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与不同生物活性玻璃接触培养的成骨样细胞产生I型胶原蛋白的情况。

Type I collagen production by osteoblast-like cells cultured in contact with different bioactive glasses.

作者信息

Bosetti Michela, Zanardi Laura, Hench Larry, Cannas Mario

机构信息

Department of Medical Sciences, Human Anatomy, University of Eastern Piedmont, 28100 Novara, Italy.

出版信息

J Biomed Mater Res A. 2003 Jan 1;64(1):189-95. doi: 10.1002/jbm.a.10415.

Abstract

Bioactive glasses are silica-based, surface-active bone substitutes that have shown good biocompatibility both in bone and in soft tissue and are used in oral and maxillofacial bone augmentation. Previous in vitro studies showing that bioactive glasses support the growth and maturation of rat osteoblast-like cells and promote the expression and maintenance of the osteoblastic phenotype have suggested that there is both a solution-mediated and a surface-controlled effect on cell activity. In this study, we investigated the behavior of human primary osteoblast-like cells cultured in contact with three different bioactive glasses and compared them with amorphous silica (SiO2) used in the form of granules. The specific activity of alkaline phosphatase determined biochemically was significantly higher at 2 and 4 days on the bioactive glass with 46.1 mol % silica content (45S5 Bioglass) cultures than in the control cultures and in the bioactive gel-glass cultures, which had 60 mol % (58S) and 80 mol % (77S) silica content. Osteoblasts synthesize collagen type I, which is subsequently mineralized. Immunoblot and biochemical studies showed increased collagen release from osteoblast-like cells cultured in contact with bioactive glasses over that of controls. Among the three bioactive glasses, 45S5 is the highest inducer of osteoblast-like cell collagen release; moreover, mRNA for type I collagen was stimulated approximately three- to fivefold after 45S5 treatment. 77S bioactive glass similarly increased type I collagen synthesis even though alkaline phosphatase was not higher. These results suggest that 45S5 Bioglass not only induces osteogenic differentiation of human primary osteoblast-like cells, but can also increase collagen synthesis and release. The newly formulated bioactive gel-glass 77S seems to have potential applications for tissue engineering, inducing increased collagen synthesis.

摘要

生物活性玻璃是以二氧化硅为基础的表面活性骨替代物,在骨组织和软组织中均显示出良好的生物相容性,用于口腔颌面骨增量手术。先前的体外研究表明,生物活性玻璃可支持大鼠成骨样细胞的生长和成熟,并促进成骨细胞表型的表达和维持,这表明对细胞活性存在溶液介导和表面控制两种效应。在本研究中,我们调查了与三种不同生物活性玻璃接触培养的人原代成骨样细胞的行为,并将其与颗粒形式的无定形二氧化硅(SiO₂)进行比较。通过生化方法测定,在含46.1 mol%二氧化硅(45S5生物活性玻璃)的生物活性玻璃培养物中,碱性磷酸酶的比活性在第2天和第4天显著高于对照培养物以及含60 mol%(58S)和80 mol%(77S)二氧化硅的生物活性凝胶玻璃培养物。成骨细胞合成I型胶原,随后进行矿化。免疫印迹和生化研究表明,与生物活性玻璃接触培养的成骨样细胞释放的胶原比对照细胞增加。在三种生物活性玻璃中,45S5是成骨样细胞胶原释放的最强诱导剂;此外,45S5处理后I型胶原的mRNA水平提高了约三至五倍。77S生物活性玻璃同样增加了I型胶原的合成,尽管碱性磷酸酶水平没有升高。这些结果表明,45S5生物活性玻璃不仅能诱导人原代成骨样细胞的成骨分化,还能增加胶原的合成和释放。新配制的生物活性凝胶玻璃77S似乎在组织工程方面具有潜在应用价值,可诱导胶原合成增加。

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