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AnIn VitroComparison of PMMA and Calcium Sulfate as Carriers for the Local Delivery of Gallium(III) Nitrate to Staphylococcal Infected Surgical Sites

机译:PMMA的Anin vitroCominison和硫酸钙作为丙酸镓(III)硝酸镓(III)硝酸盐感染的手术部位

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摘要

Antibiotic-loaded bone cements, including poly(methyl methacrylate) (PMMA) and calcium sulfate (CaSO4), are often used for treatment of orthopaedic infections involving Staphylococcus spp., although the effectiveness of this treatment modality may be limited due to the emergence of antimicrobial resistance and/or the development of biofilms within surgical sites. Gallium(III) is an iron analog capable of inhibiting essential iron-dependent pathways, exerting broad antimicrobial activity against multiple microorganisms, including Staphylococcus spp. Herein, we evaluated PMMA and CaSO4 as carriers for delivery of gallium(III) nitrate (Ga(NO3)3) to infected surgical sites by assessing the release kinetics subsequent to incorporation and antimicrobial activity against S. aureus and S. epidermidis. PMMA and to a lesser extent CaSO4 were observed to be compatible as carriers for Ga(NO3)3, eluting concentrations with antimicrobial activity against planktonic bacteria, inhibiting bacterial growth, and preventing bacterial colonization of beads, and effective against established bacterial biofilms of S. aureus and S. epidermidis. Collectively, our in vitro results indicate that PMMA is a more suitable carrier compared to CaSO4 for delivery of Ga(NO3)3; moreover they provide evidence for the potential use of Ga(NO3)3 with PMMA as a strategy for the prevention and/or treatment for orthopaedic infections.
机译:包括聚(甲基丙烯酸甲酯)(PMMA)和硫酸钙(CasO4)的抗生素骨水泥通常用于治疗涉及葡萄球菌SPP的整形外科感染。,尽管该治疗方式的有效性可能由于出现而受到限制抗微生物抗性和/或手术部位内生物膜的发育。镓(III)是一种能够抑制必需的铁依赖性途径的铁类似物,对多种微生物施加广泛的抗菌活性,包括葡萄球菌SPP。在此,我们通过评估掺入和抗菌活性的释放动力学和抗药物和S.S.Peidermidis掺入和抗微生物活性之后的释放动力学来评估PMMA和CASO4作为携带镓(III)硝酸镓(Ga(NO 3)3)的载体作为感染的手术部位的载体。 PMMA和在较小程度上观察到CasO4与Ga(NO3)3的载体相容,用抗菌细菌的抗菌活性洗脱浓度,抑制细菌生长,并防止珠粒细菌定植,并有效地对抗S的已建立的细菌生物膜。金黄色葡萄球菌和S.表皮。集体,我们的体外结果表明,与CasO4相比,PMMA是更合适的载体,用于递送GA(NO3)3;此外,它们提供了潜在使用GA(NO3)3与PMMA的潜在用途,作为预防和/或治疗整形外科感染的策略。

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