Imiquimod Targets Toxoplasmosis Through Modulating Host Toll-Like Receptor-MyD88 Signaling
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Frontiers Media S.A.
Abstract
Toxoplasma gondii is a prevalent parasite of medical and veterinary importance. Tachyzoïtes and bradyzoïtes are responsible for acute and chronic toxoplasmosis (AT and CT), respectively. In immunocompetent hosts, AT evolves into a persistent CT, which can reactivate in immunocompromised patients with dire consequences. Imiquimod is an efficient immunomodulatory drug against certain viral and parasitic infections. In vivo, treatment with Imiquimod, throughout AT, reduces the number of brain cysts while rendering the remaining cysts un-infectious. Post-establishment of CT, Imiquimod significantly reduces the number of brain cysts, leading to a delay or abortion of reactivation. At the molecular level, Imiquimod upregulates the expression of Toll-like receptors 7, 11, and 12, following interconversion from bradyzoïtes to tachyzoïtes. Consequently, MyD88 pathway is activated, resulting in the induction of the immune response to control reactivated Toxoplasma foci. This study positions Imiquimod as a potent drug against toxoplasmosis and elucidates its mechanism of action particularly against chronic toxoplasmosis, which is the most prevalent form of the disease. © Copyright © 2021 Hamie, Najm, Deleuze-Masquefa, Bonnet, Dubremetz, El Sabban and El Hajj.
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Acute toxoplasmosis, Cerebral toxoplasmosis, Cytokines, Pathogen-host interaction, Reactivation, Animals, Brain, Cells, cultured, Female, Humans, Imiquimod, Mice, Mice, inbred balb c, Myeloid differentiation factor 88, Signal transduction, Toll-like receptors, Toxoplasma, Toxoplasmosis, Toll like receptor, Animal cell, Animal experiment, Animal model, Animal tissue, Article, Atherosclerosis, Bradyzoite, Cell migration, Computer assisted tomography, Confocal microscopy, Controlled study, Down regulation, Enzyme linked immunosorbent assay, Flow cytometry, Gene expression, Genotype, Host pathogen interaction, Immune response, Immunocompetent cell, Immunoreactivity, Innate immunity, Macrophage, Mouse, Nonhuman, Plasmodium falciparum, Protein expression, Real time polymerase chain reaction, Tachyzoite, Toxoplasma gondii, Tumor immunity, Upregulation, Veterinary medicine, Virus infection, Western blotting, Animal, Bagg albino mouse, Cell culture, Drug effect, Human, Immunology, Parasitology, Physiology