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A Novel Controlled-Release System for Antibacterial Enzyme Lysostaphin Delivery Using Hydroxyapatite/Chitosan Composite Bone Cement

机译:使用羟基磷灰石/壳聚糖复合骨水泥的新型抗菌释放溶葡萄球菌素的控释系统

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摘要

In this work, a lysostaphin-loaded, control-released, self-setting and injectable porous bone cement with efficient protein delivery was prepared by a novel setting method using hydroxyapatite/chitosan (HA/CS) composite scaffold. The cement samples were made through cementitious reactions by mixing solid powder, a mixture of HA/CS composite particles, lysostaphin, Ca(OH)2, CaCO3 and NaHCO3, with setting liquid containing citric acid, acetic acid, NaH2PO4, CaCl2 and poloxamer. The setting parameters of the cement samples were determined. The results showed that the final setting time was 96.6±5.2 min and the pH value increased from approximately 6.2 to nearly 10 during the setting process and the porosity was 34% at the end. And the microstructure and composition were detected by scanning electron microscopy (SEM), x-ray diffraction and Fourier transform-infrared spectroscopy. For the release behavior of lysostaphin loaded in the cement sample, the in vitro cement extract experiment indicated that about 94.2±10.9% of the loaded protein was released before day 8 and the in vivo Qdot 625 fluorescence tracking experiment showed that the loaded protein released slower than the free one. Then the biocompatibility of the cement samples was evaluated using the methylthiazol tetrazolium assay, SEM and hematoxylin-eosin staining, which suggested good biocompatibility of cement samples with MC 3T3-E1 cells and subcutaneous tissues of mice. Finally the antibacterial activity assay indicated that the loaded lysostaphin had good release ability and strong antibacterial enzymatic activity against methicillin-resistant Staphylococcus aureus. Collectively, all the results suggested that the lysostaphin-loaded self-setting injectable porous bone cement released the protein in a controlled and effective way and the protein activity was well retained during the setting and releasing process. Thus this bone cement can be potentially applied as a combination of artificial bone substitute and controlled-release system for delivery of lysostaphin to treat bone defects and infections.
机译:在这项工作中,使用羟基磷灰石/壳聚糖(HA / CS)复合支架通过一种新型的凝结方法,制备了溶葡萄球菌素负载,控释,自凝和可注射的多孔骨水泥,具有高效的蛋白质输送能力。水泥样品是通过将固态粉末,HA / CS复合颗粒,溶葡萄球菌素,Ca(OH)2,CaCO3和NaHCO3的混合物与含有柠檬酸,乙酸,NaH2PO4,CaCl2和泊洛沙姆的凝固液混合,通过胶凝反应制成的。确定水泥样品的凝结参数。结果表明,在固化过程中,最终固化时间为96.6±5.2分钟,pH值从约6.2增加到近10,最终孔隙率为34%。并通过扫描电子显微镜(SEM),X射线衍射和傅里叶变换红外光谱法检测了组织和组成。对于加载在水泥样品中的溶葡萄球菌素的释放行为,体外水泥提取物实验表明在第8天之前释放了约94.2±10.9%的加载蛋白质,而体内Qdot 625荧光跟踪实验表明加载的蛋白质释放较慢比免费的。然后使用甲基噻唑四唑鎓测定,SEM和苏木精-伊红染色评估了水泥样品的生物相容性,这表明水泥样品与MC 3T3-E1细胞和小鼠皮下组织具有良好的生物相容性。最后,抗菌活性试验表明,负载的溶葡萄球菌素对耐甲氧西林的金黄色葡萄球菌具有良好的释放能力和较强的抗菌酶活性。总体而言,所有结果表明,溶骨蛋白负载的自凝性可注射多孔骨水泥以受控和有效的方式释放蛋白质,并且在凝结和释放过程中良好地保留了蛋白质活性。因此,这种骨水泥可以作为人工骨替代物和控释系统的组合潜在地用于递送溶葡萄球菌素以治疗骨缺损和感染。

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