Zhu Xiuan, Wen Wenjie, Yan Jingjing, Wang Yuran, Wang Rumeng, Ma Xiang, Ren Dandan, Zheng Kai, Deng Chao, Zhang Jue
Anhui Province Engineering Research Center for Dental Materials and Application, School of Stomatology, Binjiang Campus, Wannan Medical College, No. 22, West Wenchang Road, Yijiang District, Wuhu 241002, China.
Jiangsu Province Engineering Research Center of Stomatological Translational Medicine, Nanjing Medical University, Nanjing 210029, China.
Antioxidants (Basel). 2024 Jul 21;13(7):875. doi: 10.3390/antiox13070875.
Bioactive glass nanoparticles (BGNs) are applied widely in tissue regeneration. Varied micro/nanostructures and components of BGNs have been designed for different applications. In the present study, nanorod-shaped mesoporous zinc-containing bioactive glass nanoparticles (ZnRBGNs) were designed and developed to form the bioactive content of composite materials for hard/soft tissue repair and regeneration. The nanostructure and components of the ZnRBGNs were characterized, as were their cytocompatibility and radical-scavenging activity in the presence/absence of cells and their ability to modulate macrophage polarization. The ZnRBGNs possessed a uniform rod shape (length ≈ 500 nm; width ≈ 150 nm) with a mesoporous structure (diameter ≈ 2.4 nm). The leaching liquid of the nanorods at a concentration below 0.5 mg/mL resulted in no cytotoxicity. More significant improvements in the antioxidant and M1-polarization-inhibiting effects and the promotion of M2 polarization were found when culturing the cells with the ZnRBGNs compared to when culturing them with the RBGNs. The doping of the Zn element in RBGNs may lead to improved antioxidant and anti-inflammatory effects, which may be beneficial in tissue regeneration/repair.
生物活性玻璃纳米颗粒(BGNs)在组织再生中得到广泛应用。人们针对不同应用设计了BGNs多样的微/纳米结构和成分。在本研究中,设计并开发了纳米棒状含锌介孔生物活性玻璃纳米颗粒(ZnRBGNs),以形成用于硬/软组织修复和再生的复合材料的生物活性成分。对ZnRBGNs的纳米结构、成分、细胞相容性、在有无细胞情况下的自由基清除活性以及调节巨噬细胞极化的能力进行了表征。ZnRBGNs具有均匀的棒状形状(长度约500 nm;宽度约150 nm)和介孔结构(直径约2.4 nm)。纳米棒浓度低于0.5 mg/mL的浸出液无细胞毒性。与用RBGNs培养细胞相比,用ZnRBGNs培养细胞时,抗氧化和抑制M1极化作用以及促进M2极化方面有更显著的改善。RBGNs中锌元素的掺杂可能导致抗氧化和抗炎作用增强,这可能对组织再生/修复有益。