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氟磷灰石-胶原蛋白复合材料的稳定性及细胞反应

Stability and cellular responses to fluorapatite-collagen composites.

作者信息

Yoon Byung-Ho, Kim Hae-Won, Lee Su-Hee, Bae Chang-Jun, Koh Young-Hag, Kong Young-Min, Kim Hyoun-Ee

机构信息

School of Materials Science and Engineering, Seoul National University, San 56-1 Sillim-Dong, Kwanak-Gu, Seoul 151-744, Republic of Korea.

出版信息

Biomaterials. 2005 Jun;26(16):2957-63. doi: 10.1016/j.biomaterials.2004.07.062.

Abstract

Fluorapatite (FA)-collagen composites were synthesized via a biomimetic coprecipitation method in order to improve the structural stability and cellular responses. Different amounts of ammonium fluoride (NH4F), acting as a fluorine source for FA, were added to the precipitation of the composites. The precipitated composites were freeze-dried and isostatically pressed in a dense body. The added fluorine was incorporated nearly fully into the apatite structure (fluoridation), and a near stoichiometric FA-collagen composite was obtained with complete fluoridation. The freeze-dried composites had a typical biomimetic network, consisting of collagen fibers and precipitates of nano-sized apatite crystals. The human osteoblast-like cells on the FA-collagen composites exhibited significantly higher proliferation and differentiation (according to alkaline phosphatase activity) than those on the hydroxyapatite-collagen composite. These enhanced osteoblastic cell responses were attributed to the fluorine release and the reduced dissolution rate.

摘要

通过仿生共沉淀法合成了氟磷灰石(FA)-胶原蛋白复合材料,以提高其结构稳定性和细胞反应。将不同量的作为FA氟源的氟化铵(NH4F)添加到复合材料的沉淀中。沉淀的复合材料经冷冻干燥并等静压制成致密体。添加的氟几乎完全掺入磷灰石结构中(氟化),通过完全氟化获得了接近化学计量的FA-胶原蛋白复合材料。冷冻干燥的复合材料具有典型的仿生网络,由胶原纤维和纳米级磷灰石晶体沉淀组成。与羟基磷灰石-胶原蛋白复合材料上的人成骨样细胞相比,FA-胶原蛋白复合材料上的细胞表现出显著更高的增殖和分化(根据碱性磷酸酶活性)。这些增强的成骨细胞反应归因于氟释放和溶解速率降低。

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