Histologic and molecular correlates of fatal measles infection in children

Jose Antonio Plaza1, Gerard J Nuovo

  • 1Department of Pathology, The Ohio State University, Columbus, Ohio 43210-1228, USA.

Insights

Fatal measles infection in children presents as rapid respiratory and central nervous system disease. High viral load drives severe illness by altering cytokine signaling pathways.

Area of Science:

  • Pediatric Infectious Diseases
  • Virology
  • Pathology

Background:

  • Measles infection can cause severe illness, particularly in young children.
  • Understanding the pathogenesis of severe measles is crucial for timely diagnosis and treatment.

Observation:

  • Three fatal cases of measles in children aged 1-6 years exhibited rapid, severe respiratory and central nervous system disease.
  • Autopsies revealed widespread lung inflammation (interstitial pneumonitis) and brain damage (neuronal injury).
  • Measles virus nucleoprotein and RNA were detected in lung, spleen, and brain tissues, with high viral loads.

Findings:

  • Viral infection targeted pneumocytes, macrophages, neurons, and microglial cells.
  • Measles infection led to increased tumor necrosis factor alpha and decreased suppressors of cytokine signaling (SOCS).
  • Pathogenesis involves massive viral replication and dysregulated cytokine expression.

Implications:

  • Measles should be considered in the differential diagnosis of rapidly progressive childhood illnesses in the US.
  • The findings highlight the critical role of viral load and cytokine dysregulation in severe measles pathogenesis.
  • Further research into cytokine signaling in measles may reveal therapeutic targets.

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