Lin Xue, Wang Yu, Liu Lingyu, Du Xiaomeng, Wang Wenying, Guo Shutao, Zhang Jinchao, Ge Kun, Zhou Guoqiang
Key Laboratory of Medicinal Chemistry and Molecular Diagnosis of Ministry of Education, Key Laboratory of Chemical Biology of Hebei Province, College of Chemistry and Materials Science, Hebei University Baoding 071002 China
College of Basic Medical Science, Hebei University Baoding 071000 P. R. China.
RSC Adv. 2024 May 2;14(21):14470-14479. doi: 10.1039/d4ra00772g.
Promoting angiogenesis following biomaterial implantation is essential to bone tissue regeneration. Herein, the composite scaffolds composed of zein, whitlockite (WH), and levofloxacin (LEVO) were fabricated to augment bone repair by facilitating osteogenesis and angiogenesis. First, three-dimensional composite scaffolds containing zein and WH were prepared using the salt-leaching method. Then, as a model antibiotic drug, the LEVO was loaded into zein/WH scaffolds. Moreover, the addition of WH enhanced the adhesion, differentiation, and mineralization of osteoblasts. The zein/WH/LEVO composite scaffolds not only had significant osteoinductivity but also showed excellent antibacterial properties. The prepared composite scaffolds were then implanted into a calvarial defect model to evaluate their osteogenic induction effects . Micro-CT observation and histological analysis indicate that the scaffolds can accelerate bone regeneration with the contribution of endogenous cytokines. Based on amounts of data and , the scaffolds present profound effects on improving bone regeneration, especially for the favorable osteogenic, intensive angiogenic, and alleviated inflammation abilities. The results showed that the synthesized scaffolds could be a potential material for bone tissue engineering.
促进生物材料植入后的血管生成对于骨组织再生至关重要。在此,制备了由玉米醇溶蛋白、白磷钙矿(WH)和左氧氟沙星(LEVO)组成的复合支架,以通过促进成骨和血管生成来增强骨修复。首先,采用盐析法制备了含有玉米醇溶蛋白和WH的三维复合支架。然后,作为模型抗生素药物,将LEVO负载到玉米醇溶蛋白/WH支架中。此外,WH的添加增强了成骨细胞的粘附、分化和矿化。玉米醇溶蛋白/WH/LEVO复合支架不仅具有显著的骨诱导性,还表现出优异的抗菌性能。然后将制备的复合支架植入颅骨缺损模型中,以评估其成骨诱导效果。显微CT观察和组织学分析表明,该支架可在内源性细胞因子的作用下加速骨再生。基于大量数据,该支架对改善骨再生具有深远影响,尤其是其良好的成骨、强烈的血管生成和减轻炎症的能力。结果表明,合成的支架可能是骨组织工程的一种潜在材料。