材料科学
硼
生物活性玻璃
磷灰石
硼硅酸盐玻璃
化学工程
抗压强度
硼酸盐玻璃
细胞毒性
溶解
模拟体液
核化学
氟磷灰石
复合材料
扫描电子显微镜
化学
体外
有机化学
生物化学
工程类
作者
Preethi Balasubramanian,Alina Grünewald,Rainer Detsch,Leena Hupa,Bojan Jokić,Francesca Tallia,Anu K. Solanki,Julian R. Jones,Aldo R. Boccaccını
摘要
We report the development and characterization of boron‐releasing highly porous three‐dimensional bioactive glass ( BG ) scaffolds fabricated by the foam replica technique. Three types of bioactive glasses with (wt%) 0.2%, 12.5%, 25% B 2 O 3 , and related varying SiO 2 contents (wt%): 50%, 37.5%, and 25%, were investigated. The well‐known 13‐93 (silicate) and 13‐93B3 (borate) (in wt% – 56.6% B 2 O 3 , 5.5% Na 2 O, 11.1% K 2 O, 4.6% MgO, 18.5% CaO, 3.7% P 2 O 5 ) BG s were used as controls to study the influence of the presence of boron on the mechanical properties, surface reactivity, and cytotoxicity of scaffolds. Surface morphology and surface properties of the BG scaffolds were measured. X‐ray diffraction ( XRD ) analyses showed that the scaffolds of all five compositions were amorphous. The scaffolds with 12.5 wt% B 2 O 3 exhibited satisfactory compressive strength in the range of 1–2 MPa. A dissolution study in cell culture medium was carried out, and ion release profiles, and apatite formation of the scaffolds were assessed. The cytotoxicity of the scaffolds was evaluated using a stromal cell line ( ST 2). Cells were found to attach and spread well on the scaffolds' surfaces. We conclude that borosilicate scaffolds containing 12.5 wt% B 2 O 3 provide the best combination of properties, including relatively high mechanical strength, apatite formation, and cytocompatibility, and thus, they are promising candidates for bone tissue engineering.
科研通智能强力驱动
Strongly Powered by AbleSci AI