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硅酸钠凝胶作为致密和多孔聚合物结构中类骨磷灰石涂层体外成核和生长的前驱体。

Sodium silicate gel as a precursor for the in vitro nucleation and growth of a bone-like apatite coating in compact and porous polymeric structures.

作者信息

Oliveira A L, Malafaya P B, Reis R L

机构信息

Department of Polymer Engineering, University of Minho, Campus de Azurém, 4800-058, Guimarães, Portugal.

出版信息

Biomaterials. 2003 Jul;24(15):2575-84. doi: 10.1016/s0142-9612(03)00060-7.

Abstract

In the present work, a new methodology to produce bioactive coatings on the surface of starch-based biodegradable polymers or other polymeric biomaterials is proposed. A sodium silicate gel is employed as an alternative nucleating agent to the more typical bioactive glasses for inducing the formation of a calcium-phosphate (Ca-P) layer. The method has the advantage of being able to coat efficiently both compact materials and porous 3D architectures aimed at being used on tissue replacement applications and as tissue engineering scaffolds. By means of this treatment, it is possible to observe the formation of an apatite-like layer, only after 6 hours of simulated body fluid immersion. For the porous materials, this layer could also be observed inside the pores, clearly covering the cell walls. Furthermore, an increase of the surface hydrophilicity (higher amount of polar groups in the surface) might contribute to the formation of silanol groups that also act as apatite inductors. After 30 days of SBF immersion, the apatite-like films exhibit a partially amorphous nature and the Ca/P ratios became much closer to the value attributed to hydroxyapatite (1.67). The obtained results are very promising for the development of cancellous bone replacement materials and for pre-calcifying bone tissue engineering scaffolds.

摘要

在本研究中,提出了一种在淀粉基可生物降解聚合物或其他聚合物生物材料表面制备生物活性涂层的新方法。使用硅酸钠凝胶作为更典型的生物活性玻璃的替代成核剂,以诱导磷酸钙(Ca-P)层的形成。该方法的优点是能够有效地涂覆致密材料和多孔三维结构,这些结构旨在用于组织替代应用和作为组织工程支架。通过这种处理,仅在模拟体液浸泡6小时后,就可以观察到类磷灰石层的形成。对于多孔材料,在孔内也可以观察到该层,明显覆盖了细胞壁。此外,表面亲水性的增加(表面极性基团数量增加)可能有助于硅醇基团的形成,硅醇基团也作为磷灰石诱导剂。在SBF浸泡30天后,类磷灰石膜呈现出部分非晶态性质,Ca/P比变得更接近归因于羟基磷灰石的值(1.67)。所获得的结果对于松质骨替代材料的开发和用于预钙化骨组织工程支架非常有前景。

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