Biphasic lung injury during Streptococcus pneumoniae infection in a murine model

A Prevotat1, C Rouyer1, P Gosset2

  • 1Recherche translationnelle : relations hôte pathogènes, université de Lille, CHU de Lille, EA7366, 59000 Lille, France.

Abstract

Insights

Streptococcus pneumoniae causes pneumonia by disrupting lung epithelial barriers. This study reveals a biphasic response, initially reversible, then leading to significant epithelial injury and impaired lung function.

Area of Science:

  • Pulmonary Medicine
  • Microbiology
  • Cell Biology

Background:

  • Streptococcus pneumoniae is a primary cause of community-acquired pneumonia.
  • Understanding the lung epithelial response to S. pneumoniae is crucial for treating pneumonia.

Purpose of the Study:

  • To analyze the epithelial response to Streptococcus pneumoniae-induced lung injury.
  • To investigate the impact of S. pneumoniae on lung epithelial barrier function.

Main Methods:

  • Utilized an in vitro model with 16HBE cells and an in vivo murine model of acute lung injury.
  • Assessed epithelial permeability using transepithelial resistance (TER) and junction protein analysis.
  • Measured alveolar permeability, distal alveolar fluid clearance (DAFC), and inflammatory response in vivo.

Main Results:

  • In vitro, S. pneumoniae decreased TER and altered junction proteins.
  • In vivo, S. pneumoniae caused a transient increase in alveolar permeability and DAFC, followed by a persistent increase in permeability and decreased DAFC.
  • The epithelial response exhibited a biphasic pattern.

Conclusions:

  • The epithelial response to S. pneumoniae is biphasic, involving reversible junction alteration and subsequent epithelial injury.
  • Impaired alveolar-capillary barrier function, indicated by decreased DAFC, reflects severe epithelial injury.
  • Findings highlight the critical role of epithelial barrier integrity in S. pneumoniae pneumonia.