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In Vivo Infection with Leishmania amazonensis to Evaluate Parasite Virulence in Mice
Published on: February 20, 2020
A Trypanothione Synthetase-Based Subunit Vaccine Induces Protective Th1 Immunity against Visceral Leishmaniasis in
Ehasanullah Khan1, Atreyee Chatterjee1, Shiv Kumar1
1School of Biochemical Engineering, Indian Institute of Technology (BHU), Varanasi, Uttar Pradesh 221005, India.
Abstract:
Leishmaniasis, caused by Leishmania species, remains a major global health challenge due to limited therapeutic options, drug resistance, and relapse. To achieve long-term protection, an effective vaccine is urgently needed. In this work, we evaluated Leishmania donovani trypanothione synthetase as a vaccine candidate in BALB/c mice, formulated with CpG oligodeoxynucleotides and interleukin-2 to enhance immunogenicity. Mice were immunized with LdTryS alone or in combination with CpG and IL-2, followed by a challenge infection. Immunological parameters assessed included parasite burden, cytokine profiling, NO production, IgG isotype, T-cell proliferation, and intracellular cytokine production. We observed a significant reduction in parasite load in the spleen and liver. Higher IgG2a-associated absorbance values and an increased IgG2a/IgG1 ratio were observed at the tested serum dilution, consistent with a trend toward a Th1-associated humoral response. Splenocytes from vaccinated animals produced higher levels of IFN-γ, TNF-α, and IL-2, whereas the levels of IL-4 and IL-5 were significantly lowered. Collectively, these findings underscore that LdTryS alone, and even more effectively in combination with CpG and IL-2, triggers potent Th1-oriented humoral and cellular immunity and thus could be a promising vaccine candidate against VL.

