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

被引:16
作者
Bulte, Dimitri [1 ]
Van Bockstal, Lieselotte [1 ]
Dirkx, Laura [1 ]
Van den Kerkhof, Magali [1 ]
De Trez, Carl [2 ]
Timmermans, Jean-Pierre [3 ]
Hendrickx, Sarah [1 ]
Maes, Louis [1 ]
Caljon, Guy [1 ]
机构
[1] Univ Antwerp, Dept Biomed Sci, Lab Microbiol Parasitol & Hyg LMPH, Antwerp, Belgium
[2] Vrije Univ Brussel, Lab Cellular & Mol Immunol CMIM, Brussels, Belgium
[3] Univ Antwerp, Dept Vet Sci, Lab Cell Biol & Histol, Antwerp, Belgium
关键词
TUMOR-NECROSIS-FACTOR; DRAINING LYMPH-NODES; T-CELLS; VISCERAL LEISHMANIASIS; IFN-GAMMA; DONOVANI PROMASTIGOTES; ORAL MILTEFOSINE; NEUTROPHILS; ACTIVATION; ALPHA;
D O I
10.1371/journal.pntd.0009622
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
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-gamma levels, finally resulting in a less efficient establishment in liver macrophages. The elevated IFN-gamma 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-gamma 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-gamma production following recognition of a MIL-R strain indicates that this mechanism may sustain infections with resistant parasites and contribute to treatment failure. Author summary Visceral leishmaniasis is a neglected tropical disease that is fatal if left untreated. Miltefosine is currently the only oral drug available but is increasingly failing to cure patients, resulting in its discontinuation as first-line drug in some endemic areas. To understand these treatment failures, we investigated the complex interplay of the parasite with the host immune system in the presence and absence of miltefosine. Our data indicate that miltefosine-resistant Leishmania parasites become severely hampered in their in vivo infectivity, which could be attributed to the induction of a pronounced innate immune response. Interestingly, the infection deficit was partially restored in the presence of miltefosine. Our results further indicate that miltefosine can exacerbate infections with resistant parasites by reducing innate immune recognition. This study provides new insights into the complex interplay between parasite, drug and host and discloses an immune-related mechanism of treatment failure.
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页数:27
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共 81 条
[21]   Distinct roles for lymphotoxin-α and tumor necrosis factor in the control of leishmania donovani infection [J].
Engwerda, CR ;
Ato, M ;
Stäger, S ;
Alexander, CE ;
Stanley, AC ;
Kaye, PM .
AMERICAN JOURNAL OF PATHOLOGY, 2004, 165 (06) :2123-2133
[22]   Macrophages, pathology and parasite persistence in experimental visceral leishmaniasis [J].
Engwerda, CR ;
Ato, M ;
Kaye, PM .
TRENDS IN PARASITOLOGY, 2004, 20 (11) :524-530
[23]   A role for tumor necrosis factor-α in remodeling the splenic marginal zone during Leishmania donovani infection [J].
Engwerda, CR ;
Ato, M ;
Cotterell, SEJ ;
Mynott, TL ;
Tschannerl, A ;
Gorak-Stolinska, PMA ;
Kaye, PM .
AMERICAN JOURNAL OF PATHOLOGY, 2002, 161 (02) :429-437
[24]   Trafficking of Leishmania donovani promastigotes in non-lytic compartments in neutrophils enables the subsequent transfer of parasites to macrophages [J].
Gueirard, Pascale ;
Laplante, Annie ;
Rondeau, Christiane ;
Milon, Genevibve ;
Desjardins, Michel .
CELLULAR MICROBIOLOGY, 2008, 10 (01) :100-111
[25]   IL-18, but not IL-15, contributes to the IL-12-dependent induction of NK-cell effector functions by Leishmania infantum in vivo [J].
Haeberlein, Simone ;
Sebald, Heidi ;
Bogdan, Christian ;
Schleicher, Ulrike .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2010, 40 (06) :1708-1717
[26]   Interaction of Leishmania with the host macrophage [J].
Handman, E ;
Bullen, DVR .
TRENDS IN PARASITOLOGY, 2002, 18 (08) :332-334
[27]   Evidence of a drug-specific impact of experimentally selected paromomycin and miltefosine resistance on parasite fitness in Leishmania infantum [J].
Hendrickx, S. ;
Beyers, J. ;
Mondelaers, A. ;
Eberhardt, E. ;
Lachaud, L. ;
Delputte, P. ;
Cos, P. ;
Maes, L. .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2016, 71 (07) :1914-1921
[28]   Lack of correlation between the promastigote back-transformation assay and miltefosine treatment outcome [J].
Hendrickx, S. ;
Eberhardt, E. ;
Mondelaers, A. ;
Rijal, S. ;
Bhattarai, N. R. ;
Dujardin, J. C. ;
Delputte, P. ;
Cos, P. ;
Maes, L. .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2015, 70 (11) :3023-3026
[29]   Experimental selection of paromomycin and miltefosine resistance in intracellular amastigotes of Leishmania donovani and L-infantum [J].
Hendrickx, S. ;
Boulet, G. ;
Mondelaers, A. ;
Dujardin, J. C. ;
Rijal, S. ;
Lachaud, L. ;
Cos, P. ;
Delputte, P. ;
Maes, L. .
PARASITOLOGY RESEARCH, 2014, 113 (05) :1875-1881
[30]   Donor CD4 T Cells Trigger Costimulation Blockade-Resistant Donor Bone Marrow Rejection Through Bystander Activation Requiring IL-6 [J].
Hock, K. ;
Pilat, N. ;
Baranyi, U. ;
Mahr, B. ;
Gattringer, M. ;
Klaus, C. ;
Wekerle, T. .
AMERICAN JOURNAL OF TRANSPLANTATION, 2014, 14 (09) :2011-2022