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Antibacterial Activity and Cytocompatibility of Bone Cement Enriched with Antibiotic Nanosilver and Nanocopper for Bone Regeneration

机译:富含抗生素纳米银和纳米铜的骨水泥的抗菌活性和细胞相容性用于骨再生。

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摘要

Bacterial infections due to bone replacement surgeries require modifications of bone cement with antibacterial components. This study aimed to investigate whether the incorporation of gentamicin or nanometals into bone cement may reduce and to what extent bacterial growth without the loss of overall cytocompatibility and adverse effects in vitro. The bone cement Cemex was used as the base material, modified either with gentamicin sulfate or nanometals: Silver or copper. The inhibition of bacterial adhesion and growth was examined against five different bacterial strains along with integrity of erythrocytes, viability of blood platelets, and dental pulp stem cells. Bone cement modified with nanoAg or nanoCu revealed greater bactericidal effects and prevented the biofilm formation better compared to antibiotic-loaded bone cement. The cement containing nanoAg displayed good cytocompatibility without noticeable hemolysis of erythrocytes or blood platelet disfunction and good viability of dental pulp stem cells (DPSC). On the contrary, the nanoCu cement enhanced hemolysis of erythrocytes, reduced the platelets aggregation, and decreased DPSC viability. Based on these studies, we suggest the modification of bone cement with nanoAg may be a good strategy to provide improved implant fixative for bone regeneration purposes.
机译:由于骨置换手术而引起的细菌感染需要用抗菌成分对骨水泥进行修饰。这项研究旨在调查在骨水泥中掺入庆大霉素或纳米金属是否可以减少细菌生长以及细菌生长的程度,而不会损失总体细胞相容性和体外不良影响。骨水泥Cemex用作基础材料,用硫酸庆大霉素或纳米金属(银或铜)改性。针对五种不同的细菌菌株以及红细胞的完整性,血小板的活力和牙髓干细胞对细菌粘附和生长的抑制作用进行了研究。与载有抗生素的骨水泥相比,用nanoAg或nanoCu改性的骨水泥显示出更大的杀菌作用,并更好地防止了生物膜的形成。含有nanoAg的水泥显示出良好的细胞相容性,而没有明显的红细胞溶血或血小板功能紊乱,以及牙髓干细胞(DPSC)的良好生存能力。相反,纳米铜粘固剂增强了红细胞的溶血,减少了血小板的聚集,并降低了DPSC的活力。基于这些研究,我们建议用nanoAg修饰骨水泥可能是为骨再生目的提供改进的植入物固定剂的好策略。

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