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The Breakfast Rise, Education and Knowledge Study

The Breakfast Rise, Education and Knowledge Study in Children and Young People Who Have Type 1 Diabetes (T1D): The BREAK Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05698875
Acronym
BREAK
Enrollment
48
Registered
2023-01-26
Start date
2023-02-14
Completion date
2023-12-31
Last updated
2025-03-11

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

type1diabetes

Brief summary

The study proposes to recruit 90 children and young people who have type 1 diabetes (T1D) and who regularly use Dexcom continuous glucose monitoring (CGM). The participants will be recruited from National Health Service (NHS) sites in the United Kingdom (UK) via their managing dietitian. The dietitian will be asked to provide baseline information about the participants which will include demographic data and information on clinical data, treatment and anthropometrics. Participants will be asked to provide access to Dexcom CGM data throughout the period of recording. Participants will be asked to test three breakfast meals (high glycaemic load, high glycaemic with 10g added protein and medium glycaemic load) plus a control meal (usual breakfast), repeating each meal twice in a randomized order using a Latin square randomisation. The dietitian will be asked to optimise the participants insulin doses prior to commencing test meals. Participants will be asked to complete a questionnaire for each of the postprandial test and control meal periods. This will include questions about their diabetes management, food and fluid intake in addition to questions on activities all of which took place during the three-hour postprandial period. The glycaemic response to the test and control meals will be analysed using the CGM data and the results statistically described using univariate, bivariate and multivariate analysis.

