HERQ-9 Is a New Multiplex PCR for Differentiation and Quantification of All Nine Human Herpesviruses

被引:24
作者
Pyoria, Lari [1 ]
Jokinen, Maija [1 ,2 ]
Toppinen, Mari [1 ]
Salminen, Henri [1 ]
Vuorinen, Tytti [3 ,4 ]
Hukkanen, Veijo [3 ]
Schmotz, Constanze [1 ]
Elbasani, Endrit [5 ]
Ojala, Paivi M. [5 ,6 ]
Hedman, Klaus [1 ,7 ]
Valimaa, Hannamari [1 ,8 ]
Perdomo, Maria F. [1 ]
机构
[1] Univ Helsinki, Dept Virol, Helsinki, Finland
[2] Univ Zurich, Dept Evolutionary Biol & Environm Studies, Zurich, Switzerland
[3] Univ Turku, Inst Biomed, Turku, Finland
[4] Turku Univ Hosp, Clin Microbiol, Turku, Finland
[5] Univ Helsinki, Fac Med, Translat Canc Med Res Program, Helsinki, Finland
[6] Imperial Coll London, Dept Infect Dis, London, England
[7] Helsinki Univ Hosp, HUSLAB, Helsinki, Finland
[8] Helsinki Univ Hosp, Dept Oral & Maxillofacial Surg, Helsinki, Finland
基金
芬兰科学院;
关键词
Epstein-Barr virus; HHV-6; coinfection; cytomegalovirus; diagnostics; human herpesviruses; multiplex; qPCR; quantitative methods; tonsils; viral persistence; virome; REAL-TIME PCR; EPSTEIN-BARR-VIRUS; HERPES-SIMPLEX-VIRUS; POLYMERASE-CHAIN-REACTION; VARICELLA-ZOSTER-VIRUS; INTERNATIONAL STANDARD; LIVER-TRANSPLANTATION; RAPID DETECTION; PARVOVIRUS B19; VIRAL LOAD;
D O I
10.1128/mSphere.00265-20
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Infections with the nine human herpesviruses (HHVs) are globally prevalent and characterized by lifelong persistence. Reactivations can potentially manifest as life-threatening conditions for which the demonstration of viral DNA is essential. In the present study, we developed HERQ-9, a pan-HHV quantitative PCR designed in triplex reactions to differentiate and quantify each of the HHV-DNAs: (i) herpes simplex viruses 1 and 2 and varicella-zoster virus; (ii) Epstein-Barr virus, human cytomegalovirus, and Kaposi's sarcoma-associated herpesvirus; and (iii) HHV-6A, -6B, and -7. The method was validated with prequantified reference standards as well as with mucocutaneous swabs and cerebrospinal fluid, plasma, and tonsillar tissue samples. Our findings highlight the value of multiplexing in the diagnosis of many unsuspected, yet clinically relevant, herpesviruses. In addition, we report here frequent HHV-DNA co-occurrences in clinical samples, including some previously unknown. HERQ-9 exhibited high specificity and sensitivity (LOD95 of similar to 10 to similar to 17 copies/reaction), with a dynamic range of 10' to 10 6 copies/p.I. Moreover, it performed accurately in the coamplification of both high- and low-abundance targets in the same reaction. In conclusion, we demonstrated that HERQ-9 is suitable for the diagnosis of a plethora of herpesvirus-related diseases. Besides its significance to clinical management, the method is valuable for the assessment of hitherto-unexplored synergistic effects of herpesvirus coinfections. Furthermore, its high sensitivity enables studies on the human virome, often dealing with minute quantities of persisting HHVs. IMPORTANCE By adulthood, almost all humans become infected by at least one herpesvirus (HHV). The maladies inflicted by these microbes extend beyond the initial infection, as they remain inside our cells for life and can reactivate, causing severe diseases. The diagnosis of active infection by these ubiquitous pathogens includes the detection of DNA with sensitive and specific assays. We developed the first quantitative PCR assay (HERQ-9) designed to identify and quantify each of the nine human herpesviruses. The simultaneous detection of HHVs in the same sample is important since they may act together to induce life-threatening conditions. Moreover, the high sensitivity of our method is of extreme value for assessment of the effects of these viruses persisting in our body and their long-term consequences on our health.
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