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CX3CR1-Expressing Myeloid Cells Regulate Host–Helminth Interaction and Lung Inflammation

  • Sang Yong Kim
  • , Mark A. Barnes
  • , Suhas Sureshchandra
  • , Andrea R. Menicucci
  • , Jay J. Patel
  • , Ilhem Messaoudi
  • , Meera G. Nair

Producción científica: Articlerevisión exhaustiva

3 Citas (Scopus)

Resumen

Many helminth life cycles, including hookworm, involve a mandatory lung phase, where myeloid and granulocyte subsets interact with the helminth and respond to infection-induced lung injury. To evaluate these innate subsets in Nippostrongylus brasiliensis infection, reporter mice for myeloid cells (CX3CR1GFP) and granulocytes (PGRPdsRED) are employed. Nippostrongylus infection induces lung infiltration of reporter cells, including CX3CR1+ myeloid cells and PGRP+ eosinophils. Strikingly, CX3CR1GFP/GFP mice, which are deficient in CX3CR1, are protected from Nippostrongylus infection with reduced weight loss, lung leukocyte infiltration, and worm burden compared to CX3CR1+/+ mice. This protective effect is specific for CX3CR1 as CCR2-deficient mice do not exhibit reduced worm burdens. Nippostrongylus co-culture with lung Ly6C+ monocytes or CD11c+ cells demonstrates that CX3CR1GFP/GFP monocytes secrete more pro-inflammatory cytokines and actively bind the parasites causing reduced motility. RNA sequencing of Ly6C+ or CD11c+ cells shows Nippostrongylus-induced gene expression changes, particularly in monocytes, associated with inflammation, chemotaxis, and extracellular matrix remodeling pathways. Analysis reveals cytotoxic and adhesion molecules as potential effectors against the parasite, such as Gzma and Gzmb, which are elevated in CX3CR1GFP/GFP monocytes. These studies validate a dual innate cell reporter for lung helminth infection and demonstrate that CX3CR1 impairs monocyte–helminth interaction.

Idioma originalEnglish
Número de artículo2101078
PublicaciónAdvanced Biology
Volumen6
N.º3
DOI
EstadoPublished - mar 2022

Nota bibliográfica

Publisher Copyright:
© 2022 Wiley-VCH GmbH

Financiación

S.Y.K., M.A.B., and S.S. contributed equally to this work. These studies were supported by the National Institutes of Health/NIAID (R01AI153195 to M.G.N.; R01AI091759 to M.G.N. and M.A.B.). The authors thank David D. Lo for provision of the PGRPredCx3CR1GFP transgenic mice; Spencer H. Wang, Jessica C. Jang, and Hashini M. Batugedara for assistance with experiments; Holly Eckelhoefer and John Weger of the UC Riverside Genomics core (Riverside, CA) for assistance with cell sorting and RNA sequencing.

FinanciadoresNúmero del financiador
National Institutes of Health (NIH)
National Institute of Allergy and Infectious DiseasesR01AI153195, R01AI091759

    ASJC Scopus subject areas

    • Biomaterials
    • Biomedical Engineering
    • General Biochemistry, Genetics and Molecular Biology

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