Detailed description

This is a quantitative study. Dexcom CGM data will be collected for the period of recording. Participants will be asked to test three breakfast meals on two occasions and submit a postprandial questionnaire after each test meal to confirm it has been tested. The postprandial period will be three hours following the end of the breakfast test meal. The test meal recipes will be provided by the chief investigator. The dietary composition of the meals has been analysed using the a dietary analysis programme. The glycaemic index and load of the meals is estimated from this programme which uses available date from the international tables of glycaemic index and glycaemic loads (Atkinson et al. 2008; 2021). Most foods were based on average composition across different brands. For the added fibre bread used in test meal 3, an average of three known brands was used calculated by the chief investigator. The meals will be taken in the home environment with the food provided by the families. The participants will be asked to take the test meal on a day when their CGM reading is between 4-10mmol/l and when there has been no nocturnal hypoglycaemia on the night before the planned test. The participants will act as their own control. They will be asked to complete a postprandial questionnaire for control meals as well. The control meals will be there usual breakfast of choice. The study duration, commencing with the recruitment of the first participant and ending when data has been fully described, is anticipated to be two years. Recruitment Paediatric diabetes dietitians, working across the UK, will be enrolled to help recruit participants and become principal investigators (PI) for their site. Sample size The sample size power calculation is 64. This is based on using ANOVA repeated measures, within factors with four groups and measurements (3 test meals and control) with small effect size (0.15), P value 0.05 and power 0.80 and correlation among repeated measure of 0.5. The drop rate of clinical trials is often over 40%. Therefore, the aim is to recruit 90 participants to allow for this dropout rate and meet the sample size of 64. It may be possible to recruit this number of participants. There are approximately 29,000 children and young people living in the UK with T1D (Juvenile Diabetes Research Federation (JDRF), 2018). In the first phase of this study, 12 NHS sites were enrolled, and 96 children and young people were recruited to the study. Methodology Baseline data In order to make comparisons between relevant variables and glucose levels, the following baseline data will be collected from the dietitians and sent to the chief investigator, along with the artificial identifier on the Excel spreadsheet as discussed earlier at the stage of recruitment of participants: * Parent's email address * Sex, date of birth and recent weight and height (for calculation of BMI and BMI centile) and date of when this was taken * Date of diagnosis of T1D * Last four HbA1c * Total daily insulin dose (TDD) * Insulin: carbohydrate ratios (ICR) and Insulin Sensitivity Factor (ISF) * Current insulin regimen - including the type of insulin prescribed and if applicable type of insulin pump i.e. open or closed loop system. Run-in period At recruitment the dietitians will be asked to arrange a review of the participants insulin regimen including the insulin to carbohydrate ratio's (ICR), insulin sensitivity factor (ISF) and basal background insulin doses/rates. The dietitian will be asked to inform the chief investigator when this has taken place. Participants will be asked to commence the test meals following this. Glucose measurement Data on interstitial glucose will be collected via Dexcom CGM. The Dexcom CGM data will be accessed by an NHS Highland research 'Clarity Clinic' with Dexcom CLARITY® Clinic Portal (Dexcom In, San Diego, California (CA), USA). The chief investigator is administrator of this clinic. Once the managing dietitian has obtained each participant's consent, the participant's parent's email address will be sent to the chief investigator along with the baseline information/data as described above. The chief investigator, as administrator of the Clarity Clinic account, will then invite the participant, via email, to be added to the clinic. Once the invite has been accepted, it will stand for the period of the recording i.e. until all the test meals and questionnaires have been completed. Once the participant has submitted their last questionnaire, they will be removed from the Dexcom CLARITY® Clinic Portal. Following the provision of CGM data and review of the insulin regimen by the diabetes team, participants will be randomised to test each of the three test meals on two separate occasions with a control meal (usual breakfast meal) for each test meal. Randomisation will be achieved using a Latin square randomisation. The tool used for this will be http://www.jerrydallal.com/random/randomize.htm. Randomisation will be done in a block of four. The test meals are based on foods children and young people enjoy eating. There are three meals. Test meal one includes a high glycaemic index cereal meal with milk and has a high glycaemic load (\> 20), test meal two is the same cereal meal with a high glycaemic load (\>20) with addition of 10g protein and test meal three has a medium glycaemic load (10-20). For test meals one and two there are three portion size options to meet age appropriate requirements and appetites. The participants will be able to choose from two different cereals for test meal 1 and a choice of protein sources for test meal 2. They will be asked to keep to the same choice of cereal and protein source for the repeat meal. They will be asked to consume at least 75% of the meal to ensure the threshold of the glycaemic load is met. The instructions and details of the test meals are presented in Appendix 11. The control meals will be the participant's usual breakfast of choice. Participants will be asked to follow their usual insulin regimen as advised by their diabetes team i.e. their usual insulin dose and dose timing. For both test and control meals participants will be asked to avoid any further food intake during three-hour postprandial period other than carbohydrate adjustments required to treat any hypoglycaemia. Participants will also be asked to avoid drinks except water or carbohydrate free juices. They will also be asked to avoid physical activity of more than 30 minutes in duration. To minimise disruption to their normal daily activities, they will be advised to test the meal on a day when there is no planned physical activity i.e. a school day with no morning physical education. The CGM data will be collected throughout this time as discussed above. Postprandial Questionnaire The participants will be asked to complete a postprandial questionnaire using 'online survey'. This includes questions about the meal and the three-hour postprandial period. The questionnaire is presented in Appendix 10. They will be asked to wait a minimum of three hours before answering and submitting the questionnaire. They will be encouraged to complete it on the same day as the test or control meal. Data analysis This will be a mix of univariate, bivariate and multivariate analysis as this is best suited to describing, summarising and visualising these data. Outputs will include the distribution of glucose levels post-breakfast to determine the spread and dispersion of the data.

Interventions

Test meal 1: HGL Test meal 2: HGLP Test meal 3: MGL Control meal: usual breakfast

Sponsors

University of Stirling
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
BASIC_SCIENCE
Masking
NONE

Intervention model description

Participants will be asked to test each of the three test meals and control meal (usual breakfast) on two occasions. The meals will be consumed in an individual randomised order with the randomisation achieved using a Latin square randomisation. The tool used for this will be http://www.jerrydallal.com/random/randomize.htm. Randomisation will be done in a block of four.

