Department of Chemical and Geological Sciences, University of Modena and Reggio Emilia, Via G.Campi 103, Modena 41125, Italy.
Department of Physical, Information and Mathematical Sciences, University of Modena and Reggio Emilia, Via G. Campi 213/a, Modena 41125, Italy.
ACS Biomater Sci Eng. 2022 Jul 11;8(7):2890-2898. doi: 10.1021/acsbiomaterials.2c00283. Epub 2022 Jun 13.
In order to identify new bioactive glasses (BGs) with optimal antioxidant properties, we carried out an evaluation of a series of cerium-doped BGs [Ce-BGs─H, K, and mesoporous bioactive glasses (MBGs)] loaded with different biomolecules, namely, gallic acid, polyphenols (POLY), and anthocyanins. Quantification of loading at variable times highlighted POLY on MBGs as the system with the highest loading. The ability to dismutate hydrogen peroxide (catalase-like activity) of the BGs evaluated is strongly correlated with cerium doping, while it is marginally decreased compared to the parent BG upon loading with biomolecules. Conversely, unloaded Ce-BGs show only a marginal ability to dismutate the superoxide anion (SOD)-like activity, while upon loading with biomolecules, POLY in particular, the SOD-like activity is greatly enhanced for these materials. Doping with cerium and loading with biomolecules give complementary antioxidant properties to the BGs investigated; combined with the persistent bioactivity, this makes these materials prime candidates for upcoming studies on biological systems.
为了鉴定具有最佳抗氧化性能的新型生物活性玻璃(BGs),我们对一系列掺铈的 BGs[掺铈 BG-H、K 和介孔生物活性玻璃(MBGs)]进行了评估,这些 BGs 负载了不同的生物分子,即没食子酸、多酚(POLY)和花青素。在不同时间点的负载量定量分析表明,MBGs 上的 POLY 具有最高的负载量。所评估的 BGs 分解过氧化氢的能力(过氧化氢酶样活性)与铈掺杂强烈相关,而与负载生物分子相比,略有降低。相反,未负载的 Ce-BGs 仅显示出分解超氧阴离子(SOD 样活性)的微小能力,而在负载生物分子后,特别是 POLY,这些材料的 SOD 样活性大大增强。铈掺杂和生物分子负载赋予了所研究的 BGs 互补的抗氧化性能;结合持久的生物活性,这使得这些材料成为生物系统研究的首选候选材料。