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Prosthetic infection: Improvement of diagnostic procedures using 16S ribosomal deoxyribonucleic acid polymerase chain reaction

机译:假体感染:使用16S核糖体脱氧核糖核酸聚合酶链反应改善诊断程序

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Purpose: Prosthetic infection is the worst complication in joint arthroplasty. The diagnostic procedure is time consuming and in many cases unrewarding. The aim of this investigation was to raise the sensitivity of the diagnostic procedure. Methods: Altogether, 229 implants were removed from 229 patients. Complete data from 157 patients could be analysed. On explantation of the respective arthroplasty, tissue was removed, puncture fluid aspirated and biofilm scratched from the implant surface with a surgical knife. Specimens were investigated with conventional culture methods and with 16S ribosomal DNA (rDNA) polymerase chain reaction (PCR) and sequencing. Results: In 123 cases, no pathogen could be identified by routine culture methods. In three of these culture-negative cases, bacteria could be identified with 16S rDNA sequencing of the removed biofilm. In 34 cases, bacteria could be identified with culture methods. In two of these cases, sequencing detected additional pathogens. Conclusions: The process of 16S ribosomal deoxyribonucleic acid polymerase chain reaction (rDNA PCR) and sequencing of biofilm removed from the explanted prosthesis is an important addition to conventional culture methods in prosthetic joint infection. Polymerase chain reaction detects additional pathogens and improves diagnostic sensitivity. The examination of tissue, puncture fluid and biofilm should be performed in cases of prosthesis loosening and explantation.
机译:目的:假肢感染是关节置换术中最糟糕的复杂性。诊断程序是耗时,在许多情况下取消给予。这项调查的目的是提高诊断程序的敏感性。方法:从229例患者中拆除229例植入物。可以分析157名患者的完整数据。在促进各个关节成形术的情况下,除去组织,吸入液体吸入和生物膜从植入物表面划伤,用手术刀划伤。用常规培养方法研究标本,并用16S核糖体DNA(RDNA)聚合酶链反应(PCR)和测序。结果:123例,无病原体可以通过常规培养方法鉴定。在这些培养阴性的三种中,可以用16S rdNA测序除去的生物膜来鉴定细菌。在34例中,可以用培养方法鉴定细菌。在这些情况下,测序检测到额外的病原体。结论:16S核糖体脱氧核糖核酸聚合酶链反应(RDNA PCR)的过程和从分析假体中除去的生物膜测序是对假体关节感染中常规培养方法的重要补充。聚合酶链反应检测额外的病原体并提高诊断敏感性。应在假体松动和脱盐的情况下进行组织,穿刺液和生物膜的检查。

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