The Roles of NOD-like Receptors in Innate Immunity in Otitis Media

Int J Mol Sci. 2022 Feb 21;23(4):2350. doi: 10.3390/ijms23042350.

Abstract

Acute otitis media (AOM) can persist or lead to various complications in individuals in which the innate immune system is impaired. In this context, impaired expression of nucleotide-binding oligomerization domain (NOD)-like receptor (NLR), an intracellular pathogen-recognition receptor (PRR), is involved in the etiology of OM in humans and animals, affecting its development, severity, chronicity, recurrence, and associated complications. To assess this relationship, we reviewed literature reports relating NLR expression patterns with the pathophysiology and clinical features of OM in the larger context of impaired innate immunity. We summarized the results of published studies on the expression of NLRs in animals and humans in acute otitis media (AOM), otitis media with effusion (OME), chronic otitis media (COM) with cholesteatoma, and COM without cholesteatoma. NLRs were expressed mainly in association with bacterial infection in AOM, OME, COM with cholesteatoma, and COM without cholesteatoma. In addition, expression of NLRs was affected by the presence or absence of bacteria, fluid characteristics, disease recurrence, tissue type, and repeated surgery. Various factors of the innate immune system are involved in the pathogenesis of OM in the middle ear. NLRs are expressed in AOM, OME, COM with cholesteatoma, and COM without cholesteatoma. Impaired NLR expression induced the development, chronicity and recurrence of OM and exacerbated associated complications, indicating that NLRs have important roles in the pathogenesis of OM.

Keywords: NOD-like receptor; cholesteatoma; effusion; granulation tissue; otitis media.

Publication types

  • Review

MeSH terms

  • Animals
  • Bacterial Infections / immunology
  • Bacterial Infections / metabolism
  • Humans
  • Immunity, Innate*
  • NLR Proteins*
  • Otitis Media / immunology
  • Otitis Media / metabolism*

Substances

  • NLR Proteins