Cracow University of Technology, Faculty of Materials Engineering and Physics, Department of Materials Science, 37 Jana Pawła II Av., 31-864 Krakow, Poland.
Cracow University of Technology, CUT Doctoral School, Faculty of Materials Engineering and Physics, Department of Materials Science, 37 Jana Pawła II Av., 31-864 Krakow, Poland.
Int J Mol Sci. 2024 Sep 16;25(18):9972. doi: 10.3390/ijms25189972.
Restoring the structures and functions of tissues along with organs in human bodies is a topic gathering attention nowadays. These issues are widely discussed in the context of regenerative medicine. Excipients/delivery systems play a key role in this topic, guaranteeing a positive impact on the effectiveness of the drugs or therapeutic substances supplied. Advances in materials engineering, particularly in the development of hydrogel biomaterials, have influenced the idea of creating an innovative material that could serve as a carrier for active substances while ensuring biocompatibility and meeting all the stringent requirements imposed on medical materials. This work presents the preparation of a natural polymeric material based on pullulan modified with silymarin, which belongs to the group of flavonoids and derives from a plant called . Under UV light, matrices with a previously prepared composition were crosslinked. Before proceeding to the next stage of the research, the purity of the composition of the matrices was checked using Fourier-transform infrared (FT-IR) spectroscopy. Incubation tests lasting 19 days were carried out using incubation fluids such as simulated body fluid (SBF), Ringer's solution, and artificial saliva. Changes in pH, electrolytic conductivity, and weight were observed and then used to determine the sorption capacity. During incubation, SBF proved to be the most stable fluid, with a pH level of 7.6-7.8. Sorption tests showed a high sorption capacity of samples incubated in both Ringer's solution and artificial saliva (approximately 350%) and SBF (approximately 300%). After incubation, the surface morphology was analyzed using an optical microscope for samples demonstrating the greatest changes over time. The active substance, silymarin, was released using a water bath, and then the antioxidant capacity was determined using the Folin-Ciocâlteu test. The tests carried out proved that the material produced is active and harmless, which was shown by the incubation analysis. The continuous release of the active ingredient increases the biological value of the biomaterial. The material requires further research, including a more detailed assessment of its balance; however, it demonstrates promising potential for further experiments.
恢复人体组织和器官的结构和功能是当今备受关注的话题。这些问题在再生医学的背景下被广泛讨论。辅料/传递系统在这个话题中起着关键作用,保证了对所提供药物或治疗物质的有效性产生积极影响。材料工程的进步,特别是水凝胶生物材料的发展,影响了创造一种创新材料的想法,这种材料可以作为活性物质的载体,同时确保生物相容性并满足对医用材料的所有严格要求。本工作制备了一种基于经水飞蓟宾改性的普鲁兰多糖的天然聚合物材料,水飞蓟宾属于黄酮类化合物,源自一种名为 的植物。在紫外光下,对具有预先制备的组成的基质进行交联。在进行研究的下一阶段之前,使用傅里叶变换红外(FT-IR)光谱检查基质组成的纯度。使用模拟体液(SBF)、林格氏溶液和人工唾液等孵育液进行了持续 19 天的孵育试验。观察 pH 值、电导率和重量的变化,然后用于确定吸附能力。在孵育过程中,SBF 被证明是最稳定的液体,pH 值为 7.6-7.8。吸附试验表明,在林格氏溶液和人工唾液(约 350%)和 SBF(约 300%)中孵育的样品具有高吸附能力。孵育后,使用光学显微镜对样品的表面形貌进行分析,以观察随时间的最大变化。使用水浴法释放活性物质水飞蓟宾,然后使用 Folin-Ciocâlteu 测试法测定抗氧化能力。进行的试验证明,所生产的材料是活性且无害的,这在孵育分析中得到了证明。活性成分的持续释放增加了生物材料的生物价值。该材料需要进一步研究,包括更详细地评估其平衡;然而,它展示了进一步实验的有前途的潜力。