Vaccines (May 2024)

Protective Efficacy of a Novel DNA Vaccine with a CL264 Molecular Adjuvant against <i>Toxoplasma gondii</i> in a Murine Model

  • Kunping Ju,
  • Yunnan Zhang,
  • Zhaolin Xu,
  • Lingyu Li,
  • Xiaoyan Zhao,
  • Huaiyu Zhou

DOI
https://doi.org/10.3390/vaccines12060577
Journal volume & issue
Vol. 12, no. 6
p. 577

Abstract

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Toxoplasmosis is a significant global zoonosis with devastating impacts, and an effective vaccine against toxoplasmosis for humans has not yet been developed. In this study, we designed and formulated a novel DNA vaccine encoding the inhibitor of STAT1 transcriptional activity (IST) of T. gondii utilizing the eukaryotic expression vector pEGFP-N1 for the first time, with CL264 being a molecular adjuvant. Following intramuscular injection of the vaccine into mice, the levels of antibodies and cytokines were assessed to evaluate the immune response. Additionally, mice were challenged with highly virulent RH-strain tachyzoites of T. gondii, and their survival time was observed. The results show that the levels of IgG in serum, the ratio of IgG2a/IgG1 and the levels of IFN-γ in splenocytes of mice were significantly higher in the pEGFP-TgIST group and the pEGFP-TgIST + CL264 group than in the control group. In addition, the proportion of CD4+/CD8+ T cells was higher in mice immunized with either the pEGFP-TgIST group (p p T. gondii RH strain infection (p T. gondii infection in the immunized mice, which suggests that TgIST holds potential as a candidate for further development as a DNA vaccine.

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