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首页> 外文期刊>Current orthopaedic practice >Specific staphylococcal polymerase chain reaction can be a complementary tool for identifying causative organisms and guiding antibiotic management in orthopaedic infections
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Specific staphylococcal polymerase chain reaction can be a complementary tool for identifying causative organisms and guiding antibiotic management in orthopaedic infections

机译:特定的葡萄球菌聚合酶链反应可以补充工具识别诱发生物和指导抗生素管理在骨科感染

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Background Vast numbers of bone and joint infections in adults, including prosthetic joint infections, are caused by staphylococci. Because of the complexity of these infections, treatment with broad-spectrum antibiotics active against staphylococci usually is started before sampling. This may be one of the reasons why conventional microbiology cultures fail to identify a causative organism. We sought to demonstrate that a specific duplex Staphylococcus species real-time polymerase chain reaction can aid in the diagnosis and antimicrobial management of these cases. Methods Deep specimens from 19 patients with presumed bone, joint, or prosthetic joint infection, who had been on anti-staphylococcal antibiotics before surgery, were examined with a specific duplex staphylococcal polymerase chain reaction. Samples including bone, tissue, joint aspirates and fluid were negative on culture using conventional microbiology techniques. Results The polymerase chain reaction resulted in bacteriological identification in 58.7% of the samples and antibiotic treatment was modified accordingly. Conclusions Specific staphylococcal polymerase chain reaction can be a useful diagnostic tool in orthopaedic infections especially when conventional cultures fail to grow, this would allow targeted antibiotic therapy.
机译:背景大量的骨骼和关节在成年人感染,包括假体关节感染,是由葡萄球菌引起的。这些感染的复杂性、治疗与广谱抗生素积极反对葡萄球菌通常是开始取样前。这可能是传统的一个原因微生物学文化无法识别致病生物。一个特定的双葡萄球菌物种实时聚合酶链反应可以帮助诊断和抗菌药物的管理这些情况。假定患者骨骼,关节,或假体联合感染,曾anti-staphylococcal抗生素在手术之前,检查与特定的双工葡萄球菌的聚合酶链反应。包括骨、组织联合吸入和流体-在使用传统文化微生物学技术。连锁反应导致细菌58.7%的样本和识别抗生素治疗相应修改。结论特定葡萄球菌聚合酶连锁反应可能是一个有用的诊断工具骨科感染尤其是当传统文化不能增长,这将允许有针对性的抗生素治疗。

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