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Sensitivity and Cross-Reactivity Analysis of Serotype-Specific Anti-NS1 Serological Assays for Dengue Virus Using Optical Modulation Biosensing

  • Sophie Terenteva
  • , Linoy Golani-Zaidie
  • , Shira Avivi
  • , Yaniv Lustig
  • , Victoria Indenbaum
  • , Ravit Koren
  • , Tran Mai Hoa
  • , Tong Thi Kim Tuyen
  • , Ma Thi Huyen
  • , Nguyen Minh Hoan
  • , Le Thi Hoi
  • , Nguyen Vu Trung
  • , Eli Schwartz
  • , Amos Danielli*
  • *Corresponding author for this work
  • Bar-Ilan University
  • Ministry of Health, Israel
  • Hanoi Medical University
  • Pasteur Institute of Ho Chi Minh City
  • Sheba Medical Center at Tel Hashomer

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Dengue virus (DENV) poses a major global health concern, with over 6.5 million cases and 7300 deaths reported in 2023. Accurate serological assays are essential for tracking infection history, evaluating disease severity, and guiding vaccination strategies. However, existing assays are limited in their specificity, sensitivity, and cross-reactivity. Using optical modulation biosensing (OMB) technology and non-structural protein 1 (NS1) antigens from DENV-1–3, we developed highly sensitive and quantitative serotype-specific anti-DENV NS1 IgG serological assays. The OMB-based assays offered a wide dynamic range (~4-log), low detection limits (~400 ng/L), fast turnaround (1.5 h), and a simplified workflow. Using samples from endemic (Vietnam) and non-endemic (Israel) regions, we assessed intra-DENV and inter-Flavivirus cross-reactivity. Each assay detected DENV infection with a 100% sensitivity for the corresponding serotype and 64% to 90% for other serotypes. Cross-reactivity with Zika, Japanese encephalitis, and West Nile viruses ranged from 21% to 65%, reflecting NS1 antigen conservation. Our study provides valuable insights into the cross-reactivity of DENV NS1 antigens widely used in research and highlights the potential of OMB-based assays for quantitative and epidemiological studies. Ongoing efforts should aim to minimize cross-reactivity while maintaining sensitivity and explore integration with complementary platforms for improved diagnostic precision.

Original languageEnglish
Article number453
JournalBiosensors
Volume15
Issue number7
DOIs
StatePublished - Jul 2025
Externally publishedYes

Funding

FundersFunder number
Israel Science Foundation2481/19
Ministry of Science and Technology, Israel101790, 103343
Ministry of Science and TechnologyNĐT/IL/21/10

    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

    • Japanese encephalitis virus
    • West Nile virus
    • cross-reactivity
    • dengue virus
    • non-structural protein 1
    • optical detection
    • serology
    • zika virus

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