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Updated: May 14, 2026

An Efficient Method for Adenovirus Production
Published on: June 10, 2021
Detection of Adenoviral E1A Gene in Guthrie Cards for Insights into Pediatric Cancer Origin
Gracia Mendoza1,2, Rebeca Guerrero3, Mark Strunk3
1Instituto de Investigación Sanitaria Aragón (IIS Aragón), 50009 Zaragoza, Spain.
Insights
Adenoviral early region (E1A) DNA was detected in neonatal Guthrie cards and tumor tissues of children with diverse cancers. This suggests a potential link between early adenovirus exposure and childhood cancer risk.
Area of Science:
- Virology
- Oncology
- Genetics
Background:
- Adenoviruses are linked to childhood cancers, particularly leukemia.
- Previous neonatal studies focused mainly on leukemia, neglecting other pediatric tumor types.
Purpose of the Study:
- To investigate the presence of adenoviral early region (E1A) sequences in neonatal Guthrie cards and tumor tissues from children with various pediatric cancers.
- To assess the suitability of Guthrie cards for retrospective viral DNA detection.
Main Methods:
- Optimized DNA extraction from dried blood spots and paraffin-embedded tissues.
- Developed and refined PCR techniques (conventional and nested) for adenoviral E1A detection.
- Sequencing confirmed human adenovirus species C.
Main Results:
- Adenoviral E1A was detected in 43% of case Guthrie cards and 41% of tumor tissues.
- Detection occurred across multiple pediatric tumor types.
- Partial concordance between neonatal and tumor samples was observed.
Conclusions:
- Guthrie cards are effective for retrospective viral DNA analysis.
- Findings suggest a potential association between neonatal adenovirus detection and broader pediatric cancer development.
- Further longitudinal studies are needed to establish a causal link.
Abstract:
Adenoviruses have been implicated in childhood cancers, primarily leukemia, yet prior neonatal investigations have rarely examined other pediatric tumor types. This study evaluated whether adenoviral early region (E1A) sequences can be detected in archival neonatal Guthrie cards from children who later developed diverse pediatric tumors and in corresponding paraffin-embedded tissues. DNA extraction was optimized for long-stored dried blood spots, and PCR conditions were refined for both Guthrie card and paraffin-derived DNA. Adenoviral E1A was analyzed using conventional and nested PCR, and sequencing of representative amplicons confirmed correspondence to human adenovirus species C. E1A PCR positivity was found in 43% of Guthrie cards from cases (n = 54) and 34% of controls (n = 32), and in 41% of tumor tissues (n = 75) compared with 5% of non-tumor paraffin controls (n = 20). Detection occurred across multiple tumor categories without a clear association with tumor type. Partial concordance was observed between paired neonatal and tumor samples, and cytomegalovirus markers were detected in a subset of E1A-positive specimens. These findings confirm the suitability of Guthrie cards for retrospective viral DNA detection and extend previous leukemia-focused neonatal studies to broader pediatric tumors. The data suggest a potential association between birth-stage adenoviral detection and childhood cancer, though a causal link remains unproven and requires further longitudinal investigation.
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