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Published on: May 6, 2013
Time-space clustering of date at birth in childhood-onset diabetes
1Department of Pediatrics, Umeå University, Sweden.
Insights
This study found that childhood-onset diabetes cases cluster by both place and time of birth, suggesting environmental factors like early-life infections may play a role in disease development.
Area of Science:
- Epidemiology
- Pediatric Endocrinology
- Environmental Health
Background:
- Childhood-onset diabetes (Type 1 diabetes) is a significant health concern in pediatric populations.
- The etiology of Type 1 diabetes is complex, involving genetic predisposition and potential environmental triggers.
- Understanding birth patterns may offer insights into disease risk factors.
Purpose of the Study:
- To investigate temporal and geographical clustering of birth dates for infants diagnosed with childhood-onset diabetes.
- To identify potential environmental influences on diabetes risk based on birth patterns.
Main Methods:
- Utilized the Swedish Childhood Diabetes Registry (99% ascertainment for 0-14 years) linked with the Swedish Medical Birth Registry.
- Analyzed birth data for 3,725 patients, comparing observed vs. expected birth clusters by municipality and time.
- Employed a modified set technique to analyze temporal clustering within municipalities.
Main Results:
- Identified statistically significant geographical clustering of births in four municipalities.
- Detected more temporal and spatial birth clusters than expected by chance (P < 0.01).
- Found 42 significant clusters of three or more patients born in the same municipality within a 2-year period.
Conclusions:
- This study provides the first evidence of birth time and place clustering for childhood-onset diabetes risk.
- Findings support the hypothesis that early-life or fetal infections may increase diabetes risk.
- Suggests environmental factors acting early in life are critical in Type 1 diabetes development.
Objective:
To investigate whether there was a temporal and geographical clustering of time of birth for infants with childhood-onset diabetes.
Research Design And Methods:
The nationwide Swedish Childhood Diabetes Registry, which ascertains 99% of children with recent-onset diabetes (0-14 years), was linked with the Swedish Medical Birth Registry. Clustering of 3,725 patients as to place and time of birth was studied compared with the general population. For each municipality (and in the three large cities of Sweden for each parish), the observed number of patients was compared with the expected number calculated from the average total rate and the number of births in that municipality. Clustering in time of birth within municipality was analyzed using a modification of a set technique by Chen (14).
Results:
There was no consistent variability in diabetes risk by calendar birth month, but for specific years, the risk varied during the year. When geographic localization for place of birth was studied on a municipality level, four municipalities showed a statistically significant case excess while one would have been expected by chance. When we looked for clusters in both time and space for date of birth, clearly more clusters than expected were identified (P < 0.01). Of the total of 198 primary clusters, 42 included three or more patients being born in the same municipality within an unlikely short period always < 2 years.
Conclusions:
This is the first study indicating a clustering according to place and time of birth for later risk to develop type I diabetes. Such a phenomenon would agree with the hypothesis that infections in early life, including fetal infections, can increase the risk for diabetes.
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