Sulforaphane targets Leishmania promastigotes to inhibit parasite motility and alters host autophagy to suppress parasite replication in macrophages

Read the full article See related articles

Discuss this preprint

Start a discussion What are Sciety discussions?

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

2.

Visceral leishmaniasis (VL) is a neglected tropical disease caused by the protozoan parasites Leishmania infantum (LI) and Leishmania donovani (LD). VL disproportionately affects populations that live in extreme poverty and those affected by climate change. Treatment options are limited, fiscally prohibitive, and toxic to some that receive treatment. In cases where VL remains untreated, death is inevitable. Although disease prevalence is increasing in affluent countries with robust research capabilities, there remains little economic incentive to search for new, more accessible non-toxic treatments, emphasizing the neglected tropical aspect of this disease. Our previous results indicate that sulforaphane (SFN) inhibits VL promastigote and amastigote growth through an unknown mechanism. The current study extends the anti-parasitic effects of SFN establishing SFN’s efficacy against multiple Leishmania parasites including L. tropica, L. mexicana, L. panamensis and L. amazonesis . Moreover, SFN was an effective therapy post-infection as stably infected macrophages treated with SFN (10 µM for 48 hours) had a significant reduction in the number of infected cells and the number of amastigotes per cell against Leishmania species that cause both VL and cutaneous leishmaniasis (CL). Moreover, SFN led to a reduction of motility within 6 hours of treatment indicating a direct interaction with the parasite. Alkynyl SFN (A-SFN) was subsequently synthesized to determine the specific binding target of SFN. Interestingly, A-SFN was more effective than SFN in decreasing parasite viability and inhibiting motility against VL and CL parasite species at equivalent concentrations. Immunofluorescence analysis utilizing click chemistry indicated A-SFN binds to cytosolic promastigote components and colocalized only minimally with KMP-11. The binding of SFN to KMP-11 could not be confirmed in vitro. In terms of intracellular host effects, SFN treatment increased the induction of nonselective macroautophagy by increased lysosomal acidification as quantified by DALGreen and FITC-dextran staining in infected macrophages. The induction of autophagy occurred simultaneously with the upregulation of expression of cytoprotective, antioxidant and autophagy-related genes via the NRF2 transcription factor. These data provide robust evidence that SFN is an excellent lead compound against Leishmania that initiates multiple innate immune pathways that enable enhanced parasite killing. Future studies will focus on the in vivo efficacy of SFN against CL.

3.

KEY FINDINGS

  • Sulforaphane (SFN) decreased promastigote viability from six Leishmania species

  • SFN is an effective therapy that decreased the number of intracellular VL and CL amastigotes in macrophages post-infection

  • SFN inhibited promastigote motility within 6 hours

  • SFN increased NRF2-dependent pathway expression and lysosomal acidification in cells infected by Leishmania

Article activity feed