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首页> 外文期刊>Acta biomaterialia >Mesoporous bioactive scaffolds prepared with cerium-, gallium- and zinc-containing glasses
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Mesoporous bioactive scaffolds prepared with cerium-, gallium- and zinc-containing glasses

机译:用含铈,镓和锌的玻璃制备的介孔生物活性支架

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Mesoporous bioactive glass scaffolds (MBG-Scs), based on 80% SiO 2-15% CaO-5% P2O5 (in mol.%) mesoporous sol-gel glasses substituted with Ce2O3, Ga2O 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 m2 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.
机译:介孔生物活性玻璃支架(MBG-Scs),基于80%SiO 2-15%CaO-5%P2O5(以摩尔%计)的介孔溶胶凝胶玻璃,用Ce2O3,Ga2O 3(0.2%或1.0%)和ZnO(0.4%或2.0%)是通过蒸发诱导的自组装和快速成型技术相结合而合成的。选择铈,镓和锌微量元素是因为它们固有的有益生物学特性。表征制造的支架并与未取代的支架(B-Sc)进行比较。它们全部包含相互连通的超大孔(孔径> 400μm),非常适合血管向内生长和细胞增殖。支架内部存在大小为100-400μm的大孔。此外,低角度X射线衍射显示B-Sc和取代基含量高达0.4%的支架显示出有序的介孔性,可用于承载具有生物活性的分子。 B-Sc的组织性质为表面积为398m 2 g -1,孔径为4.3nm,孔体积为0.43cm 3 g-1。取代后观察到表面积和孔体积略有减少,而对孔径没有明显影响。此外,除2.0%ZnO-Sc外,所有MBG-Scs均显示出相当快的体外生物活性反应。因此,本研究是对从包含具有治疗意义的元素的生物陶瓷制备骨组织工程支架的正在进行的研究的积极补充。

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