1Biomaterials Research Group, Łukasiewicz Research Network - Institute of Ceramic and Building Materials, Kraków, Poland.
2Department of in vitro studies, Institute of Biotechnology and Molecular Medicine, Gdańsk, Poland.
Acta Bioeng Biomech. 2024 Feb 7;25(4):69-80. doi: 10.37190/abb-02339-2023-02. Print 2023 Dec 1.
: The aim of the presented work was to characterize the new obtained bioglasses and assess their biological performance . Bioglasses were produced using the sol-gel method in the SiO-PO-CaO system, for the purpose as composite ingredients. Their chemical composition was enriched with ZnO to introduce antibacterial properties and SrO with osteoinductive effect. The properties of bioglasses were compared and the effect of chemical composition and particle size on their biological properties was assessed. : The bioglasses were evaluated via TG-DTA, FTIR, SEM-EDS analyses before and after incubation in SBF solution. LDH and WST-1 tests were used to determine the level of cytotoxicity of the tested bioglasses on hFOB1.19 osteoblasts. : The results show that the developed bioglasses release Ca, are bioactive in SBF solution, not cytotoxic and show antibacterial activity in contact with and strains. Bioglasses enriched with ZnO show the highest bactericidal activity. All tested bioglasses enhanced hFOB 1.19 cells proliferation. Particle size has a lower effect on biological performance of the bioglasses than their chemical composition. : The conducted research showed that bioglass modification with SrO and ZnO can be considered particularly for the development of biomaterials supporting bone regeneration and the treatment of infected bone defects.
: 本工作的目的是对新获得的生物玻璃进行表征,并评估其生物学性能。生物玻璃是采用溶胶-凝胶法在 SiO-PO-CaO 体系中制备的,作为复合材料的成分。为了引入抗菌性能,它们的化学成分中添加了 ZnO,为了引入成骨诱导性能,添加了 SrO。对生物玻璃的性能进行了比较,并评估了化学成分和粒径对其生物学性能的影响。 : 通过 TG-DTA、FTIR、SEM-EDS 分析,在将生物玻璃浸泡在 SBF 溶液前后对其进行了评估。使用 LDH 和 WST-1 试验来确定测试的生物玻璃对 hFOB1.19 成骨细胞的细胞毒性水平。 : 结果表明,所开发的生物玻璃释放 Ca,在 SBF 溶液中具有生物活性,无细胞毒性,并与 和 菌株接触时具有抗菌活性。富 ZnO 的生物玻璃表现出最高的杀菌活性。所有测试的生物玻璃均增强了 hFOB 1.19 细胞的增殖。粒径对生物玻璃的生物学性能的影响低于其化学成分。 : 进行的研究表明,SrO 和 ZnO 对生物玻璃的改性可特别考虑用于支持骨再生和治疗感染性骨缺损的生物材料的开发。