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Systematic Population Screening, Using Biomarkers and Genetic Testing, Identifies 2.5% of the U.K. Pediatric Diabetes
Maggie Shepherd1,2, Beverley Shields3, Suzanne Hammersley2
1Institute of Biomedical and Clinical Science, University of Exeter Medical School, Exeter, U.K. m.h.shepherd@exeter.ac.uk.
Insights
Monogenic diabetes affects 2.5% of children with diabetes in UK clinics. Biomarker screening and genetic testing can identify these rare cases, many of whom do not require insulin treatment.
Area of Science:
- Pediatric Endocrinology
- Genetics
- Diabetes Research
Background:
- Monogenic diabetes is a rare but significant diagnosis in pediatric diabetes care.
- Identification often relies on recognizing specific clinical features, leading to underdiagnosis.
- Biomarkers like islet autoantibodies and C-peptide can aid in differentiating monogenic diabetes from type 1 diabetes.
Purpose of the Study:
- To determine the prevalence of monogenic diabetes in UK pediatric clinics.
- To implement a systematic approach using biomarker screening and genetic testing.
- To assess the utility of this pathway for identifying monogenic diabetes in children.
Main Methods:
- Studied 808 pediatric patients (<20 years) across six UK clinics.
- Measured endogenous insulin production via urinary C-peptide creatinine ratio (UCPCR).
- Conducted islet autoantibody and genetic testing on eligible patients.
Main Results:
- Monogenic diabetes was diagnosed in 2.5% of patients (20/808).
- Common genetic subtypes included GCK, HNF1A, and HNF4A.
- Most patients (17/20) were managed without insulin; 3.3% had type 2 diabetes.
Conclusions:
- Confirms a 2.5% prevalence of monogenic diabetes in UK pediatric patients.
- Suggests approximately 50% of UK pediatric monogenic diabetes cases remain undiagnosed.
- Advocates for biomarker screening as a practical method to identify candidates for genetic testing.
Objective:
Monogenic diabetes is rare but is an important diagnosis in pediatric diabetes clinics. These patients are often not identified as this relies on the recognition of key clinical features by an alert clinician. Biomarkers (islet autoantibodies and C-peptide) can assist in the exclusion of patients with type 1 diabetes and allow systematic testing that does not rely on clinical recognition. Our study aimed to establish the prevalence of monogenic diabetes in U.K. pediatric clinics using a systematic approach of biomarker screening and targeted genetic testing.
Research Design And Methods:
We studied 808 patients (79.5% of the eligible population) <20 years of age with diabetes who were attending six pediatric clinics in South West England and Tayside, Scotland. Endogenous insulin production was measured using the urinary C-peptide creatinine ratio (UCPCR). C-peptide-positive patients (UCPCR ≥0.2 nmol/mmol) underwent islet autoantibody (GAD and IA2) testing, with patients who were autoantibody negative undergoing genetic testing for all 29 identified causes of monogenic diabetes.
Results:
A total of 2.5% of patients (20 of 808 patients) (95% CI 1.6-3.9%) had monogenic diabetes (8 GCK, 5 HNF1A, 4 HNF4A, 1 HNF1B, 1 ABCC8, 1 INSR). The majority (17 of 20 patients) were managed without insulin treatment. A similar proportion of the population had type 2 diabetes (3.3%, 27 of 808 patients).
Conclusions:
This large systematic study confirms a prevalence of 2.5% of patients with monogenic diabetes who were <20 years of age in six U.K. clinics. This figure suggests that ∼50% of the estimated 875 U.K. pediatric patients with monogenic diabetes have still not received a genetic diagnosis. This biomarker screening pathway is a practical approach that can be used to identify pediatric patients who are most appropriate for genetic testing.
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