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控制高度均匀、不团聚、亚微米级β-磷酸三钙和磷酸二钙薄片的尺寸、形状和组成。

Control of the size, shape and composition of highly uniform, non-agglomerated, sub-micrometer β-tricalcium phosphate and dicalcium phosphate platelets.

机构信息

RMS Foundation, Bischmattstrasse 12, CH-2544 Bettlach, Switzerland.

出版信息

Biomaterials. 2013 Sep;34(27):6388-401. doi: 10.1016/j.biomaterials.2013.05.026. Epub 2013 Jun 4.

Abstract

Calcium phosphates (CaPs) are widely used as bone graft substitutes but are inherently brittle, hence restricting their use to mechanically protected environments. Combining them with a tough polymer matrix could potentially lead to a composite with load-bearing properties. However, the highest mechanical properties can only be achieved if the CaP particles possess very precise features: they should be uniform in size and shape, non-agglomerated, elongated and thin. The aim of the present study therefore was to assess a novel method to produce such particles. This involved the precipitation of CaP particles in ethylene glycol at moderate temperatures (90-170 °C) and the variation of different reaction parameters (temperature, concentration, pH, etc) to study their influence on particle composition, size, shape and dispersion was studied. As a result, two main CaP phases were obtained as well-dispersed and highly uniform platelets in the form of: (i) β-tricalcium phosphate (β-TCP) hexagonal prisms and (ii) monetite (DCP) flat parallelepipeds. The size dispersion was the narrowest for β-TCP (standard deviation/mean < 5%) whereas the aspect ratio was the highest for DCP (up to 25). In both cases, the thickness of the platelets was below 300 nm which should be ideal for the synthesis of strong CaP-based composites.

摘要

钙磷酸盐 (CaP) 被广泛用作骨移植替代物,但由于其本质上是脆性的,因此限制了它们在机械保护环境中的使用。将它们与坚韧的聚合物基质结合起来,可能会产生具有承载能力的复合材料。然而,如果 CaP 颗粒具有非常精确的特征,就能达到最高的机械性能:它们的尺寸和形状应该均匀、不团聚、拉长且薄。因此,本研究的目的是评估一种生产此类颗粒的新方法。这涉及在中等温度(90-170°C)下在乙二醇中沉淀 CaP 颗粒,并改变不同的反应参数(温度、浓度、pH 等),以研究它们对颗粒组成、尺寸、形状和分散性的影响。结果,得到了两种主要的 CaP 相,它们以分散良好且高度均匀的形式呈现为:(i)β-磷酸三钙 (β-TCP) 六方棱柱体和(ii)硬石膏 (DCP) 扁平平行六面体。β-TCP 的粒径分散性最窄(标准偏差/平均值<5%),而 DCP 的纵横比最高(高达 25)。在这两种情况下,薄片的厚度均低于 300nm,这对于合成高强度的 CaP 基复合材料是理想的。

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