New Perspectives for Prosthetic Valve Endocarditis: Impact of Molecular Imaging by FISHseq Diagnostics

医学 心内膜炎 感染性心内膜炎 分子诊断学 病因学 荧光原位杂交 聚合酶链反应 16S核糖体RNA 病理 放射科 内科学 基因 生物信息学 生物 遗传学 染色体
作者
Maria M. Hajduczenia,Frank R Klefisch,A Hopf,Herko Grubitzsch,Miriam Stegemann,Frieder Pfäfflin,Birgit Puhlmann,Michele Ocken,Lucie Kretzler,Dinah von Schöning,Volkmar Falk,Annette Moter,Judith Kikhney
出处
期刊:Clinical Infectious Diseases [Oxford University Press]
卷期号:76 (6): 1050-1058 被引量:4
标识
DOI:10.1093/cid/ciac860
摘要

The microbial etiology of prosthetic valve infective endocarditis (PVE) can be difficult to identify. Our aim was to investigate the benefit of molecular imaging technique fluorescence in situ hybridization (FISH) combined with 16S rRNA-gene polymerase chain reaction (PCR) and sequencing (FISHseq) for the analysis of infected prosthetic heart valves.We retrospectively evaluated the diagnostic outcome of 113 prosthetic valves from 105 patients with suspected PVE, treated in 2003-2013 in the Department of Cardiac Surgery, Charité University Medicine Berlin. Each prosthetic valve underwent cultural diagnostics and was routinely examined by FISH combined with 16S rRNA gene PCR and sequencing. We compared classical microbiological culture outcomes (blood and valve cultures) with FISHseq results and evaluated the diagnostic impact of the molecular imaging technique.Conventional microbiological diagnostic alone turned out to be insufficient, as 67% of preoperative blood cultures were noninformative (negative, inconclusive, or not obtained) and 67% of valve cultures remained negative. FISHseq improved the conventional cultural diagnostic methods in PVE in 30% of the cases and increased diagnostic accuracy. Of the valve culture-negative PVE cases, FISHseq succeeded in identifying the causative pathogen in 35%.FISHseq improves PVE diagnostics, complementing conventional cultural methods. In addition to species identification, FISH provides information about the severity of PVE and state of the pathogens (eg, stage of biofilm formation, activity, and localization on and within the prosthetic material). As a molecular imaging technique, FISHseq enables the unambiguous discrimination of skin flora as contaminant or infectious agent.
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