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Updated: Oct 14, 2025

Quantification of Intracellular Growth Inside Macrophages is a Fast and Reliable Method for Assessing the Virulence of Leishmania Parasites
Published on: March 16, 2018
Resistance Against Leishmania major Infection Depends on Microbiota-Guided Macrophage Activation
Mateus Eustáquio Lopes1, Liliane Martins Dos Santos1, David Sacks2
1Laboratório de Gnotobiologia e Imunologia, Instituto de Ciências Biológicas, Departamento de Bioquímica e Imunologia, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil.
Abstract:
Innate immune cells present a dual role during leishmaniasis: they constitute the first line of host defense but are also the main host cells for the parasite. Response against the infection that results in the control of parasite growth and lesion healing depends on activation of macrophages into a classical activated phenotype. We report an essential role for the microbiota in driving macrophage and monocyte-derived macrophage activation towards a resistance phenotype against Leishmania major infection in mice. Both germ-free and dysbiotic mice showed a higher number of myeloid innate cells in lesions and increased number of infected cells, mainly dermal resident and inflammatory macrophages. Despite developing a Th1 immune response characterized by the same levels of IFN-γ production as the conventional mice, germ-free mice presented reduced numbers of iNOS+ macrophages at the peak of infection. Absence or disturbance of host microbiota impaired the capacity of bone marrow-derived macrophage to be activated for Leishmania killing in vitro, even when stimulated by Th1 cytokines. These cells presented reduced expression of inos mRNA, and diminished production of microbicidal molecules, such as ROS, while presenting a permissive activation status, characterized by increased expression of arginase I and il-10 mRNA and higher arginase activity. Colonization of germ-free mice with complete microbiota from conventional mice rescued their ability to control the infection. This study demonstrates the essential role of host microbiota on innate immune response against L. major infection, driving host macrophages to a resistance phenotype.
Insights
The host microbiota is crucial for controlling Leishmania major infection by activating macrophages. Germ-free mice exhibit impaired parasite clearance due to altered macrophage function.
Area of Science:
- Immunology
- Microbiology
- Parasitology
Background:
- Innate immune cells play a dual role in leishmaniasis, acting as both defense and host for the parasite.
- Macrophage activation is critical for controlling Leishmania major infection and promoting lesion healing.
Purpose of the Study:
- To investigate the role of host microbiota in modulating innate immune cell responses against Leishmania major infection.
- To determine how microbiota influences macrophage activation and parasite control.
Main Methods:
- Comparison of Leishmania major infection in germ-free, dysbiotic, and conventional mice.
- Analysis of myeloid cell populations, macrophage activation markers (iNOS, arginase I), and cytokine production (IFN-γ, IL-10).
- In vitro assessment of bone marrow-derived macrophage (BMDM) leishmanicidal activity and activation status.
Main Results:
- Germ-free and dysbiotic mice showed increased myeloid cells and infected macrophages in lesions.
- Despite similar Th1 responses (IFN-γ), germ-free mice had fewer iNOS+ macrophages and impaired in vitro Leishmania killing.
- Absence of microbiota led to reduced iNOS and ROS production, with increased arginase I and IL-10 expression in BMDMs.
- Colonization with conventional microbiota restored infection control in germ-free mice.
Conclusions:
- Host microbiota is essential for driving macrophages towards a resistance phenotype against Leishmania major.
- Microbiota-dependent macrophage activation is critical for controlling parasite growth and promoting host defense in leishmaniasis.
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