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含有结晶磷灰石和硅灰石的生物活性玻璃陶瓷可在骨细胞培养中引发生物矿化。

Bioactive glass-ceramic containing crystalline apatite and wollastonite initiates biomineralization in bone cell cultures.

作者信息

Sautier J M, Kokubo T, Ohtsuki T, Nefussi J R, Boulekbache H, Oboeuf M, Loty S, Loty C, Forest N

机构信息

Laboratoire de Biologie-Odontologie, Université Paris VII, France.

出版信息

Calcif Tissue Int. 1994 Dec;55(6):458-66. doi: 10.1007/BF00298560.

Abstract

Rat bone cells were cultured in the presence of bioactive glass-ceramic containing crystalline apatite and wollastonite. Scanning electron microscopy observations of the surface of the seeded ceramic disks revealed that cells attached, spread, and proliferated on the material surface. Soaking in cell-free culture medium showed that no change occurred in the surface structure. However, when cultured with bone cells and observed under a transmission electron microscope, an electron-dense layer was noted initially at the surface of the material, before bone formation occurred. In addition, energy-dispersive X-ray microanalysis demonstrated the presence of calcium and phosphorus in this layer. Progressively, during the following days of culture, active osteoblasts synthetized and laid down an osteoid matrix composed of numerous collagen fibrils arranged either parallel or perpendicularly to the first-formed electron-dense layer. Mineralization initiated on the ceramic surface dispersed then along the collagenous fibrils, leading to a mineralized matrix which surrounded the ceramic particles. These results demonstrate the capacity of apatite-wollastonite glass ceramic to initiate biomineralization in osteoblast cultures and to achieve a direct bond between the surface apatite layer of the bioactive glass-ceramic and the mineralized bone matrix.

摘要

大鼠骨细胞在含有结晶磷灰石和硅灰石的生物活性玻璃陶瓷存在的情况下进行培养。对接种陶瓷圆盘表面进行扫描电子显微镜观察发现,细胞附着、铺展并在材料表面增殖。浸泡在无细胞培养基中显示材料表面结构未发生变化。然而,当与骨细胞一起培养并在透射电子显微镜下观察时,在骨形成之前,最初在材料表面发现了一个电子致密层。此外,能量色散X射线微分析表明该层中存在钙和磷。在接下来的培养过程中,活跃的成骨细胞逐渐合成并沉积由许多平行或垂直于最初形成的电子致密层排列的胶原纤维组成的类骨质基质。矿化在陶瓷表面开始,然后沿着胶原纤维分散,形成围绕陶瓷颗粒的矿化基质。这些结果证明了磷灰石-硅灰石玻璃陶瓷在成骨细胞培养中启动生物矿化以及在生物活性玻璃陶瓷的表面磷灰石层与矿化骨基质之间实现直接结合的能力。

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