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DEY, R.

Publications and source records attributed to DEY, R..

3 recordsLinked to original sources

Centrin-deficient Leishmania mexicana confers protection against Old World visceral leishmaniasis

Leishmaniasis is one of the top neglected tropical diseases with significant morbidity and mortality in low and middle-income countries (LMIC). However, this disease is also spreading in the developed world. Currently, there is a lack of effective strategies to control this disease. Vaccination can be an effective measure to control leishmaniasis and has the potential to achieve disease elimination. Recently, we have generated centrin gene-deleted new world L. mexicana (LmexCen-/-) parasites using CRISPR/Cas9 and showed that they protect mice against a homologous L. mexicana infection that causes cutaneous disease. In this study, we tested whether LmexCen-/- parasites can also protect against visceral leishmaniasis caused by L. donovani in a hamster model. We show that immunization with LmexCen-/- parasites is safe and does not cause lesions. Furthermore, such immunization conferred protection against visceral leishmaniasis caused by a needle-initiated L. donovani challenge, as indicated by a significant reduction in the parasite burdens in the spleen and liver and lack of mortality. Similar control of parasite burden was also observed against a sand fly mediated L. donovani challenge. Importantly, immunization with LmexCen-/- down-regulated the Th2 response as indicated by a significant reduction in the anti-inflammatory cytokines such as IL-10 and IL-4 and increased pro-inflammatory cytokine IFN-{gamma} resulting in higher IFN-{gamma}/IL-10 and IFN-{gamma}/IL4 ratios compared to non-immunized animals. This contrasts with our studies with L. major centrin deletion mutants that showed a dominant Th1 response compared to L. major wild-type infection suggesting the divergent mechanisms of protection in the two mutant parasites. LmexCen-/- immunization resulted in long-lasting protection against L. donovani infection. Further, since the efficacy of LmCen-/- has not been determined against Leishmania strains prevalent in the Americas, LmexCen-/- may be a viable alternative. Taken together, our study demonstrates that immunization with LmexCen-/- parasites is safe and efficacious against old world visceral leishmaniasis.

immunology↗

Skin resident memory cells generated by the L. major centrin gene deleted parasites mediate protective immune response analogous to leishmanization

Leishmaniasis is a vector-borne parasitic disease transmitted through the bite of a sand fly with no available vaccine for humans. Recently, we have developed a live attenuated Leishmania major centrin gene deleted parasite strain (LmCen-/-) that induced protection against a homologous and heterologous challenges. The protection is mediated by IFN{gamma} secreting CD4+ T effector cells and multifunctional T cells, which is analogous to leishmanization. Previously, skin tissue resident memory T cells (TRM cells) were shown to be crucial for host protection in a leishmanization model. In this study, we evaluated generation and function of skin TRM cells following immunization with LmCen-/- parasites and compared those with leishmanization. In the absence of recoverable LmCen-/- parasites, the skin of immunized mice showed functional TRM cells comparable to leishmanized mice. The generation of the skin TRM cells was supported by the induction of cytokines and chemokines essential for their production and survival. Following challenge infection with wild type L. major, TRM cells specific to L. major were rapidly recruited and proliferated at the site of infection in the immunized mice which was similar to leishmanization. Further, upon challenge, CD4+ TRM cells induced higher levels of IFN{gamma} and Granzyme B in the immunized and leishmanized mice than non-immunized mice. Taken together, our studies demonstrate that a genetically modified live attenuated Leishmania vaccine generates functional CD4+ TRM cells that mediate protection and can be a safer alternative to leishmanization.

immunology↗

Preclinical validation of a second generation leishmanization vaccine against vector transmitted fatal visceral leishmaniasis

Visceral Leishmaniasis (VL) is fatal if untreated. There is no licensed vaccine available against human leishmaniasis. We recently demonstrated protection in mice against L. major infection using a CRISPR genome edited attenuated Leishmania major strain (LmCen-/-). Here, as a pre-clinical step, we evaluated the protective efficacy of LmCen-/- against VL induced by sand fly transmitted Leishmania donovani in hamsters. Intradermal immunization of hamsters with LmCen-/- did not develop any lesion; while still priming a pro-inflammatory immune response. When challenged with L. donovani either by intradermal needle injection or by infected sand flies, LmCen-/--immunized hamsters were protected, not showing spleen or liver pathology averting VL fatality compared to control animals. Spleen cells from LmCen-/- immunized and infected sand fly challenged hamsters produced significantly higher Th1-associated cytokines and chemokines including IFN-{gamma} and TNF-, and significantly reduced expression of the anti-inflammatory cytokines IL-10 and IL-21, compared to non-immunized challenged animals. We further developed a GLP-grade LmCen-/- which showed equal protection as laboratory-grade LmCen-/- parasites in hamsters. Importantly, GLP-grade LmCen-/- parasites also induced a proinflammatory immune response in the PBMCs isolated from healthy people living in non-endemic and endemic for VL as well as cured VL people living in endemic region. Together, this study demonstrates that the LmCen-/- parasites are safe and efficacious against VL and it is a strong candidate vaccine to be tested in a human clinical trial.

immunology↗