Expression of immune response genes in human corneal epithelial cells interacting with Aspergillus flavus conidia

Divya Arunachalam1,2, Shruthi Mahalakshmi Ramanathan1, Athul Menon3

  • 1Proteomics Department, Aravind Medical Research Foundation, Dr. G. Venkataswamy Eye Research Institute, Aravind Eye Care System, Madurai, Tamil Nadu, India.

BMC Genomics
|January 5, 2022
PubMed
Abstract

Insights

Human corneal epithelial cells respond to Aspergillus flavus by upregulating immune defense genes, while downregulating chemokine and B cell signaling pathways. This study highlights the importance of using both cell lines and primary cultures for accurate host-pathogen interaction research.

Area of Science:

  • Ophthalmology
  • Immunology
  • Mycology

Background:

  • Aspergillus flavus is a cause of human fungal keratitis.
  • Human corneal epithelial (HCE) cells internalize A. flavus conidia.
  • The immune responses of HCE cells to A. flavus are not fully understood.

Purpose of the Study:

  • To investigate the immune response gene expression of HCE cells upon exposure to A. flavus spores.
  • To identify key signaling pathways involved in the HCE cell interaction with A. flavus.

Main Methods:

  • Coculture of HCE cell line and primary cultures with A. flavus.
  • Confirmation of conidia internalization via immunofluorescence microscopy.
  • Targeted transcriptomic analysis using the NanoString nCounter platform and Human Immunology panel.
  • Bioinformatic analysis of differentially expressed genes using KEGG and FunRich tools.

Main Results:

  • Over 20 differentially expressed genes in the HCE cell line and over 10 in primary cultures were identified.
  • Upregulation of TNF, NF-KB, and Th17 signaling pathways.
  • Downregulation of chemokine and B cell receptor signaling pathways.
  • Activation of CDC42, PI3K, and Arf6 signaling pathways by clinical A. flavus isolates.

Conclusions:

  • HCE cells exhibit an immune defense gene upregulation when infected with A. flavus.
  • Chemokine and B cell signaling pathways are downregulated during A. flavus infection.
  • Variability in gene expression between cell lines and primary cultures underscores the need for using both in host-pathogen studies.