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Biodegradabiliy of spherical mesoporous silica particles (MCM-41) in simulated body fluid (SBF)

机译:模拟体液(SBF)中球形介孔二氧化硅颗粒(MCM-41)的生物霉菌(SBF)

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摘要

Mesoporous silica particles of type MCM-41 (Mobile Composition of Matter No. 41), exhibiting highly ordered mesoporosity (pores with diameter between 2 and 50 nm) and surface roughness, are developed and used as a functional coating on bioactive glass-based scaffolds for bone tissue engineering. The degradability and the mesostructure stability of these novel MCM-41 particles were evaluated. The particles are immersed in simulated body fluid (SBF) for up to 28 days at 37 degrees C, and the variation of the ordered porosity, surface characteristics, and chemical composition of the particles are assessed by SEM-EDX, HRTEM, FTIR, ICP-OES, and pH measurements. The results indicate that the MCM-41 particles are affected by immersion in SBF only during the first few days; however, the surface and the mesopore structure of the particles do not change further with increasing time in SBF. The pore channel diameter increased slightly, confirming the stability of the developed material. The release of dissolved Si-species, which reached a maximum of 260 mg SiO2 per gram of material, could play a key role in gene activation of osteoblast cells and in inducing new bone matrix formation. Keywords: Mesoporous silica particles, Simulated body fluid, Biodegradability, Bone tissue
机译:MESOPOOM型二氧化硅颗粒的MCM-41(物质的移动组合物号41),展示高度有序的介孔(具有直径在2至50nm之间)和表面粗糙度的孔,并用作生物活性玻璃基支架上的功能涂层用于骨组织工程。评估这些新型MCM-41颗粒的可降解性和腹部结构稳定性。将颗粒浸入模拟体液(SBF),在37℃下达28天,并且通过SEM-EDX,HRTEM,FTIR,ICP评估颗粒的有序孔隙率,表面特性和化学成分的变化-OTE和pH测量。结果表明,MCM-41颗粒仅在前几天中浸入SBF中的影响;然而,颗粒的表面和中孔结构在SBF中的升高时间内不会进一步改变。孔通道直径略微增加,确认发发材料的稳定性。溶解的Si型释放,其达到每克最多260mg SiO 2,可以在成骨细胞的基因活化中发挥关键作用,并诱导新的骨基质形成。关键词:中孔二氧化硅颗粒,模拟体液,生物降解性,骨组织

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