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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of serum proteins and osteoblasts on the surface transformation of a calcium phosphate coating: a physicochemical and ultrastructural study.
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Effect of serum proteins and osteoblasts on the surface transformation of a calcium phosphate coating: a physicochemical and ultrastructural study.

机译:血清蛋白和成骨细胞对磷酸钙涂层表面转化的影响:一项物理化学和超微结构研究。

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摘要

Changes occurring at the surface of a calcium phosphate coating when in contact with osteoblasts versus those in acellular solutions were analyzed. The coating studied is one with a well-documented extensive effect on short-term bone growth stimulation. Precipitates associated with original crystals and organized in a weblike structure were observed after a 3-week culture with osteoblasts. The precipitates were identified as carbonated hydroxyapatite (c-HA). In contrast, no significant surface changes were detected after immersion in an acellular serum-containing solution. However, in an acellular serum-free solution simulating the ionic composition of plasma, precipitates, identified as c-HA, were abundantly formed. Dissolution of the original coating preceded precipitation. The data support the hypothesis that dissolution of synthetic calcium phosphate ceramics is an initial step in their transformation to a biologically equivalent apatite, and suggest that both solution-mediated (dissolution-precipitation) and cell-mediated mechanisms are involved in the surface transformation.
机译:分析了与成骨细胞接触时与无细胞溶液中相比在磷酸钙涂层表面发生的变化。研究的涂层是一种对短期骨骼生长刺激具有广泛文献记载的广泛效果的涂层。用成骨细胞培养3周后,观察到与原始晶体相关并形成网状结构的沉淀物。沉淀物被鉴定为碳酸羟基磷灰石(c-HA)。相反,浸入无细胞血清的溶液中后未检测到明显的表面变化。然而,在模拟血浆离子组成的无细胞无血清溶液中,大量沉淀形成,被鉴定为c-HA。原始涂层的溶解先于沉淀。数据支持这样的假设,即合成磷酸钙陶瓷的溶解是其向生物学上等效的磷灰石转化的第一步,并且表明溶液介导的(溶解-沉淀)和细胞介导的机制都参与了表面转化。

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