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Updated: Jun 17, 2025

A High-Throughput Multiplexed Screening for Type 1 Diabetes, Celiac Diseases, and COVID-19
Published on: July 5, 2022
Protocol for the Australian Type 1 Diabetes National Screening Pilot: Assessing the feasibility and acceptability of
Kirstine J Bell1,2, Shannon Brodie1,2, Jennifer J Couper3,4
1Charles Perkins Centre, The University of Sydney, Sydney, New South Wales, Australia.
Insights
This pilot study compares three screening models to prevent diabetic ketoacidosis (DKA) in Australian children with type 1 diabetes. Findings will guide a national screening program, aiming to reduce DKA risk through early detection.
Area of Science:
- Pediatric Endocrinology
- Public Health Screening
- Implementation Science
Background:
- Type 1 diabetes diagnosis in Australian children frequently involves life-threatening diabetic ketoacidosis (DKA).
- Early detection through presymptomatic screening significantly reduces DKA risk.
- International consensus on optimal screening models is lacking.
Purpose of the Study:
- To pilot and evaluate three distinct screening models for a population-wide type 1 diabetes screening program in Australian children.
- To assess the feasibility, acceptability, and cost-effectiveness of each model.
- To provide evidence for the development of a national screening strategy.
Main Methods:
- A pilot study (July 2022-June 2024) involving up to 9000 children across Australia.
- Three models: (1) genetic/newborn bloodspot, (2) genetic/infant saliva, (3) autoantibody/capillary bloodspot.
- Primary outcome: screening uptake; Secondary outcomes: feasibility, costs, parental/professional satisfaction.
Main Results:
- Pilot study is currently underway; results are pending.
- Data collection focuses on screening uptake, feasibility, costs, and participant experience.
- Analysis will compare the performance of the three distinct screening approaches.
Conclusions:
- This pilot represents the first direct comparison of three implementation models for general population type 1 diabetes screening.
- Findings will inform the design and implementation of a potential national screening program for Australian children.
- The study aims to reduce the incidence of diabetic ketoacidosis at diagnosis.
Aim:
One third of Australian children diagnosed with type 1 diabetes present with life-threatening diabetic ketoacidosis (DKA) at diagnosis. Screening for early-stage, presymptomatic type 1 diabetes, with ongoing follow-up, can substantially reduce this risk (<5% risk). Several screening models are being trialled internationally, without consensus on the optimal approach. This pilot study aims to assess three models for a routine, population-wide screening programme in Australia.
Methods:
An implementation science-guided pilot study to evaluate the feasibility, acceptability and costs of three screening models in children will be conducted between July 2022 and June 2024. These models are as follows: (1) Genetic risk-stratified screening using newborn heel prick dried bloodspots, followed by autoantibody testing from 11 months of age; (2) genetic risk-stratified screening of infant (6-12 months) saliva followed by autoantibody testing from 10 months of age; and (3) autoantibody screening using capillary dried bloodspots collected from children aged 2, 6 or 10 years. Cohorts for each model will be recruited from targeted geographic areas across Australia involving ≥2 states per cohort, with a recruitment target of up to 3000 children per cohort (total up to 9000 children). The primary outcome is screening uptake for each cohort. Secondary outcomes include programme feasibility, costs, parental anxiety, risk perception, satisfaction, well-being and quality of life, and health professional attitudes and satisfaction.
Conclusions:
This pilot is the first direct comparison of three screening implementation models for general population screening. Findings will provide evidence to inform a potential national screening programme for Australian children.
Trial Registration:
ACTRN12622000381785.
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