Eligibility

Sex/Gender
ALL
Age
5 Years to 17 Years
Healthy volunteers
No

Inclusion criteria

* Children and young people aged between 5-17 years * Diagnosis of type 1 diabetes for a minimum of one year * On multiple daily injections (MDI) together with carbohydrate counting or Continuous Subcutaneous Insulin Infusion (CSII) using either open or closed loop systems. * Use Dexcom continuous glucose monitoring (CGM) on a regular basis * Have a Dexcom Clarity account and use the Clarity App * Regularly eats a breakfast meal before midday * Access to internet and email

Exclusion criteria

* Prescribed anti-hyperglycaemia agents i.e. Glucophage (Metformin) and or antidepressants. * Any other medical conditions that may impact on the digestion and or absorption of nutrients, including coeliac disease and gastroparesis. * Vegans * Allergic or intolerant to the test meals * Experiencing difficulties with food including diagnosed eating disorders * Currently actively taking part in another research study

Design outcomes

Primary

MeasureTime frameDescription
Mean Glucose (mmol/l)three-hour postprandial breakfast periodThis is the mean glucose over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Secondary

MeasureTime frameDescription
Mean Peak Glucose Excursionthree-hour postprandial breakfast periodThis is the peak excursion over the 3 hour postprandial period taken from CGM readings taken every 5 minutes
Mean Time to Peakthree-hour postprandial breakfast periodThis is the time it took the glucose to peak (reach it's highest excursion from baseline) over the 3 hour postprandial period taken from CGM readings taken every 5 minutes
Area Under the Glucose Curvethree-hour postprandial breakfast periodThis is incremental area under the glucose curve above baseline over the 3 hour postprandial period taken from CGM readings taken every 5 minutes
Percentage Coefficient of Variation3 hoursThis is used to assess glucose variability over the three hour postprandial period taken from CGM readings taken every 5 mins
Time in Rangethree-hour postprandial breakfast periodThis is the time in minutes that was spent with a glucose in range (3.9-10mmol/l over the 3 hours postprandial period
Time Above Range3 hoursThis is the time that the glucose was above range (\>10mmol/l) during the 3 hours postprandial period taken from CGM readings taken every 5 minutes
Mean Glucose Excursionthree-hour postprandial breakfast periodThis is the mean excursion over the 3 hour postprandial period taken from CGM readings taken every 5 minutes
Glucose at 30 Minutes30 minutesPostprandial glucose excursion taken from CGM readings at 30 minutes after the meal commenced
Glucose at 60 Minutes60 minutesPostprandial glucose excursion taken from CGM readings at 60 minutes after the meal commenced
Glucose at 90 Minutes90 minutesPostprandial glucose excursion taken from CGM readings at 90 minutes after the meal commenced
Glucose at 120 Minutes120 minutesPostprandial glucose excursion taken from CGM readings at 120 minutes after the meal commenced
Glucose at 150 Minutes150 minutesPostprandial glucose excursion taken from CGM readings at 150 minutes after the meal commenced
Glucose at 180 Minutes180 minutesPostprandial glucose excursion taken from CGM readings at 180 minutes after the meal commenced
Time in Tight Range3 hoursThis the time of glucose reading spent in tight range (3.9-7.8mmol/l) over the three hour postprandial period from CGM readings taken every 5 minutes

Countries

United Kingdom

Participant flow

Recruitment details

Participants diabetes management was optimised at the time of recruitment to ensure that the insulin doses for the breakfast meal were accurate

Pre-assignment details

Following recruitment participants were allocated to a randomised sequence for testing the meals. Randomisation was in a block of four. Of the participants who tested the meals this resulted in 18 different sequences of meal order.

Participants by arm

ArmCount
Breakfast Meals
Test and control meals
25
Total25

Baseline characteristics

CharacteristicBreakfast Meals
Age, Continuous12.1 Years
STANDARD_DEVIATION 3.6
Disease duration4.3 Years
STANDARD_DEVIATION 3.2
HbA1c48.4 mmol/mol
STANDARD_DEVIATION 5.4
Insulin regimen
Continuous Subcutaneous Insulin Infusion (CSII) user
23 Participants
Insulin regimen
Multiple Daily Injections (MDI) user
2 Participants
Race and Ethnicity Not Collected— Participants
Region of Enrollment
United Kingdom
25 participants
Sex: Female, Male
Female
10 Participants
Sex: Female, Male
Male
15 Participants
Type of insulin pump (CSII)
Insulin pump closed
17 Participants
Type of insulin pump (CSII)
Insulin pump open loop
6 Participants
Type of insulin pump (CSII)
NA
2 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
0 / 26
other
Total, other adverse events
0 / 26
serious
Total, serious adverse events
0 / 26

