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新型偏磷酸钙、无定形磷酸钙、羟基磷灰石和硅胶的成骨和骨诱导支架:羟基磷灰石/偏磷酸钙比例对其性能及物理化学性能的影响。

Novel Osteoinductive and Osteogenic Scaffolds of Monetite, Amorphous Calcium Phosphate, Hydroxyapatite, and Silica Gel: Influence of the Hydroxyapatite/Monetite Ratio on Their Behavior and on Their Physical and Chemical Properties.

机构信息

Departamento de Química en Ciencias Farmacéuticas, Facultad Farmacia, Universidad Complutense, Madrid 28040, Spain.

AzureBio SL, Tres Cantos, Madrid 28760, Spain.

出版信息

ACS Biomater Sci Eng. 2020 Jun 8;6(6):3440-3453. doi: 10.1021/acsbiomaterials.9b01689. Epub 2020 May 11.

Abstract

In this work, a new family of multiphasic materials composed of the same amount of silica gel and variable amount of three calcium phosphates with very different solubilities, monetite > amorphous calcium phosphate > hydroxyapatite (HAp), was studied. Silicon was added to calcium phosphate to increase bioactivity and osteinductivity. The influence of the HAp/monetite ratio on the material resorption and bone regeneration was investigated in critical bone defects in sheep and was related to their chemical and physical properties. It was concluded that a minimum rate of HAp/monetite is necessary to achieve an appropriate compromise between material resorption and bone regeneration. Above this minimum rate, bone regeneration and material resorbtion did not change significantly. Physical properties such as particle size, specific surface area, porosity, and granulate cohesion played a more critical role on material resorption than the solubility of their components. A huge difference between solubility and resorption was observed. It was related to the fastest cellular-mediated resorption of monetite compared to the other components. Computerized axial tomography, histology, histomorphometric, and multiple fluorochrome labeling studies showed a very advanced bone regeneration of the defects when materials with the highest HAp/monetite rate were implanted. It was also demonstrated that all materials induce bone formation and vascularization.

摘要

在这项工作中,研究了一种由相同量的硅胶和不同溶解度的三种磷酸钙组成的多相材料新家族,其溶解度依次为:磷灰石>无定形磷酸钙>羟基磷灰石(HAp)。硅被添加到磷酸钙中以提高生物活性和骨诱导性。在绵羊的临界骨缺损中研究了 HAp/monetite 比例对材料吸收和骨再生的影响,并与它们的化学和物理性质相关联。研究结果表明,为了在材料吸收和骨再生之间达到适当的平衡,需要有一个最低的 HAp/monetite 比率。高于这个最低比率,骨再生和材料吸收不会显著变化。物理性质,如粒径、比表面积、孔隙率和颗粒团聚体的内聚力,对材料吸收的作用比其组成部分的溶解度更为关键。观察到溶解度和吸收之间存在巨大差异。这与 monetite 相比其他成分更快的细胞介导吸收有关。计算机轴向断层扫描、组织学、组织形态计量学和多种荧光标记研究表明,当植入具有最高 HAp/monetite 比率的材料时,缺陷处的骨再生非常先进。还证明了所有材料都能诱导骨形成和血管生成。

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