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Updated: Oct 18, 2025

Cultivation of Heligmosomoides Polygyrus: An Immunomodulatory Nematode Parasite and its Secreted Products
Published on: April 6, 2015
Cross-reactive, natural IgG recognizing L. major promote parasite internalization by dendritic cells and promote
Filiz Dermicik1, Susanna Lopez Kostka2, Stefan Tenzer3
1Institute for Molecular Medicine, University Medical Center, Johannes Gutenberg University Mainz, Mainz, Germany.
Insights
Natural IgG antibodies, like anti-phospholipid antibodies, enhance dendritic cell (DC) phagocytosis of Leishmania major, promoting protective immunity. This suggests prior B cell priming isn't essential for clearing this pathogen.
Area of Science:
- Immunology
- Parasitology
- Cell Biology
Background:
- Cutaneous leishmaniasis immunity relies on dendritic cell (DC) infection by Leishmania major.
- DCs phagocytose Leishmania via Fc receptor-mediated uptake of antibody-parasite complexes.
- The role of natural antibodies in the initial immune response to Leishmania was investigated.
Purpose of the Study:
- To assess the role of natural IgG antibodies in the host's initial immune response to Leishmania major.
- To determine if anti-phospholipid antibodies enhance Leishmania phagocytosis by DCs.
- To evaluate the impact of natural antibodies on disease outcome in vivo.
Main Methods:
- Leishmania major opsonized with normal mouse serum (NMS) or anti-phospholipid IgG (PL) were used.
- Phagocytosis by DCs and disease outcome in mice were assessed.
- Experiments utilized wild-type and IgMi mice (lacking secreted antibodies).
Main Results:
- Anti-PL antibodies significantly enhanced Leishmania major phagocytosis by DCs compared to NMS.
- Human myeloid DCs showed enhanced phagocytosis with cross-reactive human PL antibodies.
- Mice infected with PL-opsonized parasites had improved disease outcomes.
- IgMi mice were more susceptible, but NMS administration or IgG-opsonization normalized immunity.
Conclusions:
- Natural cross-reactive antibodies, such as anti-phospholipid antibodies, facilitate Leishmania major phagocytosis by DCs.
- This process induces protective immunity, suggesting prior Leishmania-specific B cell priming is not strictly required for pathogen clearance.
Abstract:
In cutaneous leishmaniasis, infection of dendritic cells (DC) is essential for generation of T cell-dependent protective immunity. DC acquires Leishmania major through Fc receptor (FcR)-mediated uptake of complexes comprising antibodies bound to parasites. We now assessed the development of the initial B cell and DC response to the parasite itself and if natural IgG play a role. L. major parasites display large numbers of phospholipids on their surface. Parasites were opsonized with normal mouse serum (NMS), or serum containing anti-phospholipid IgG (PL). We found that L. major bound to PL which significantly enhanced parasite phagocytosis by DC as compared to NMS. Similar results were obtained with cross-reactive human PL antibodies using myeloid primary human DC. In addition, mice infected with PL-opsonized parasites showed significantly improved disease outcome compared to mice infected with NMS-opsonized parasites. Finally, IgMi mice, which produce membrane-bound IgM only and no secreted antibodies, displayed increased susceptibility to infection as compared to wild types. Interestingly, once NMS was administered to IgMi mice, their phenotype was normalized to that of wild types. Upon incubation with IgG-opsonized parasite (IgG derived from infected mice or using PL antibodies), also the IgMi mice were able to show superior immunity. Our findings suggest that "natural" cross-reactive antibodies (e.g., anti-PL Ab) in NMS bind to pathogens to facilitate phagocytosis, which leads to induction of protective immunity via preferential DC infection. Prior L. major-specific B cell-priming does not seem to be absolutely required to facilitate clearance of this important human pathogen in vivo. KEY MESSAGES: We found that anti-phospholipid (anti-PL) antibodies enhance phagocytosis of L. major by DCs. We also found that normal mouse sera have natural antibodies that can imitate PL specific antibodies. Using different genetically modified mice, we found that these antibodies can be IgG, not only IgM.
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