Influence of synthesis and processing conditions on the release behavior and stability of sol–gel derived silica xerogels embedded with bioactive compounds

M. Morpurgo , D. Teoli , B. Palazzo , E. Bergamin , N. Realdon , M. Guglielmi
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引用次数: 15

Abstract

The influence of processing parameters and synthetic strategies in the properties of sol–gel derived silica matrices intended for the release of bioactive compounds was investigated. The time-evolution of the matrix properties during its aging at room temperature in the dry and wet forms was investigated by measuring some of its physical and drug retaining properties. The results indicate that long term gel aging in the wet form is fundamental for the obtainment of dry matrices that are stable upon storage, a fundamental requirement for any practical application. In the case of hybrid matrices obtained by replacing part of the tetraethoxysilane precursor with mono-methyl trimethoxysilane, the order of addition of the reaction component is also important in determining the properties of the final dry gel, probably by influencing the polymer structural properties. This parameter acts synergistically with the matrix composition in determining the release properties of xerogels embedded with bioactive compounds.

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合成和加工条件对包埋生物活性化合物的溶胶-凝胶衍生二氧化硅干凝胶释放行为和稳定性的影响
研究了制备工艺参数和合成策略对生物活性化合物释放用溶胶-凝胶硅基材料性能的影响。通过测定其部分物理性能和保药性能,研究了室温干燥和湿态老化过程中基体性能的时间演化规律。结果表明,凝胶在湿形式下的长期老化是获得干燥基质的基础,干燥基质在储存时是稳定的,这是任何实际应用的基本要求。在用单甲基三甲氧基硅烷取代部分四乙氧基硅烷前驱体得到的杂化基质的情况下,反应组分加成的顺序在决定最终干凝胶的性质方面也很重要,可能是通过影响聚合物的结构性质。该参数与基质组成协同作用,决定嵌入生物活性化合物的干凝胶的释放特性。
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