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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.
Abstract:
The purpose of this study is to document three cases of fatal measles infection in children who ranged in age from 1 to 6 years old. In each case, there was a rapidly progressive illness marked by severe respiratory and central nervous system disease; in two cases, tonsillar herniation occurred. The lung tissues showed marked interstitial pneumonitis with diffuse endothelial cell and pneumocyte degeneration; occasional multinucleated giant cells were observed. Brain sections showed a paucicellular inflammatory infiltrate with diffuse neuronal damage. Measles nucleoprotein and measles RNA were detected in each case by immunohistochemistry and reverse transcriptase (RT) in situ PCR, respectively. In the lung tissues, the viral protein and RNA localized primarily to pneumocytes and macrophages; infected endothelial cells were also evident. In the brain sections, the virus-infected cells cytologically had the appearance of neurons and microglial cells. The viral load, defined by the percentage of cells infected in a given field, was very high in the lung, spleen, and brain. Viral infection was associated with a marked increase in the number of cells expressing tumor necrosis factor alpha and concomitant reduction in the cells expressing suppressors of cytokine signaling (SOCS). It is concluded that measles infection should be in the differential diagnosis of a rapidly progressive illness in young children in the United States and that the pathogenesis is based, in part, on massive viral infection with up-regulation of cytokine expression that likely reflects, in part, down-regulation of inhibitors of cytokine mRNA receptor synthesis.
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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