A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against

Jinhao Bi1,2, Haojie Wang2,3, Hongyan Pei2,4

  • 1College of Veterinary Medicine, Jilin Agricultural University, Changchun, China.

Insights

Researchers developed a safe, biosafety level 2 Marburg virus (MARV) antibody neutralization assay using a Rabies virus (RABV) system. This visualized method offers a convenient, cost-effective alternative for developing MARV diagnostics and therapeutics.

Area of Science:

  • Virology
  • Immunology
  • Biotechnology

Background:

  • Marburg virus (MARV), a filovirus, causes severe hemorrhagic fever with no available treatments.
  • High MARV pathogenicity necessitates biosafety level 4 research, limiting vaccine and therapy development.
  • A safe, convenient biosafety level 2 assay is crucial for measuring MARV antibody neutralization.

Purpose of the Study:

  • To establish a safe and visualized biosafety level 2 assay for evaluating MARV antibody neutralizing activity.
  • To develop a method that facilitates the development of MARV serological diagnostics, vaccines, and antibody therapies.

Main Methods:

  • Utilized a Rabies virus (RABV) reverse genetic system to construct infectious clones with MARV GP gene and eGFP reporter.
  • Generated MARV pseudoviruses targeting major MARV lineages, confirmed safety in mice.
  • Visualized antibody-mediated inhibition of pseudovirus infection using fluorescence microscopy.

Main Results:

  • Successfully rescued MARV pseudoviruses and demonstrated their safety and infectivity.
  • The assay effectively detected neutralization of MARV pseudoviruses by the MR191 antibody.
  • Results aligned with traditional lentivirus-based pseudovirus systems, validating the method's credibility.

Conclusions:

  • A safe, visualized, and efficient biosafety level 2 assay for MARV antibody neutralization has been established.
  • This method offers advantages in convenience, speed, and cost compared to traditional assays.
  • The developed system is a promising candidate to replace live MARV in neutralization assays for drug development.

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