Naegleria fowleri induces MUC5AC and pro-inflammatory cytokines in human epithelial cells via ROS production and EGFR activation

Author:

Cervantes-Sandoval Isaac12,Serrano-Luna José de Jesús3,Meza-Cervantez Patricia2,Arroyo Rossana2,Tsutsumi Víctor2,Shibayama Mineko2

Affiliation:

1. Department of Immunology, National School of Biological Sciences, National Polytechnic Institute, Av. Manuel M. Carpio and Plan de Ayala, Mexico City 11340, Mexico

2. Department of Infectomic and Molecular Pathogenesis, Center for Research and Advanced Studies, National Polytechnic Institute, Av. IPN 2508, Mexico City 07360, Mexico

3. Department of Cell Biology, Center for Research and Advanced Studies, National Polytechnic Institute, Av. IPN 2508, Mexico City 07360, Mexico

Abstract

Naegleria fowleriis an amoeboflagellate responsible for the fatal central nervous system (CNS) disease primary amoebic meningoencephalitis (PAM). This amoeba gains access to the CNS by invading the olfactory mucosa and crossing the cribriform plate. Studies using a mouse model of infection have shown that the host secretes mucus during the very early stages of infection, and this event is followed by an infiltration of neutrophils into the nasal cavity. In this study, we investigated the role ofN. fowleritrophozoites in inducing the expression and secretion of airway mucin and pro-inflammatory mediators. Using the human mucoepidermal cell line NCI-H292, we demonstrated thatN. fowleriinduced the expression of the MUC5AC gene and protein and the pro-inflammatory mediators interleukin-8 (IL-8) and interleukin-1β(IL-1β), but not tumour necrosis factor-αor chemokine c-c motif ligand 11 (eotaxin). Since the production of reactive oxygen species (ROS) is a common phenomenon involved in the signalling pathways of these molecules, we analysed if trophozoites were capable of causing ROS production in NCI-H292 cells by detecting oxidation of the fluorescent probe 2,7-dichlorofluorescein diacetate. NCI-H292 cells generated ROS after 15–30 min of trophozoite stimulation. Furthermore, the expression of MUC5AC, IL-8 and IL-1βwas inhibited in the presence of the ROS scavenger DMSO. In addition, the use of an epidermal growth factor receptor inhibitor decreased the expression of MUC5AC and IL-8, but not IL-1β. We conclude thatN. fowleriinduces the expression of some host innate defence mechanisms, such as mucin secretion (MUC5AC) and local inflammation (IL-8 and IL-1β) in respiratory epithelial cells via ROS production and suggest that these innate immune mechanisms probably prevent most PAM infections.

Publisher

Microbiology Society

Subject

Microbiology

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1. Naegleria;Molecular Medical Microbiology;2024

2. Systematic Review of Brain-Eating Amoeba: A Decade Update;International Journal of Environmental Research and Public Health;2023-02-09

3. Pro-inflammatory cytokine responses to Naegleria fowleri infection;Frontiers in Tropical Diseases;2023-01-18

4. Naegleria fowleri Cathepsin B Induces a Pro-Inflammatory Immune Response in BV-2 Microglial Cells via NF-κB and AP-1 Dependent-MAPK Signaling Pathway;International Journal of Molecular Sciences;2022-07-29

5. Three encephalitis-causing amoebae and their distinct interactions with the host;Trends in Parasitology;2022-03

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