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A High-Throughput Multiplexed Screening for Type 1 Diabetes, Celiac Diseases, and COVID-19
Published on: July 5, 2022
General population screening for childhood type 1 diabetes: is it time for a UK strategy?
Rachel Elizabeth Jane Besser1,2, Sze May Ng3,4, John W Gregory5
1Department of Paediatric Diabetes and Endocrinology, NIHR Oxford Biomedical Research Centre, John Radcliffe Hospital, Oxford, UK rachel.besser@ouh.nhs.uk.
Insights
Type 1 diabetes (T1D) screening can identify at-risk children early, preventing diabetic ketoacidosis (DKA). Combining islet autoantibodies with genetic factors may improve detection for childhood T1D prevention strategies.
Area of Science:
- Pediatric Endocrinology
- Autoimmune Diseases
- Public Health
Background:
- Type 1 diabetes (T1D) is a significant childhood autoimmune disease, affecting 1 in 500 children.
- Diabetic ketoacidosis (DKA) remains a common, severe presentation, with rates stagnating despite awareness campaigns.
- Most children with T1D lack a family history, complicating early risk identification.
Purpose of the Study:
- To discuss the necessity and feasibility of population-based T1D screening in the UK.
- To explore strategies for identifying children at high risk of developing T1D presymptomatically.
- To highlight the benefits of early detection, including DKA prevention and improved treatment transition.
Main Methods:
- Reviewing population-based screening strategies for T1D.
- Evaluating the use of islet autoantibodies and genetic risk factors for prediction.
- Analyzing data from capillary blood samples for screening.
Main Results:
- The presence of two or more islet autoantibodies indicates a high positive predictive value for childhood T1D.
- Screening offers opportunities to prevent DKA, reduce hospitalizations, and facilitate early intervention.
- A single screening test may not identify all at-risk children; combined approaches are being considered.
Conclusions:
- Early identification of children at risk for T1D is crucial for preventing DKA and improving outcomes.
- Combining islet autoantibodies with genetic risk factors presents a promising strategy for comprehensive T1D screening.
- Further discussion on T1D screening strategies, knowledge gaps, and implementation in the UK is warranted.
Abstract:
Type 1 diabetes (T1D) is a chronic autoimmune disease of childhood affecting 1:500 children aged under 15 years, with around 25% presenting with life-threatening diabetic ketoacidosis (DKA). While first-degree relatives have the highest risk of T1D, more than 85% of children who develop T1D do not have a family history. Despite public health awareness campaigns, DKA rates have not fallen over the last decade. T1D has a long prodrome, and it is now possible to identify children who go on to develop T1D with a high degree of certainty. The reasons for identifying children presymptomatically include prevention of DKA and related morbidities and mortality, reducing the need for hospitalisation, time to provide emotional support and education to ensure a smooth transition to insulin treatment, and opportunities for new treatments to prevent or delay progression. Research studies of population-based screening strategies include using islet autoantibodies alone or in combination with genetic risk factors, both of which can be measured from a capillary sample. If found during screening, the presence of two or more islet autoantibodies has a high positive predictive value for future T1D in childhood (under 18 years), offering an opportunity for DKA prevention. However, a single time-point test will not identify all children who go on to develop T1D, and so combining with genetic risk factors for T1D may be an alternative approach. Here we discuss the pros and cons of T1D screening in the UK, the different strategies available, the knowledge gaps and why a T1D screening strategy is needed.
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