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用于承重应用的硅酸钙-明胶骨移植物的体外物理化学特性、成骨活性和免疫相容性。

In vitro physicochemical properties, osteogenic activity, and immunocompatibility of calcium silicate-gelatin bone grafts for load-bearing applications.

机构信息

Institute of Oral Biology and Biomaterials Science, Chung Shan Medical University, Taichung City 402, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2011 Oct;3(10):4142-53. doi: 10.1021/am201017v. Epub 2011 Oct 6.

Abstract

The use of a composite made of natural polymer gelatin and bioactive calcium silicate resembling the morphology and properties of natural bone may provide a solution to the problem of ceramic brittleness for load-bearing applications. The in vitro bioactivity, degradability, osteogenic activity, and immunocompatibility of three types of calcium silicate-gelatin composite bone grafts were characterized. The osteogenic activity and immunocompatibility were evaluated by incubating the bone grafts with human dental pulp cells. After soaking in a simulated body fluid (SBF) for 1 day, all materials were covered with clusters of "bone-like" apatite spherulites. The control material without gelatin exhibited an insignificant change in strength, degradability, and porosity and a small weight loss of 6% after 180 days of soaking in the SBF solution. In contrast, the soaking time imposed in this study did have a statistically significant effect on compressive strength, porosity, and weight loss of the gelatin-containing composites. After 180 days of soaking, the composite with 10 wt % gelatin lost 47% and 10% in compressive strength and weight, respectively, with a porosity of 23%. However, the presence of gelatin promoted greater cell attachment and proliferation on the composite bone grafts. Pulp cells on the calcium silicate-gelatin bone grafts expressed higher levels of osteocalcin, osteopontin, and bone sialoprotein. The inhibition of inducible nitric oxide synthase and interleukin-1 expression and the activation of interleukin-10 were increased with increasing gelatin content. Overall, these findings provide evidence that composite bone grafts containing 10 wt % gelatin with a high initial strength were bioactive, nontoxic, and osteogenic and may be able to promote bone healing for load-bearing applications.

摘要

使用由天然聚合物明胶和类似天然骨形态和性能的生物活性硅酸钙制成的复合材料,可能为解决陶瓷的脆性问题提供解决方案,用于承重应用。三种类型的硅酸钙-明胶复合骨移植物的体外生物活性、可降解性、成骨活性和免疫相容性进行了表征。通过与人牙髓细胞孵育来评估成骨活性和免疫相容性。在模拟体液 (SBF) 中浸泡 1 天后,所有材料都被“骨样”磷灰石球晶簇覆盖。不含明胶的对照材料在强度、降解性和孔隙率方面没有明显变化,在 SBF 溶液中浸泡 180 天后仅出现 6%的重量损失。相比之下,本研究中浸泡时间对含明胶复合材料的抗压强度、孔隙率和重量损失有统计学意义的影响。浸泡 180 天后,含 10wt%明胶的复合材料分别损失了 47%和 10%的抗压强度和重量,孔隙率为 23%。然而,明胶的存在促进了牙髓细胞在复合骨移植物上更好地附着和增殖。钙硅酸钠-明胶骨移植物上的牙髓细胞表达更高水平的骨钙素、骨桥蛋白和骨涎蛋白。随着明胶含量的增加,诱导型一氧化氮合酶和白细胞介素-1 的表达抑制以及白细胞介素-10 的激活增加。总体而言,这些发现提供了证据表明,含有 10wt%明胶的复合骨移植物具有初始高强度、生物活性、无毒性和成骨性,可能能够促进承重应用中的骨愈合。

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