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A minocycline-releasing PMMA system as a space maintainer for staged bone reconstructions-in vitro antibacterial, cytocompatibility and anti-inflammatory characterization

机译:含有米诺环素释放的PMMA系统作为用于分阶段骨重建的空间维护者 - 体外抗菌性,细胞组分和抗炎性表征

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In the present work, we study the development and biological characterization of a polymethyl methacrylate (PMMA)-based minocycline delivery system, to be used as a space maintainer within craniofacial staged regenerative interventions. The developed delivery systems were characterized regarding solid state characteristics and assayed in vitro for antibacterial and anti-inflammatory activity, and cytocompatibility with human bone cells. A drug release profile allowed for an initial burst release and a more sustained and controlled release over time, with minimum inhibitory concentrations for the assayed and relevant pathogenic bacteria (i.e., Staphylococcus aureus, slime-producer Staphylococcus epidermidis and Escherichia coli) being easily attained in the early time points, and sustained up to 72 h. Furthermore, an improved osteoblastic cell response-with enhancement of cell adhesion and cell proliferation- and increased anti-inflammatory activity were verified in developed systems, compared to a control (non minocycline-loadedPMMAcement). The obtained results converge to support the possible efficacy of the developed PMMA-based minocycline delivery systems for the clinical management of complex craniofacial trauma. Here, biomaterials with space maintenance properties are necessary for the management of staged reconstructive approaches, thus minimizing the risk of peri-operative infections and enhancing the local tissue healing and early stages of regeneration.
机译:在本作工作中,我们研究了基于聚甲基丙烯酸甲酯(PMMA)的米诺环素递送系统的显影和生物学特征,用作颅面上分阶段再生干预内的空间维护者。开发的递送系统的特征在于固态特征,并在体外测定抗菌和抗炎活性,以及​​与人骨细胞的细胞偶联。允许初始爆发释放的药物释放曲线和随时间更持续和控制的释放,用于测定和相关致病细菌的最小抑制浓度(即,葡萄球菌,金黄色葡萄球菌,粘液生产者金黄色葡萄球菌表皮和Escherichia Coli)早期点,并持续到72小时。此外,与对照(非Minocycline-LoadedPmmacement)相比,在发育系统中验证了改善的骨细胞粘附和细胞增殖和细胞增殖和增加的抗炎活性。所获得的结果融合以支持开发的PMMA的米诺环素递送系统对复杂的颅面外伤的临床管理可能的疗效。这里,具有空间维护性能的生物材料对于管理分级重建方法是必要的,从而最大限度地减少围手术感染的风险,增强局部组织愈合和再生早期阶段。

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