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Arbovirus Infections As Screening Tools for the Identification of Viral Immunomodulators and Host Antiviral Factors
Published on: September 13, 2018
Persistent and Severe Viral Replication in PBMCs with Moderate Immunosuppression Served an Alternative Novel
Chuchu Feng1,2, Yan Bu1,2, Jiaxi Cai1,2
1Department of Viral Infectious Diseases of Special Animals, Institute of Special Animal and Plant Sciences, Chinese Academy of Agricultural Sciences, Changchun, Jilin, China.
Abstract:
Measles virus and canine distemper virus (CDV) cause lethal infections in their respective hosts characterized by severe immunosuppression. To furtherly acknowledge the attenuated mechanisms of the regionally ongoing epidemic CDV isolates and provide novel perspectives for designing new vaccines and therapeutic drugs, a recombinant CDV rHBF-vacH was employed with a vaccine hemagglutinin (H) gene replacement by reverse genetics based on an infectious cDNA clone for the CDV wild-type HBF-1 strain. Interestingly, unlike previously published reports that a vaccine H protein completely changed a pathogenic wild-type CDV variant to be avirulent, rHBF-vacH was only partially attenuated by alleviating the degree of viral immunosuppression, and still caused 66.7% lethality in ferrets with a prolonged period of disease. Further comparisons of pathogenic mechanisms proved that the weaker but necessary invasions into peripheral blood mononuclear cells (PBMCs) of rHBF-vacH, and subsequently persistent viral replications in PBMCs and multiple organs, together contributed to its 66.7% mortality. In addition, despite significantly higher titers than the parent viruses, rHBF-vacH would not be a suitable candidate for a live vaccine, with great invasion and infection potentials of PBMCs from 16 tested kinds of host species. Altogether, sustained and severe viral replication in PBMCs with moderate immunosuppression was first proven to be an alternative novel pathogenic mechanism for CDV, which might help us to understand possible reasons for CDV fatal infections among domestic dogs and the highly susceptible wild species during natural transmission. IMPORTANCE Despite widespread vaccine campaigns for domestic dogs, CDV remained an important infectious disease in vaccinated carnivores and wild species. In recent years, the regionally ongoing epidemic CDV isolates have emphasized conservation threats to, and potentially disastrous epidemics in, endangered species worldwide. However, little is known about how to deal with the CDV variants constantly regional epidemic. In this study, we employed a recombinant CDV rHBF-vacH with a vaccine H gene replacement in a CDV wild-type HBF-1 context to attenuate the epidemic CDV variant to design a new vaccine candidate. Interestingly, rHBF-vacH was only partially attenuated by alleviating the degree of viral immunosuppression, and still caused 66.7% lethality in ferrets by weaker but necessary invasions into PBMCs, and subsequently persistent and severe viral replications in PBMCs. Significantly higher virus titers of rHBF-vacH in vitro might indicate the rapid cell-to-cell spreads in vivo that indirectly contribute to fatal infections of rHBF-vacH in ferrets.
Insights
A modified canine distemper virus (CDV) showed partial attenuation, causing significant lethality in ferrets due to persistent replication in peripheral blood mononuclear cells (PBMCs). This finding reveals a novel pathogenic mechanism for CDV, impacting vaccine development for susceptible species.
Area of Science:
- Veterinary Virology
- Immunology
- Molecular Biology
Background:
- Canine distemper virus (CDV) causes lethal infections with severe immunosuppression, posing threats to domestic and wild carnivores.
- Understanding CDV variants and their pathogenic mechanisms is crucial for developing effective vaccines and treatments.
- Current vaccine strategies face challenges against regionally epidemic CDV isolates.
Purpose of the Study:
- To investigate the attenuated mechanisms of epidemic CDV isolates using a recombinant virus.
- To explore novel perspectives for designing new CDV vaccines and therapeutic drugs.
- To analyze the pathogenicity of a recombinant CDV (rHBF-vacH) with a replaced hemagglutinin (H) gene.
Main Methods:
- Reverse genetics was used to create a recombinant CDV (rHBF-vacH) by replacing the H gene of the wild-type HBF-1 strain with a vaccine H gene.
- The pathogenicity of rHBF-vacH was assessed in ferrets, evaluating lethality, disease duration, and immunosuppression levels.
- Viral replication in peripheral blood mononuclear cells (PBMCs) and various organs was analyzed, alongside viral titers in vitro.
Main Results:
- rHBF-vacH exhibited partial attenuation, causing 66.7% lethality in ferrets with prolonged disease, unlike fully avirulent strains.
- The recombinant virus showed weaker but persistent invasion and replication in PBMCs, contributing to mortality.
- rHBF-vacH demonstrated high invasion and infection potential in PBMCs from multiple host species, deeming it unsuitable as a live vaccine.
Conclusions:
- Sustained and severe viral replication in PBMCs, coupled with moderate immunosuppression, represents a novel pathogenic mechanism for CDV.
- This finding offers insights into CDV fatal infections in domestic dogs and susceptible wild species.
- The study highlights the need for alternative vaccine strategies against evolving CDV variants.