Outcome results

Primary

Mean Glucose (mmol/l)

This is the mean glucose over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsMean Glucose (mmol/l)Test meal 1 (HGL)9.5 mmol/lStandard Deviation 2.5
Breakfast MealsMean Glucose (mmol/l)Test meal 2 (HGLP)8.0 mmol/lStandard Deviation 2.2
Breakfast MealsMean Glucose (mmol/l)Test meal 3 (MGL)8.7 mmol/lStandard Deviation 2.2
Breakfast MealsMean Glucose (mmol/l)Control meal (usual breakfast)8.4 mmol/lStandard Deviation 2.6
Comparison: HGL vs control mealsp-value: 0.1295% CI: [0.1, 1.9]Linear Mixed Model
Comparison: HGLP vs control mealp-value: 0.2395% CI: [-1.5, 0.4]Linear Mixed Model
Comparison: MGL vs control mealp-value: 0.6295% CI: [-0.7, 1.2]Linear Mixed Model
Comparison: HGL vs HGLPp-value: 0.00395% CI: [0.7, 2.5]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: 0.0895% CI: [-0.1, 1.7]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.1295% CI: [-1.7, 0.2]Linear Mixed Model
Secondary

Area Under the Glucose Curve

This is incremental area under the glucose curve above baseline over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsArea Under the Glucose CurveTest meal 1 (HGL)579 (mmol/l)*minStandard Deviation 396
Breakfast MealsArea Under the Glucose CurveTest meal 2 (HGLP)325 (mmol/l)*minStandard Deviation 242
Breakfast MealsArea Under the Glucose CurveTest meal 3 (MGL)408 (mmol/l)*minStandard Deviation 348
Breakfast MealsArea Under the Glucose CurveControl meal (usual breakfast)440 (mmol/l)*minStandard Deviation 379
Comparison: HGL meals vs control mealsp-value: 0.2595% CI: [7, 294]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.1595% CI: [-256, 38]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.6995% CI: [-177, 117]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: <0.00195% CI: [126, 401]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: 0.0295% CI: [56, 329]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.3295% CI: [-211, 69]Linear Mixed Model
Secondary

Glucose at 120 Minutes

Postprandial glucose excursion taken from CGM readings at 120 minutes after the meal commenced

Time frame: 120 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 120 MinutesTest meal 1 (HGL meal)3.1 mmol/lStandard Deviation 4
Breakfast MealsGlucose at 120 MinutesTest meal 2 (HGLP meal)0.8 mmol/lStandard Deviation 2.7
Breakfast MealsGlucose at 120 MinutesTest meal 3 (MGL meal)2.5 mmol/lStandard Deviation 3.1
Breakfast MealsGlucose at 120 MinutesControl meal2.4 mmol/lStandard Deviation 3.6
Comparison: HGL meals vs control mealsp-value: 0.3195% CI: [-0.7, 2.2]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.0595% CI: [-3, -0.1]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.9795% CI: [-1.5, 1.5]Linear Mixed Model
Comparison: HGL meals vs HGLP mealsp-value: <0.0195% CI: [1, 3.6]Linear Mixed Model
Comparison: HGL meals vs MGL mealsp-value: 0.2795% CI: [0.6, 2.2]Linear Mixed Model
Comparison: MGL meals vs HGLP mealsp-value: 0.1295% CI: [0.1, 3]Linear Mixed Model
Secondary

Glucose at 150 Minutes

Postprandial glucose excursion taken from CGM readings at 150 minutes after the meal commenced

Time frame: 150 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 150 MinutesTest meal 1 (HGL meal)1.5 mmol/lStandard Deviation 3.9
Breakfast MealsGlucose at 150 MinutesTest meal 2 (HGLP meal)0.2 mmol/lStandard Deviation 2.5
Breakfast MealsGlucose at 150 MinutesTest meal 3 (MGL meal)1.7 mmol/lStandard Deviation 3.2
Breakfast MealsGlucose at 150 MinutesControl meal1.8 mmol/lStandard Deviation 3.3
Comparison: HGL meals vs control mealsp-value: 0.8395% CI: [-1.5, 1.2]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.0995% CI: [-2.9, -0.2]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.7895% CI: [-1.6, 1.2]Linear Mixed Model
Comparison: HGL meals vs HGLP mealsp-value: 0.1195% CI: [0.1, 2.7]Linear Mixed Model
Comparison: MGL meals vs HGL mealsp-value: 0.8295% CI: [-1.5, 1.1]Linear Mixed Model
Comparison: MGL meals vs HGLP mealsp-value: 0.0695% CI: [-0.1, 2.6]Linear Mixed Model
Secondary

