A Live Attenuated AP2X-1-Deficient Toxoplasma Strain Confers Protective Immunity Against Acute and Chronic Toxoplasmosis in a Murine Model
Wen-Bo Hao, Li-Xiu Sun, Ru-Shi Tu, Zhi Zheng, Chen-Ran Tian, Xing-Quan Zhu, Xiao-Nan ZhengToxoplasma gondii is an obligate intracellular apicomplexan parasite that poses serious risks to immunocompromised individuals and the global livestock industry. Our previous study showed that AP2X-1 regulates stage conversion and virulence of T. gondii; however, whether AP2X-1-deficient strains can serve as live-attenuated vaccine candidates is unknown. Here, we evaluated the in vivo virulence, protective efficacy, and induced immunity of the ap2X-1 knockout strain PruΔap2X-1. In Kunming mice, infection with even the highest tested dose (5 × 106 tachyzoites) of PruΔap2X-1 resulted in 100% survival without detectable brain cysts. Vaccination with 106 PruΔap2X-1 tachyzoites conferred complete protection (100% survival) against acute challenge with homologous type II Pru or heterologous ToxoDB#9 PYS strains, whereas control mice exhibited only 0% to 16.7% survival. Moreover, immunized mice orally challenged with Pru cysts showed 100% survival, and no brain cysts were detected under the conditions tested, compared with only 30% survival in control mice challenged with 10 cysts and no survival with 40 cysts. The vaccination induced a Th1-biased response as evidenced by significantly elevated T. gondii-specific total IgG, IgG2a, and the Th1 cytokines IFN-γ and IL-2, along with a significantly reduced IgG1/IgG2a ratio. Collectively, the attenuated PruΔap2X-1 strain generates strong protective immunity against acute and chronic infection with low-virulence strains (the type II Pru and ToxoDB#9 PYS), as well as partial protection against the hypervirulent type I RH strain, positioning it as a potential candidate for a live-attenuated vaccine, with a favorable safety profile observed under the experimental conditions.