Research Department 3, G.A. Krestov Institute of Solution Chemistry of Russian Academy of Sciences, Ivanovo, Russia.
J Biomed Mater Res B Appl Biomater. 2024 Jun;112(6):e35418. doi: 10.1002/jbm.b.35418.
The method of synthesis of unmodified and organo-modified silica hydrogels and their composites with orotic acid as a model drug was developed. The hydrogels had a pH of 6.5-7.8. The particulate nature and highly porous structures of the hydrogel materials were revealed using scanning electron and optical microscopy methods. The content of aqueous phase in the hydrogels was 99% or more. In order to evaluate the possibility of their application as a basis for development of novel soft drug formulations and cosmetic compositions, rheological properties of the hydrogels and in vitro release kinetics of the drug were studied. The effects of synthesis conditions (increasing concentration of catalyst of silica sol formation, drug loading) and the silica matrix modification with various organic groups on the indicated properties were investigated. It was found that all synthesized hydrogels exhibited pseudoplasticity, thixotropy and controlled release of the drug, which are important for their potential application. However, in general, the indicated effects led to worsening the properties of the hydrogel materials in comparison with the unmodified silica hydrogels.
开发了未修饰和有机修饰的硅胶水凝胶及其与乳清酸作为模型药物的复合材料的合成方法。水凝胶的 pH 值为 6.5-7.8。使用扫描电子显微镜和光学显微镜方法揭示了水凝胶材料的颗粒性质和高度多孔结构。水凝胶中的水相含量为 99%或更高。为了评估它们作为新型软药物制剂和化妆品组合物基础的应用可能性,研究了水凝胶的流变性质和药物的体外释放动力学。研究了合成条件(增加硅胶溶胶形成催化剂的浓度、药物负载)和用各种有机基团修饰硅胶基质对这些性质的影响。结果发现,所有合成的水凝胶均表现出假塑性、触变性和药物的控制释放,这对于它们的潜在应用非常重要。然而,总的来说,与未修饰的硅胶水凝胶相比,这些特性导致水凝胶材料的性能恶化。