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含铈、镓和锌的玻璃制备的中孔生物活性支架。

Mesoporous bioactive scaffolds prepared with cerium-, gallium- and zinc-containing glasses.

机构信息

Department of Chemical and Geological Sciences, University of Modena and Reggio Emilia, Modena, Italy.

出版信息

Acta Biomater. 2013 Jan;9(1):4836-44. doi: 10.1016/j.actbio.2012.09.024. Epub 2012 Sep 28.

Abstract

Mesoporous bioactive glass scaffolds (MBG_Scs), based on 80% SiO(2)-15% CaO-5% P(2)O(5) (in mol.%) mesoporous sol-gel glasses substituted with Ce(2)O(3), Ga(2)O(3) (both 0.2% or 1.0%) and ZnO (0.4% or 2.0%), were synthesized by combination of evaporation-induced self-assembly and rapid prototyping techniques. Cerium, gallium and zinc trace elements were selected because of their inherent beneficial biological properties. Fabricated scaffolds were characterized and compared with unsubstituted scaffold (B_Sc). All of them contained well interconnected ultralarge pores (pores >400 μm) ideal for vascular ingrowth and proliferation of cells. Macropores of size 100-400 μm were present inside the scaffolds. In addition, low-angle X-ray diffraction showed that B_Sc and scaffolds with substituent contents up to 0.4% exhibited ordered mesoporosity useful for hosting molecules with biological activity. The textural properties of B_Sc were a surface area of 398 m(2) g(-1), a pore diameter of 4.3 nm and a pore volume of 0.43 cm(3) g(-1). A slight decrease in surface area and pore volume was observed upon substitution with no distinct effect on pore diameter. In addition, all the MBG_Scs except 2.0% ZnO_Sc showed quite quick in vitro bioactive response. Hence, the present study is a positive addition to ongoing research into preparing bone tissue engineering scaffolds from bioceramics containing elements of therapeutic significance.

摘要

介孔生物活性玻璃支架(MBG_Scs),基于 80%SiO(2)-15%CaO-5%P(2)O(5)(摩尔%)介孔溶胶-凝胶玻璃,用 Ce(2)O(3)、Ga(2)O(3)(均为 0.2%或 1.0%)和 ZnO(0.4%或 2.0%)取代,通过蒸发诱导自组装和快速原型技术合成。选择铈、镓和锌微量元素是因为它们具有固有的有益的生物特性。制备的支架进行了表征,并与未取代的支架(B_Sc)进行了比较。所有的支架都包含理想的用于血管生长和细胞增殖的超大孔(孔径>400μm)。支架内部存在 100-400μm 的大孔。此外,低角度 X 射线衍射表明,B_Sc 和取代物含量高达 0.4%的支架具有有序的介孔,有利于容纳具有生物活性的分子。B_Sc 的结构特性为比表面积 398 m(2) g(-1)、孔径 4.3nm 和孔体积 0.43cm(3) g(-1)。取代后比表面积和孔体积略有下降,但孔径没有明显影响。此外,除了 2.0%ZnO_Sc 之外,所有的 MBG_Scs 都表现出相当快的体外生物活性响应。因此,本研究是对正在进行的研究的一个积极补充,即从含有治疗意义元素的生物陶瓷中制备骨组织工程支架。

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