How Innate Immune Mechanisms Contribute to Antibody-Enhanced Viral Infections
- 1 December 2010
- journal article
- review article
- Published by American Society for Microbiology in Clinical and Vaccine Immunology
- Vol. 17 (12), 1829-1835
- https://doi.org/10.1128/cvi.00316-10
Abstract
Preexisting antibodies may enhance viral infections. In dengue, nonneutralizing antibodies raised by natural infection with one of four dengue viruses (DENVs) may enhance infection with a different virus by a process we term "intrinsic antibody-dependent enhancement" (iADE). In addition, nonprotective antibodies raised by formalin-inactivated respiratory syncytial virus (RSV) and measles virus vaccines have led to enhanced disease during breakthrough infections. Infections under iADE conditions not only facilitate the process of viral entry into monocytes and macrophages but also modify innate and adaptive intracellular antiviral mechanisms, suppressing type 1 interferon (IFN) production and resulting in enhanced DENV replication. The suppression observed in vitro has been documented in patients with severe (dengue hemorrhagic fever [DHF]) but not in patient with mild (dengue fever [DF]) secondary dengue virus infections. Important veterinary viral infections also may exhibit iADE. It is thought that use of formalin deconforms viral epitopes of RSV, resulting in poor Toll-like receptor (TLR) stimulation; suboptimal maturation of dendritic cells with reduced production of activation factors CD40, CD80, and CD86; decreased germinal center formation in lymph nodes; and the production of nonprotective antibodies. These antibodies fail to neutralize RSV, allowing replication with secondary stimulation of RSV-primed Th2 cells producing more low-avidity antibody, resulting in immune complexes deposited into affected tissue. However, when formalin-inactivated RSV was administered with a TLR agonist to mice, they were protected against wild-type virus challenge. Safe and effective vaccines against RSV/measles virus and dengue virus may benefit from a better understanding of how innate immune responses can promote production of protective antibodies.Keywords
This publication has 97 references indexed in Scilit:
- Cross-Reacting Antibodies Enhance Dengue Virus Infection in HumansScience, 2010
- A Prospective Nested Case-Control Study of Dengue in Infants: Rethinking and Refining the Antibody-Dependent Enhancement Dengue Hemorrhagic Fever ModelPLoS Medicine, 2009
- TLR9 agonist, but not TLR7/8, functions as an adjuvant to diminish FI-RSV vaccine-enhanced disease, while either agonist used as therapy during primary RSV infection increases disease severityVaccine, 2009
- Lack of antibody affinity maturation due to poor Toll-like receptor stimulation leads to enhanced respiratory syncytial virus diseaseNature Medicine, 2008
- Phenotyping of peripheral blood mononuclear cells during acute dengue illness demonstrates infection and increased activation of monocytes in severe cases compared to classic dengue feverVirology, 2008
- Role of Dendritic Cells in Antibody-Dependent Enhancement of Dengue Virus InfectionJournal of Virology, 2008
- The Role of T Cells in the Enhancement of Respiratory Syncytial Virus Infection Severity during Adult Reinfection of Neonatally Sensitized MiceJournal of Virology, 2008
- Localization of Dengue Virus in Naturally Infected Human Tissues, by Immunohistochemistry and In Situ HybridizationThe Journal of Infectious Diseases, 2004
- Interferon-Dependent Immunity Is Essential for Resistance to Primary Dengue Virus Infection in Mice, Whereas T- and B-Cell-Dependent Immunity Are Less CriticalJournal of Virology, 2004
- Dengue Viremia Titer, Antibody Response Pattern, and Virus Serotype Correlate with Disease SeverityThe Journal of Infectious Diseases, 2000