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Quantification of Antibody-dependent Enhancement of the Zika Virus in Primary Human Cells
Published on: January 18, 2019
Dengue virus antibodies enhance Zika virus infection
Lauren M Paul1, Eric R Carlin1, Meagan M Jenkins1
1Department of Biological Sciences, College of Arts and Sciences, Florida Gulf Coast University , Fort Myers, FL, USA.
Abstract:
For decades, human infections with Zika virus (ZIKV), a mosquito-transmitted flavivirus, were sporadic, associated with mild disease, and went underreported since symptoms were similar to other acute febrile diseases. Recent reports of severe disease associated with ZIKV have greatly heightened awareness. It is anticipated that ZIKV will continue to spread in the Americas and globally where competent Aedes mosquito vectors are found. Dengue virus (DENV), the most common mosquito-transmitted human flavivirus, is both well-established and the source of outbreaks in areas of recent ZIKV introduction. DENV and ZIKV are closely related, resulting in substantial antigenic overlap. Through antibody-dependent enhancement (ADE), anti-DENV antibodies can enhance the infectivity of DENV for certain classes of immune cells, causing increased viral production that correlates with severe disease outcomes. Similarly, ZIKV has been shown to undergo ADE in response to antibodies generated by other flaviviruses. We tested the neutralizing and enhancing potential of well-characterized broadly neutralizing human anti-DENV monoclonal antibodies (HMAbs) and human DENV immune sera against ZIKV using neutralization and ADE assays. We show that anti-DENV HMAbs, cross-react, do not neutralize, and greatly enhance ZIKV infection in vitro. DENV immune sera had varying degrees of neutralization against ZIKV and similarly enhanced ZIKV infection. Our results suggest that pre-existing DENV immunity may enhance ZIKV infection in vivo and may lead to increased disease severity. Understanding the interplay between ZIKV and DENV will be critical in informing public health responses and will be particularly valuable for ZIKV and DENV vaccine design and implementation strategies.
Insights
Pre-existing dengue virus (DENV) immunity may worsen Zika virus (ZIKV) infections. Antibodies against DENV can enhance ZIKV infectivity, potentially increasing disease severity in areas with both mosquito-borne viruses.
Area of Science:
- Virology
- Immunology
- Public Health
Background:
- Zika virus (ZIKV) infections, previously mild and underreported, are now associated with severe disease.
- ZIKV is spreading globally, co-circulating with Dengue virus (DENV) in many regions.
- DENV and ZIKV are antigenically related flaviviruses, raising concerns about cross-immunity.
Purpose of the Study:
- To investigate the impact of pre-existing anti-DENV antibodies on ZIKV infection.
- To assess the neutralizing and enhancing potential of anti-DENV antibodies against ZIKV.
- To inform ZIKV and DENV vaccine strategies.
Main Methods:
- Used neutralization and antibody-dependent enhancement (ADE) assays.
- Tested well-characterized human anti-DENV monoclonal antibodies (HMAbs) and immune sera.
- Evaluated cross-reactivity, neutralization, and enhancement of ZIKV infection.
Main Results:
- Anti-DENV HMAbs cross-reacted with ZIKV but did not neutralize it.
- Anti-DENV HMAbs significantly enhanced ZIKV infection *in vitro*.
- DENV immune sera showed variable neutralization and enhanced ZIKV infection.
Conclusions:
- Pre-existing immunity to DENV may enhance ZIKV infection *in vivo*.
- This enhancement could lead to increased ZIKV disease severity.
- Understanding DENV-ZIKV interactions is crucial for public health and vaccine development.

