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Published on: April 4, 2025
Infection and Activation of Human Neutrophils with Fluorescent Leishmania infantum
R E Davis1, C J Thalhofer2, M E Wilson1,3,4
1Interdisciplinary Program in Immunology, University of Iowa, Iowa City, IA, USA.
Abstract:
Neutrophils (PMNs) are recruited in high numbers to sites of host infection by the protozoan parasites of the genus Leishmania. Although PMNs are capable of phagocytizing Leishmania parasites and are potent producers of anti-microbial compounds including reactive oxygen species (ROS), they are unable to control the establishment of infection. Prior studies document production of ROS in isolated PMNs incubated with Leishmania under conditions allowing phagocytosis, but without a measure of single cells' responses it cannot be discerned whether PMN activation and ROS production is suppressed or ineffective in the cells that internalize the parasite. To address these interactions, we engineered a strain of fluorescent, mCherry-expressing Leishmania infantum (mCherry-Li). By infecting isolated human PMNs in vitro with mCherry-Li, we observed ready association of the parasites with PMNs in a time- and dose-dependent fashion. We also examined production of PMN ROS (using the fluorescent compound DHR123) and PMN activation (as evidence by loss of surface CD62L expression). Whereas many Li-associated (mCherry+) PMNs responded to parasite interactions and uptake with ROS production and/or activation, a proportion exhibited neither response. Furthermore, a large proportion of mCherry - "bystander" PMNs displayed both ROS production and activation. The heterogeneous response of PMNs to Leishmania exposure leads us to hypothesize, first, that some PMNs exhibit decreased activation upon phagocytosis of Leishmania, and could support their maintenance. Second, responses of bystander PMNs may contribute to a local inflammatory environment that is ineffective at parasite clearance.
Insights
Human neutrophils (PMNs) encounter Leishmania parasites but show varied responses. Some PMNs fail to activate after parasite uptake, potentially aiding infection, while bystander PMNs contribute to ineffective inflammation.
Area of Science:
- Immunology
- Parasitology
- Cell Biology
Background:
- Neutrophils (PMNs) are crucial in fighting infections but struggle against Leishmania parasites.
- Previous studies lacked single-cell resolution to understand PMN responses to Leishmania phagocytosis.
Purpose of the Study:
- To investigate the heterogeneous responses of human PMNs to Leishmania infantum infection at a single-cell level.
- To determine if PMN activation and reactive oxygen species (ROS) production are suppressed or ineffective in cells internalizing Leishmania.
Main Methods:
- Engineered a fluorescent mCherry-expressing Leishmania infantum (mCherry-Li) strain.
- Infected isolated human PMNs in vitro with mCherry-Li.
- Assessed PMN ROS production using DHR123 and PMN activation via CD62L expression loss.
Main Results:
- Observed dose- and time-dependent association of mCherry-Li with PMNs.
- Found heterogeneous PMN responses: some mCherry+ PMNs showed ROS production/activation, while others did not.
- Noted that a significant proportion of bystander (mCherry-) PMNs exhibited both ROS production and activation.
Conclusions:
- Hypothesize that some PMNs exhibit reduced activation after Leishmania phagocytosis, potentially supporting parasite survival.
- Suggest that bystander PMN responses may create an inflammatory environment that fails to clear the parasite.
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