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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Transformation of amorphous calcium carbonate to rod-like single crystal calcite via 'copying' collagen template
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Transformation of amorphous calcium carbonate to rod-like single crystal calcite via 'copying' collagen template

机译:通过“复制”胶原蛋白模板将无定形碳酸钙转变为棒状单晶方解石

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摘要

Collagen Langmuir films were prepared by spreading the solution of collagen over deionized water, CaCl2 solution and Ca(HCO3)(2) solution. Resultant collagen Langmuir monolayers were then compressed to a lateral pressure of 10 mN/m and held there for different duration, allowing the crystallization of CaCO3. The effect of crystallization time on the phase composition and microstructure of CaCO3 was investigated. It was found that amorphous calcium carbonate (ACC) was obtained at a crystallization time of 6 h. The amorphous CaCO3 was transformed to rod-like single crystal calcite crystals at an extended crystallization time of 12 h and 24 h, via "copying" the symmetry and dimensionalities of collagen fibers. Resultant calcite crystallites were well oriented along the longitudinal axis of collagen fibers. The ordered surface structure of collagen fibers and electrostatic interactions played key roles in tuning the oriented nucleation and growth of the calcite crystallites. The mineralized collagen possessing both desired mechanical properties of collagen fiber and good biocompatibility of calcium carbonate may be assembled into an ideal biomaterial for bone implants. (C) 2015 Published by Elsevier B.V.
机译:通过将胶原蛋白溶液分散在去离子水,CaCl2溶液和Ca(HCO3)(2)溶液上,制备Langmuir胶原蛋白膜。然后将所得的胶原Langmuir单层压缩至10 mN / m的侧向压力,并在此处保持不同的持续时间,以使CaCO3结晶。研究了结晶时间对CaCO3相组成和微观结构的影响。发现在6小时的结晶时间获得无定形碳酸钙(ACC)。通过“复制”胶原纤维的对称性和尺寸,非晶态CaCO3在12h和24h的延长结晶时间内转变为棒状方解石晶体。生成的方解石微晶沿胶原纤维的纵轴取向良好。胶原纤维的有序表面结构和静电相互作用在调整方解石微晶的定向成核和生长中起关键作用。具有所需的胶原纤维机械性能和良好的碳酸钙生物相容性的矿化胶原可被组装成用于骨植入物的理想生物材料。 (C)2015由Elsevier B.V.发布

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