Glucose at 180 Minutes

Postprandial glucose excursion taken from CGM readings at 180 minutes after the meal commenced

Time frame: 180 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 180 MinutesTest meal 3 (MGL meal)0.9 mmol/lStandard Deviation 3.1
Breakfast MealsGlucose at 180 MinutesTest meal 1 (HGL meal)0.9 mmol/lStandard Deviation 3.3
Breakfast MealsGlucose at 180 MinutesTest meal 2 (HGLP meal)-0.3 mmol/lStandard Deviation 2.2
Breakfast MealsGlucose at 180 MinutesControl meal0.9 mmol/lStandard Deviation 2.9
Comparison: HGL meals vs control mealsp-value: 0.8595% CI: [-1.1, 1.3]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.0695% CI: [-2.4, 0.04]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.995% CI: [-1.3, 1.2]Linear Mixed Model
Comparison: HGL meals vs HGLP mealsp-value: 0.0595% CI: [0.3, 2.5]Linear Mixed Model
Comparison: HGL meals vs MGL mealsp-value: 0.5595% CI: [-0.8, 1.5]Linear Mixed Model
Comparison: MGL meals vs HGLP mealsp-value: 0.0895% CI: [-0.1, 2.2]Linear Mixed Model
Secondary

Glucose at 30 Minutes

Postprandial glucose excursion taken from CGM readings at 30 minutes after the meal commenced

Time frame: 30 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 30 MinutesTest meal 1 (HGL meal)3.4 mmol/lStandard Deviation 2.2
Breakfast MealsGlucose at 30 MinutesTest meal 2 (HGLP meal)2.2 mmol/lStandard Deviation 2.1
Breakfast MealsGlucose at 30 MinutesTest meal 3 (MGL meal)1.5 mmol/lStandard Deviation 2.2
Breakfast MealsGlucose at 30 MinutesControl meal1.9 mmol/lStandard Deviation 2.2
Comparison: HGL meal excursion vs Control meal at 30 minutesp-value: <0.00195% CI: [0.8, 2.4]Linear Mixed Model
Comparison: HGLP meal vs Control meal glucose excursion at 30 minutesp-value: 0.3895% CI: [-0.5, 1.2]Linear Mixed Model
Comparison: MGL meal excursion vs Control meal at 30 minutesp-value: 0.4795% CI: [-1.1, 0.5]Linear Mixed Model
Comparison: HGL meal vs HGLP mealp-value: 0.0195% CI: [0.5, 2]Linear Mixed Model
Comparison: HGL meal vs MGL mealsp-value: <0.00195% CI: [1.1, 2.6]Linear Mixed Model
Comparison: HGLP meals vs MGL mealsp-value: 0.0995% CI: [0.1, 1.4]Linear Mixed Model
Secondary

Glucose at 60 Minutes

Postprandial glucose excursion taken from CGM readings at 60 minutes after the meal commenced

Time frame: 60 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 60 MinutesTest meal 1 (HGL meal)4.9 mmol/lStandard Deviation 3
Breakfast MealsGlucose at 60 MinutesTest meal 2 (HGLP meal)2.9 mmol/lStandard Deviation 2.6
Breakfast MealsGlucose at 60 MinutesTest meal 3 (MGL meal)2.6 mmol/lStandard Deviation 3
Breakfast MealsGlucose at 60 MinutesControl meal3.0 mmol/lStandard Deviation 2.9
Comparison: HGL meals vs control mealsp-value: <0.00195% CI: [0.7, 3]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.8795% CI: [-1.2, 1]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.4895% CI: [-1.5, 0.7]Linear Mixed Model
Comparison: HGL meals vs HGLP mealsp-value: <0.00195% CI: [1, 3.1]Linear Mixed Model
Comparison: HGL meals vs MGL mealsp-value: <0.00195% CI: [1.3, 3.4]Linear Mixed Model
Comparison: MGL meals vs HGLP mealsp-value: 0.5395% CI: [-1.4, 0.7]Linear Mixed Model
Secondary

