Barbalinardo Marianna, Ferretti Marzia, Stanzani Virginia, Chiarini Francesca, Zanoni Ilaria, Paganelli Francesca, Checchi Marta, Truocchio Serena, Corradini Matteo, Lo Vasco Vincenza Rita, Cavani Francesco, Reggiani Bonetti Luca, Bellucci Devis, Cannillo Valeria, Palumbo Carla
Institute for the Study of Nanostructured Materials (CNR-ISMN), National Research Council of Italy, 40129 Bologna, Italy.
Department of Biomedical, Metabolic and Neural Sciences, University of Modena and Reggio Emilia, 41124 Modena, Italy.
Biomater Adv. 2025 Dec;177:214379. doi: 10.1016/j.bioadv.2025.214379. Epub 2025 Jun 9.
Bioactive glasses (BGs) have garnered attention for their potential as transformative bone substitutes in regenerative medicine. BGs exert their effects through the dissolution of active ions that can stimulate osteoprogenitors and endothelial cells in the osteogenic process. In this paper, two recent BGs formulations (BGMS10 and Bio_MS), enriched in Sr and Mg ions and with extremely high crystallization temperature, were evaluated. The effects of such BGs on endothelial cell adhesion, viability, and proliferation were analyzed both in the actual presence of BGs and in indirect settings, to determine the impact of ionic dissolution products. The novel BGs were compared to 45S5 Bioglass®, demonstrating a significantly higher biocompatibility and viability of cells grown onto the two novel formulations. Then, the angiogenic potential was evaluated via the Chorio-Allantoic Membrane (CAM) assay which, acting as natural bioreactor, simulates the in vivo conditions. All the BGs demonstrated to be significantly pro-angiogenic compared to controls, showing a significant upregulation of genes with a key role in angiogenic pathways. These observations were consistent with the tissue histological evaluations, which displayed high biocompatibility of BGMS10 and Bio_MS, and a remarkable proliferation of CAM tissues with no inflammatory reactions. In conclusion, our results show that these novel formulations are extremely effective in promoting cell adhesion, proliferation and angiogenesis, which are fundamental for the complex process of healing.
生物活性玻璃(BGs)因其在再生医学中作为变革性骨替代物的潜力而备受关注。BGs通过溶解活性离子发挥作用,这些离子可在成骨过程中刺激骨祖细胞和内皮细胞。在本文中,评估了两种最近的BGs配方(BGMS10和Bio_MS),它们富含锶和镁离子且具有极高的结晶温度。在BGs实际存在和间接环境中分析了此类BGs对内皮细胞粘附、活力和增殖的影响,以确定离子溶解产物的影响。将新型BGs与45S5生物活性玻璃®进行比较,结果表明在两种新型配方上生长的细胞具有显著更高的生物相容性和活力。然后,通过绒毛尿囊膜(CAM)试验评估血管生成潜力,该试验作为天然生物反应器模拟体内条件。与对照组相比,所有BGs均显示出显著的促血管生成作用,在血管生成途径中起关键作用的基因显著上调。这些观察结果与组织学评估一致,组织学评估显示BGMS10和Bio_MS具有高生物相容性,且CAM组织显著增殖,无炎症反应。总之,我们的结果表明,这些新型配方在促进细胞粘附、增殖和血管生成方面极其有效,而这些对于复杂的愈合过程至关重要。