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Effect of screening for type 1 diabetes on early metabolic control: the DiPiS study
Markus Lundgren1,2, Berglind Jonsdottir3,4, Helena Elding Larsson3,4
1Unit for Pediatric Endocrinology, Department of Clinical Sciences Malmö, Lund University, Jan Waldenströms gata 35, S-205 02, Malmö, Sweden. Markus.lundgren@med.lu.se.
Insights
Children in pre-diagnosis follow-up showed improved glycemic control (HbA1c) for five years post-diagnosis of type 1 diabetes. This early improvement in blood sugar management may benefit long-term health outcomes.
Area of Science:
- Pediatrics
- Endocrinology
- Diabetes Research
Background:
- Previous studies suggest early follow-up improves glycemic control in children post-diabetes diagnosis.
- Longitudinal data beyond the initial remission period is needed to confirm sustained benefits.
Purpose of the Study:
- To analyze glycemic control over five years post-diagnosis in children previously followed pre-diagnosis.
- To compare glycemic control in pre-diagnosis followed children versus age-matched controls.
Main Methods:
- Compared HbA1c, insulin dose, BMI, and pump use in 51 pre-diagnosis followed children vs. 78 controls.
- Data collected from diagnosis up to 5 years post-diagnosis.
Main Results:
- Children followed pre-diagnosis had significantly lower median HbA1c levels at diagnosis and up to 5 years post-diagnosis (p < 0.05).
- No significant differences in insulin dose, BMI, or pump use were observed.
- Higher prevalence of first-degree relatives with diabetes noted in the pre-diagnosis group.
Conclusions:
- Longitudinal follow-up before diabetes diagnosis is associated with sustained better glycemic control in children.
- Improved early glycemic control may positively impact long-term type 1 diabetes outcomes and complications.
- Findings support the value of pre-diagnosis monitoring for future research participation.
Aims/Hypothesis:
It has been shown that children previously enrolled in follow-up studies have better glycaemic control during the early period after diabetes diagnosis. The aim of this study was to analyse glycaemic control over a longer period, past the period of partial remission, after diagnosis in children followed before diagnosis in the Swedish Diabetes Prediction in Skåne (DiPiS) study compared with children of equal age not enrolled in pre-diabetes follow-up, receiving equivalent diabetes care.
Methods:
HbA1c from diagnosis and for the following 5 years, as well as differences in insulin dosage, BMI, pump use, partial remission according to insulin dose-adjusted HbA1c and baseline demographics were compared between children who were enrolled in follow-up and had received information on diabetes risk (n = 51) and children not enrolled in follow-up (n = 78).
Results:
The group followed before diagnosis had a higher proportion of first-degree relatives (FDRs) with diabetes (28% vs 5.6%; p = 0.001) and a higher proportion of participants with mothers born in Sweden (100% vs 89%; p = 0.02). No significant differences in total daily insulin dose, pump use or other baseline sociodemographic factors were detected between the groups. Median HbA1c at diagnosis and at 1, 2, 3, 4 and 5 years after diabetes diagnosis was significantly lower in children followed before diagnosis (all p < 0.05), and was not related to FDR status.
Conclusions/Interpretation:
Compared with controls not previously enrolled in follow-up, our study shows that children enrolled in longitudinal follow-up before the diagnosis of diabetes have better glycaemic control, measured by HbA1c, up to 5 years after diagnosis and during the initial period of partial remission. Improved glycaemic control in the initial years of living with type 1 diabetes could affect long-term outcome and complications and might also improve study enrolment in future longitudinal studies.
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