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Specific and Rapid SARS-CoV-2 Identification Based on LC-MS/MS Analysis.
Schuster, Ofir; Zvi, Anat; Rosen, Osnat; Achdout, Hagit; Ben-Shmuel, Amir; Shifman, Ohad; Yitzhaki, Shmuel; Laskar, Orly; Feldberg, Liron.
  • Schuster O; Department of Infectious Diseases, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Zvi A; Department of Biochemistry and Molecular Genetics, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Rosen O; Department of Biotechnology, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Achdout H; Department of Infectious Diseases, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Ben-Shmuel A; Department of Infectious Diseases, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Shifman O; Department of Biochemistry and Molecular Genetics, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Yitzhaki S; Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Laskar O; Department of Infectious Diseases, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
  • Feldberg L; Department of Analytical Chemistry, Israel Institute for Biological Research, P.O.B 19, 7410001 Ness-Ziona, Israel.
ACS Omega ; 6(5): 3525-3534, 2021 Feb 09.
Article in English | MEDLINE | ID: covidwho-1083828
ABSTRACT
SARS-CoV-2, the etiologic agent of the COVID-19 pandemic, emerged as the cause of a global crisis. Rapid and reliable clinical diagnosis is essential for effectively controlling transmission. The gold standard assay for SARS-CoV-2 identification is the highly sensitive real-time quantitative polymerase chain reaction (RT-qPCR); however, this assay depends on specialized reagents and may suffer from false results. Thus, additional assays based on different approaches could be beneficial. Here, we present a novel method for SARS-CoV-2 identification based on mass spectrometry. The approach we implemented combines a multistep procedure for the rational down-selection of a set of reliable markers out of all optional in silico derived tryptic peptides in viral proteins, followed by monitoring of peptides derived from tryptic digests of purified proteins, cell-cultured SARS-CoV-2, and nasopharyngeal (NP) swab matrix spiked with the virus. The marker selection was based on specificity to SARS-CoV-2 and on analytical parameters including sensitivity, linearity, and reproducibility. The final assay is based on six unique and specific peptide markers for SARS-CoV-2 identification. The simple and rapid (2.5 h) protocol we developed consists of virus heat inactivation and denaturation, tryptic digestion, and identification of the selected markers by liquid chromatography coupled to high-resolution mass spectrometry (LC-MS/MS). The developed assay enabled the identification of 104 PFU/mL SARS-CoV-2 spiked into buffer. Finally, the assay was successfully applied to 16 clinical samples diagnosed by RT-qPCR, achieving 94% concordance with the current gold standard assay. To conclude, the novel MS-based assay described here is specific, rapid, simple, and is believed to provide a complementary assay to the RT-qPCR method.

Full text: Available Collection: International databases Database: MEDLINE Type of study: Diagnostic study / Etiology study / Prognostic study Language: English Journal: ACS Omega Year: 2021 Document Type: Article Affiliation country: Acsomega.0c04691

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Full text: Available Collection: International databases Database: MEDLINE Type of study: Diagnostic study / Etiology study / Prognostic study Language: English Journal: ACS Omega Year: 2021 Document Type: Article Affiliation country: Acsomega.0c04691