/SA 复合水凝胶在模拟体液中诱导材料表面形成羟基磷灰石。此外,在水凝胶和其离子提取物存在的情况下培养的大鼠骨髓间充质干细胞(rtBMSCs)能够保持活力和增殖。此外,CS/SA 复合水凝胶及其离子提取物刺激 rtBMSCs 产生碱性磷酸酶,其离子提取物还可以促进人脐静脉内皮细胞的血管生成。总体而言,所有这些结果表明 CS/SA 复合水凝胶有效地支持成骨和血管生成细胞的黏附、增殖和分化。CS/SA 复合水凝胶具有多孔三维结构和可注射性,因此在骨再生和组织工程应用中具有巨大的潜力。

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