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Qiangqiang Wang

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Open access Aug 2026

Live-attenuated Toxoplasma gondii RHΔddx6 mutant establishes comprehensive immunity against acute, chronic, and congenital toxoplasmosis

ABSTRACT Toxoplasma gondii is an obligate intracellular parasite causing severe disease in immunocompromised individuals and congenitally infected infants. Despite decades of research, no licensed human vaccine exists. This study evaluates a novel live-attenuated vaccine candidate based on depletion of DDX6, a conserved DEAD-box RNA helicase involved in post-transcriptional gene regulation. A Δddx6 strain was generated in the type I virulent RH strain using CRISPR/Cas9, and its phenotype was comprehensively assessed. Although the mutant displayed only subtle defects in certain in vitro assays, it exhibited almost complete avirulence in mice even at high inoculums (106 tachyzoites), representing a dramatic attenuation phenotype not fully predicted by in vitro analyses. A single immunization with 1 × 106 Δddx6 tachyzoites induced robust Th1-biased immunity characterized by high T. gondii-specific IgG titers, CD4+/CD8+ T-cell activation, and IFN-γ production. Vaccinated mice achieved 100% survival against lethal RH challenge and showed a 99.5% reduction in brain cyst burden following PRU strain infection. Furthermore, the vaccine completely prevented vertical transmission in a pregnancy model. Transcriptomic analysis revealed widespread dysregulation in the Δddx6 strain, particularly downregulation of key virulence factors (ROPs, SAGs) and genes involved in intracellular transport. These findings demonstrate that targeting DDX6 generates a highly attenuated yet strongly immunogenic strain with exceptional cross-stage protective efficacy against acute, chronic, and congenital toxoplasmosis, representing a promising vaccine candidate worthy of further development.

Zhen-Ke Yang, Jinghui Wang, Junru Wu et al. · 0 citations
Review Jul 2026

The tripartite framework of parasite virulence: drivers, consequences, and implications for wildlife and public health.

Parasite virulence, a key regulator in ecosystems, critically influences wildlife population dynamics and food web stability. Although classical co-evolutionary theory posits a trend toward benign symbiosis, empirical evidence demonstrates that virulence is shaped by complex trade-offs among host, parasite, and environmental factors. This study provides a comprehensive analysis of the drivers of virulence, including host strategies (immune competence, density-dependent transmission, spatial behavior), parasite strategies (transmission mode,within-host competition, genetic diversity), and environmental dimensions (climate change, habitat fragmentation, species invasions). We further examine how disruptions to this tripartite equilibrium can precipitate population declines, biodiversity loss, and increased zoonotic spillover risk. Within the "One Health" framework, we highlight the necessity of maintaining dynamic balance among virulence, hosts, and the environment to safeguard ecological integrity and public health. Accordingly, we propose integrated management strategies to sustain these interactions. This work underscores the interdependence of virulence evolution and ecosystem processes, offering insights for proactive conservation and disease mitigation.

Qiangqiang Wang, Yurun Su, Xiaoxuan Feng et al. · 0 citations

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