Miltefosine enhances infectivity of a miltefosine-resistant Leishmania infantum strain by attenuating its innate immune recognition

Author:

Bulté DimitriORCID,Van Bockstal LieselotteORCID,Dirkx LauraORCID,Van den Kerkhof Magali,De Trez Carl,Timmermans Jean-PierreORCID,Hendrickx Sarah,Maes LouisORCID,Caljon GuyORCID

Abstract

Background Miltefosine (MIL) is currently the only oral drug available to treat visceral leishmaniasis but its use as first-line monotherapy has been compromised by an increasing treatment failure. Despite the scarce number of resistant clinical isolates, MIL-resistance by mutations in a single aminophospholipid transporter gene can easily be selected in a laboratory environment. These mutations result in a reduced survival in the mammalian host, which can partially be restored by exposure to MIL, suggesting a kind of drug-dependency. Methodology/Principal findings To enable a combined study of the infection dynamics and underlying immunological events for differential in vivo survival, firefly luciferase (PpyRE9) / red fluorescent protein (DsRed) double-reporter strains were generated of MIL-resistant (MIL-R) and syngeneic MIL-sensitive (MIL-S) Leishmania infantum. Results in C57Bl/6 and BALB/c mice show that MIL-R parasites induce an increased innate immune response that is characterized by enhanced influx and infection of neutrophils, monocytes and dendritic cells in the liver and elevated serum IFN-γ levels, finally resulting in a less efficient establishment in liver macrophages. The elevated IFN-γ levels were shown to originate from an increased response of hepatic NK and NKT cells to the MIL-R parasites. In addition, we demonstrated that MIL could increase the in vivo fitness of MIL-R parasites by lowering NK and NKT cell activation, leading to a reduced IFN-γ production. Conclusions/Significance Differential induction of innate immune responses in the liver was found to underlie the attenuated phenotype of a MIL-R parasite and its peculiar feature of drug-dependency. The impact of MIL on hepatic NK and NKT activation and IFN-γ production following recognition of a MIL-R strain indicates that this mechanism may sustain infections with resistant parasites and contribute to treatment failure.

Funder

Fonds Wetenschappelijk Onderzoek

Universiteit Antwerpen

Publisher

Public Library of Science (PLoS)

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health

Reference81 articles.

1. Epidemiology of visceral leishmaniasis;PD Ready;Clin Epidemiol.,2014

2. Global distribution maps of the leishmaniases;DM Pigott;Elife,2014

3. Leishmaniasis emergence and climate change;PD Ready;Rev. sci. tech. off. int. Epiz,2008

4. Leishmaniasis: A review;R Arenas;F1000Research,2017

5. Leishmaniasis Worldwide and Global Estimates of Its Incidence;J Alvar;PLoS One,2012

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