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Published on: May 6, 2013
Association between Pediatric Adenovirus Infection and Type 1 Diabetes
Amany A Arafa1, Adel Abdel-Moneim1, Rehab G Khalil2
1Molecular Physiology Division, Faculty of Science, Beni-Suef University, Beni-Suef 62511, Egypt.
Insights
Adenovirus infection is linked to type 1 diabetes (T1D) in children. Higher adenovirus DNA and antibody levels were found in T1D patients, suggesting a role in disease development.
Area of Science:
- Virology
- Immunology
- Pediatrics
Background:
- Viruses are implicated in initiating beta-cell destruction, a key process in type 1 diabetes (T1D).
- Exploring the connection between adenovirus infection, inflammation, and T1D development is crucial for understanding disease etiology.
Purpose of the Study:
- To investigate the association between adenovirus infection, inflammatory biomarkers, and the incidence of type 1 diabetes in children.
- To determine if adenovirus infection is a contributing risk factor for T1D development.
Main Methods:
- Studied 80 children with T1D and 40 healthy controls (ages 2-16).
- Assessed adenovirus DNA, anti-adenovirus IgG, cytokines (IFN-γ, IL-15), and lipid profiles.
- Utilized ANOVA and LSD t-tests for statistical analysis.
Main Results:
- Adenovirus DNA detected in 20% of T1D children vs. 2.5% of controls; significantly higher in T1D diagnosed within the first year (33.4%).
- Anti-adenovirus IgG found in 40% of T1D children vs. 12.5% of controls; higher in newly diagnosed cases (46.7%).
- Increased BMI, IFN-γ, IL-15, adiponectin, lipids, and microalbuminuria in adenovirus-positive T1D children.
Conclusions:
- Adenovirus infection may be a contributing risk factor for type 1 diabetes in children.
- Findings suggest adenovirus plays a role in T1D induction, particularly in early-onset cases.
Background:
Viruses are among the inducers of type 1 diabetes (T1D) as they are implicated in the initiation of β-cell destruction. This study aimed to explore the link between adenoviruses' infection, inflammatory biomarkers, and the development of T1D.
Methods:
The study population included 80 children with T1D and 40 healthy controls (2-16 years old). The T1D group was further clustered into two groups according to time of T1D diagnosis: a group of children who were diagnosed during the first year of life and a second group who were diagnosed after the first year of life. Adenovirus DNA, anti-adenovirus IgG, cytokines, and lipid profiles were screened in the different groups. The results were statistically assessed using one-way analysis of variance (ANOVA) and LSD t-test.
Results:
Positive adenovirus PCR was detected in 2.5% and 20% of normal and T1D children, respectively. Moreover, the positive PCR results for adenovirus were found significantly higher in the T1D group, who were diagnosed during the first year of life (33.4%), in comparison to those diagnosed after the first year of life (12%). Anti-adenoviruses IgG was found in 12.5% and 40% of healthy controls and diabetic children, respectively. Seropositive results were found to be higher in newly diagnosed children (46.7%) in comparison to those previously diagnosed with T1D (36%). Body mass index (BMI), IFN-γ, IL-15, adiponectin, lipid profile, and microalbuminuria were significantly increased in T1D adenoviruses-positive children compared to children who were negative for adenoviruses.
Conclusions:
Adenovirus infection could be among the contributing risk factors and may play a role in the induction of T1D in children.
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