Literature DB >> 20875362

Evaluation of a multiplex real-time PCR assay for detecting pathogens in cardiac valve tissue in patients with endocarditis.

Angel L Fernández1, Eduardo Varela, Lucía Martínez, Amparo Martínez, Juan Sierra, José R González-Juanatey, Benito Regueiro.   

Abstract

With a novel real-time multiplex polymerase chain reaction test, the LightCycler SeptiFast® test, 25 bacterial and fungal species can be identified directly in blood. The SeptiFast® test has been used for rapid etiologic diagnosis in infectious endocarditis using blood samples but has not been evaluated directly on cardiac vegetations in patients being treated for infectious endocarditis. We prospectively analyzed 15 samples of heart valve tissue with active infectious endocarditis using the SeptiFast® test and compared the test's sensitivity with that of blood culture, valve tissue culture, and the SeptiFast® test in blood. The sensitivity of the SeptiFast test in heart valve tissue was 100%. The test results confirmed the diagnosis obtained using blood culture in 13 cases and identified the pathogen in 2 cases where blood culture tested negative. The sensitivity of the SeptiFast® test in heart valve tissue was greater than that obtained with conventional culture of vegetations or with the SeptiFast test in blood.

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Year:  2010        PMID: 20875362     DOI: 10.1016/s1885-5857(10)70236-x

Source DB:  PubMed          Journal:  Rev Esp Cardiol        ISSN: 0300-8932            Impact factor:   4.753


  8 in total

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2.  Rapid Microbiological Diagnostics from Explanted Heart Valves by a Multiplex PCR Assay.

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3.  Molecular diagnosis of sepsis: New aspects and recent developments.

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Review 5.  Bench-to-bedside review: Rapid molecular diagnostics for bloodstream infection--a new frontier?

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7.  Blood culture-negative endocarditis: Improving the diagnostic yield using new diagnostic tools.

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Review 8.  Identification and Antibiotic-Susceptibility Profiling of Infectious Bacterial Agents: A Review of Current and Future Trends.

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  8 in total

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