Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/38294
Appears in Collections:Faculty of Health Sciences and Sport Journal Articles
Peer Review Status: Refereed
Title: Protein-Containing Breakfasts Are Associated with Reduced Postprandial Glycaemic Excursions in Children and Young People with Type 1 Diabetes: A Pragmatic Study
Author(s): Johnson, Julie
Franklin, Victoria
Shepherd, Ashley
Allen, Sonja
Blissitt, Debbie
Keen, Kate
Maclean, Kirsty
McKillup, Anne-Marie
Procter, Elizabeth
Roach, Susan
Swart, Adele
Galloway, S D
Contact Email: s.d.r.galloway@stir.ac.uk
Keywords: carbohydrate
continuous glucose monitoring
diabetes mellitus
glycaemic control
meal
nutrition
protein
Issue Date: 2026
Date Deposited: 6-Aug-2026
Citation: Johnson J, Franklin V, Shepherd A, Allen S, Blissitt D, Keen K, Maclean K, McKillup A, Procter E, Roach S, Swart A & Galloway SD (2026) Protein-Containing Breakfasts Are Associated with Reduced Postprandial Glycaemic Excursions in Children and Young People with Type 1 Diabetes: A Pragmatic Study. <i>Nutrients</i>, 18 (15), p. 2536. https://doi.org/10.3390/nu18152536
Abstract: Background/Objectives: This study examined whether adding 10 g of protein to a high glycaemic index (GI) breakfast could attenuate postprandial glycaemic responses in children and young people (CYP) with type 1 diabetes (T1D). Postprandial glucose responses following this modified breakfast were compared with those after a high GI breakfast alone, a low GI breakfast, and participants’ usual breakfast. Methods: A pragmatic randomised crossover study was conducted in n = 25 CYP aged 5–17 years. Participants consumed three standardised test breakfasts on two study occasions and their usual breakfast as a control. Test meals varied by GI, glycaemic load (GL), and protein content: high GI/high GL (HGL), high GI/high GL with an additional 10 g protein (HGLP), and low GI/medium GL (MGL). Continuous glucose monitoring data were collected for three hours following each meal. Linear mixed model analyses were used, and a subgroup analysis included participants using hybrid closed-loop (HCL) systems. Results: Participants’ (mean age 12.1 ± 3.6 years) mean postprandial glucose over a three-hour follow-up was significantly lower following the HGLP meal compared with the HGL meal (8.0 ± 2.2 vs. 9.5 ± 2.5 mmol/L; p < 0.01). Time in Range (TIR) over 180 min was significantly shorter after the HGL meal compared with the control, HGLP, and MGL meals (p ≤ 0.03). Glucose excursions at 30 and 60 min were significantly higher following the HGL meal compared with all other meals, with differences persisting up to 120 min when compared with the HGLP meal. Results were not different for participants using HCL systems. Conclusions: Adding 10 g of protein to a high GI breakfast or choosing a lower GI option improves postprandial glycaemic control in CYP with type 1 diabetes.
DOI Link: 10.3390/nu18152536
Rights: This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
Licence URL(s): http://creativecommons.org/licenses/by/4.0/

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