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A Multi-Laboratory Evaluation of Commercial Monkeypox Virus Molecular Tests

  • Oran Erster
  • , Itzchak Levy
  • , Areej Kabat
  • , Batya Mannasse
  • , Virginia Levy
  • , Hadar Assraf
  • , Roberto Azar
  • , Haim Ben-Zvi
  • , Ritta Bradenstein
  • , Olga Bunder
  • , Ayman Fadeela
  • , Ayelet Keren-Naus
  • , Avi Peretz
  • , Diana Roif-Kaminsky
  • , Lolu Saleh
  • , Licita Schreiber
  • , Orna Schwartz
  • , Pninit Shaked-Mishan
  • , Nadav Sorek
  • , Merav Strauss
  • Rachel Steinberg, Orit Treygerman, Simona Zisman-Rozen, Ruth Yishai, Noa Tejman-Yarden, Ella Mendelson, Danit Sofer
  • Ministry of Health, Israel
  • Sheba Medical Center at Tel Hashomer
  • Rabin Medical Center Israel
  • Kaplan Medical Center Israel
  • Assaf Harofeh Medical Center
  • Meir Hospital Sapir Medical Center
  • Soroka Medical Center
  • Poriya Medical Center
  • Barzilai Medical Center
  • Maccabi HealthCare Central Laboratory
  • Edith Wolfson Medical Center Israel
  • Carmel Medical Center
  • Assuta Ashdod Hospital
  • Emek Medical Center
  • Me'uchedet HealthCare Central Laboratory
  • Western Galilee Medical Center of Nahariya
  • Tel Aviv University

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

In this report, we describe the first national scale multi-laboratory evaluation of monkeypox virus (MPXV) DNA commercial PCR kits. The objective of this study was to evaluate 2 kits by different diagnostic laboratories across Israel. Ten standardized samples were tested simultaneously using the Novaplex (15 laboratories) and Bio-Speedy (seven laboratories) kits. An in-house assay based on previously published reactions was used as reference. Comparison of the results showed high intra-assay agreement between laboratories, with small variations for most samples. The in-house assay had an analytical detection limit of less than 10 copies per reaction. While the 2 commercial kits were able to detect specimens with low viral loads similarly to the in-house assay, significant differences were observed, in the Cq values and relative fluorescence (RF), between the assays. The RF signal of the in-house and Bio-Speedy assays ranged between 5,000 and 10,000 RFU, while the signal in the Novaplex assay was less than 600 RFU. Due to the kit measurement protocol, the Cq values of the Bio-Speedy kit were 5 to 7.5 cycles lower than those of the in-house assay. On the contrary, the Cq values of the Novaplex kit were significantly higher than those of the in-house assay, with differences of 3 to 5 cycles per sample. Our results suggest that while all assays were similar in their overall sensitivity, direct comparison of Cq values between them may be misleading. To our knowledge, this is the first methodical evaluation of commercial MPX test kits. We therefore anticipate that this study would help diagnostic laboratories in choosing a specific MPX detection assay. IMPORTANCE To the best of our knowledge, this study is the first methodical evaluation of commercial kits designed for Monkeypox virus detection. This was done by performing the same tests using the same sample set in multiple laboratories, simultaneously, on a national scale. It therefore provides important and unique information on the performance of such kits and provides a guideline for choosing the assay of choice for monkeypox virus diagnosis in a standard diagnostic laboratory. It also demonstrates potential complications when trying to compare the results of different assays, even when testing exactly the same samples, under identical conditions.

Original languageEnglish
Article numbere00225-23
JournalMicrobiology spectrum
Volume11
Issue number3
DOIs
StatePublished - 15 Jun 2023

Bibliographical note

Publisher Copyright:
Copyright © 2023 Erster et al.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • PCR
  • commercial kit
  • comparative analysis
  • detection kit
  • molecular diagnostics
  • monkeypox
  • real-time PCR
  • validation

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