Comparison of three multiplex PCR assays for the detection of respiratory viral infections: evaluation of xTAG respiratory virus panel fast assay, RespiFinder 19 assay and RespiFinder SMART 22 assay

被引:49
作者
Dabisch-Ruthe, Mareike [1 ]
Vollmer, Tanja [1 ]
Adams, Ortwin [2 ]
Knabbe, Cornelius [1 ]
Dreier, Jens [1 ]
机构
[1] Ruhr Univ Bochum, Inst Labs & Transfus Med, Herz & Diabet Zentrum Nordrhein Westfalen, Univ Klin, Bad Oeynhausen, Germany
[2] Univ Klinikum, Inst Virol, Dusseldorf, Germany
关键词
REAL-TIME PCR; RVP ASSAY; DIAGNOSIS; SAMPLES; IDENTIFICATION; ADENOVIRUSES; CORONAVIRUS; PERFORMANCE; PNEUMONIA; DISEASE;
D O I
10.1186/1471-2334-12-163
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Background: A broad spectrum of pathogens is causative for respiratory tract infections, but symptoms are mostly similar. Therefore, the identification of the causative viruses and bacteria is only feasible using multiplex PCR or several monoplex PCR tests in parallel. Methods: The analytical sensitivity of three multiplex PCR assays, RespiFinder-19, RespiFinder-SMART-22 and xTAG-Respiratory-Virus-Panel-Fast-Assay (RVP), were compared to monoplex real-time PCR with quantified standardized control material. All assays include the most common respiratory pathogens. Results: To compare the analytical sensitivity of the multiplex assays, samples were inoculated with 13 different quantified viruses in the range of 10(1) to 10(5) copies/ml. Concordant results were received for rhinovirus, whereas the RVP detected influenzavirus, RSV and hMPV more frequently in low concentrations. The RespiFinder-19 and the RespiFinder-SMART-22 showed a higher analytical sensitivity for adenoviruses and coronaviruses, whereas the RVP was incapable to detect adenovirus and coronavirus in concentrations of 10(4) copies/ml. The RespiFinder-19 and RespiFinder-SMART-22A did not detect influenzaviruses (10(4) copies/ml) and RSV (10(3) copies/ml). The detection of all 13 viruses in one sample was only achieved using monoplex PCR. To analyze possible competitive amplification reactions between the different viruses, samples were further inoculated with only 4 different viruses in one sample. Compared to the detection of 13 viruses in parallel, only a few differences were found. The incidence of respiratory viruses was compared in tracheal secretion (TS) samples (n = 100) of mechanically ventilated patients in winter (n = 50) and summer (n = 50). In winter, respiratory viruses were detected in 32 TS samples (64%) by RespiFinder-19, whereas the detection rate with RVP was only 22%. The most frequent viruses were adenovirus (32%) and PIV-2 (20%). Multiple infections were detected in 16 TS samples (32%) by RespiFinder-19. Fewer infections were found in summer (RespiFinder-19: 20%; RVP: 6%). All positive results were verified using monoplex PCR. Conclusions: Multiplex PCR tests have a broad spectrum of pathogens to test at a time. Analysis of multiple inoculated samples revealed a different focus of the detected virus types by the three assays. Analysis of clinical samples showed a high concordance of detected viruses by the RespiFinder-19 compared to monoplex tests.
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页数:11
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共 26 条
[1]   Cloning of a human parvovirus by molecular screening of respiratory tract samples [J].
Allander, T ;
Tammi, MT ;
Eriksson, M ;
Bjerkner, A ;
Tiveljung-Lindell, A ;
Andersson, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (36) :12891-12896
[2]   Comparison of the Eragen Multi-Code Respiratory Virus Panel with Conventional Viral Testing and Real-Time Multiplex PCR Assays for Detection of Respiratory Viruses [J].
Arens, Max Q. ;
Buller, Richard S. ;
Rankin, Anne ;
Mason, Sheila ;
Whetsell, Amy ;
Agapov, Eugene ;
Lee, Wai-Ming ;
Storch, Gregory A. .
JOURNAL OF CLINICAL MICROBIOLOGY, 2010, 48 (07) :2387-2395
[3]   Human bocavirus: Prevalence and clinical spectrum at a children's hospital [J].
Arnold, JC ;
Singh, KK ;
Spector, SA ;
Sawyer, MH .
CLINICAL INFECTIOUS DISEASES, 2006, 43 (03) :283-288
[4]   Epidemiology and clinical outcome of virus-positive respiratory samples in ventilated patients: a prospective cohort study [J].
Daubin, Cedric ;
Parienti, Jean-Jacques ;
Vincent, Sophie ;
Vabret, Astrid ;
du Cheyron, Damien ;
Ramakers, Michel ;
Freymuth, Francois ;
Charbonneau, Pierre .
CRITICAL CARE, 2006, 10 (05)
[5]   Use of bacteriophage MS2 as an internal control in viral reverse transcription-PCR assays [J].
Dreier, J ;
Störmer, M ;
Kleesiek, K .
JOURNAL OF CLINICAL MICROBIOLOGY, 2005, 43 (09) :4551-4557
[6]   Tropheryma whipplei infection of an acellular porcine heart valve bioprosthesis in a patient who did not have intestinal Whipple's disease [J].
Dreier, J ;
Szabados, F ;
von Herbay, A ;
Kröger, T ;
Kleesiek, K .
JOURNAL OF CLINICAL MICROBIOLOGY, 2004, 42 (10) :4487-4493
[7]   Nucleic acid amplification tests for detection of respiratory viruses [J].
Fox, Julie D. .
JOURNAL OF CLINICAL VIROLOGY, 2007, 40 :S15-S23
[8]   Respiratory virus surveillance and outbreak investigation [J].
Fox, Julie D. .
JOURNAL OF CLINICAL VIROLOGY, 2007, 40 :S24-S30
[9]   Comparison of the Luminex Respiratory Virus Panel Fast Assay with In-House Real-Time PCR for Respiratory Viral Infection Diagnosis [J].
Gadsby, Naomi J. ;
Hardie, Alison ;
Claas, Eric C. J. ;
Templeton, Kate E. .
JOURNAL OF CLINICAL MICROBIOLOGY, 2010, 48 (06) :2213-2216
[10]   Real-time PCR assay targets the 23S-5S spacer for direct detection and differentiation of Legionella spp. and Legionella pneumophila [J].
Herpers, BL ;
de Jongh, BM ;
van der Zwaluw, K ;
van Hannen, EJ .
JOURNAL OF CLINICAL MICROBIOLOGY, 2003, 41 (10) :4815-4816