Glucose at 90 Minutes

Postprandial glucose excursion taken from CGM readings at 90 minutes after the meal commenced

Time frame: 90 minutes

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsGlucose at 90 MinutesTest meal 1 (HGL meal)4.3 mmol/lStandard Deviation 3.6
Breakfast MealsGlucose at 90 MinutesTest meal 2 (HGLP meal)1.9 mmol/lStandard Deviation 2.7
Breakfast MealsGlucose at 90 MinutesTest meal 3 (MGL meal)2.9 mmol/lStandard Deviation 3
Breakfast MealsGlucose at 90 MinutesControl meal3.0 mmol/lStandard Deviation 3.2
Comparison: HGL meals vs control mealsp-value: 0.0695% CI: [-0.03, 2.7]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.1395% CI: [-2.5, 0.3]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.8295% CI: [-1.5, 1.2]Linear Mixed Model
Comparison: HGL meals vs MGL mealsp-value: <0.0195% CI: [1.1, 3.7]Linear Mixed Model
Comparison: HGL meals vs MGL mealsp-value: 0.0895% CI: [0.2, 2.9]Linear Mixed Model
Comparison: MGL meals vs HGLP mealsp-value: 0.2195% CI: [-0.5, 2.2]Linear Mixed Model
Secondary

Mean Glucose Excursion

This is the mean excursion over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsMean Glucose ExcursionTest meal 1 (HGL)2.8 mmol/lStandard Deviation 2.5
Breakfast MealsMean Glucose ExcursionTest meal 2 (HGLP)1.3 mmol/lStandard Deviation 1.8
Breakfast MealsMean Glucose ExcursionTest meal 3 (MGL)1.9 mmol/lStandard Deviation 2.3
Breakfast MealsMean Glucose ExcursionControl meal (usual breakfast)2.1 mmol/lStandard Deviation 2.4
Comparison: HGL vs control mealsp-value: 0.0895% CI: [-0.1, 1.8]Linear Mixed Model
Comparison: HGLP meal vs control mealp-value: 0.1395% CI: [-1.7, 0.2]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.6895% CI: [-1.2, 0.8]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: <0.0195% CI: [0.7, 2.5]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: 0.0695% CI: [0.2, 2]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.2995% CI: [-1.4, 0.4]Linear Mixed Model
Secondary

Mean Peak Glucose Excursion

This is the peak excursion over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsMean Peak Glucose ExcursionTest meal 1 (HGL)6.4 mmol/lStandard Deviation 2.8
Breakfast MealsMean Peak Glucose ExcursionTest meal 2 (HGLP)4.2 mmol/lStandard Deviation 2.2
Breakfast MealsMean Peak Glucose ExcursionTest meal 3 (MGL)4.5 mmol/lStandard Deviation 2.6
Breakfast MealsMean Peak Glucose ExcursionControl meal (usual breakfast)4.6 mmol/lStandard Deviation 2.9
Comparison: HGL meals vs control mealsp-value: <0.0195% CI: [0.8, 3]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.5995% CI: [-1.4, 0.8]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.8695% CI: [-1.2, 1]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: <0.00195% CI: [1.2, 3.3]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: <0.00195% CI: [1.1, 3.1]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.7995% CI: [-1.2, 0.9]Linear Mixed Model
Secondary

Mean Time to Peak

This is the time it took the glucose to peak (reach it's highest excursion from baseline) over the 3 hour postprandial period taken from CGM readings taken every 5 minutes

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsMean Time to PeakTest meal 1 (HGL)72 MinutesStandard Deviation 31
Breakfast MealsMean Time to PeakTest meal 2 (HGLP)58 MinutesStandard Deviation 35
Breakfast MealsMean Time to PeakTest meal 3 (MGL)96 MinutesStandard Deviation 46
Breakfast MealsMean Time to PeakControl meal (usual breakfast)81 MinutesStandard Deviation 45
Comparison: HGL meals vs control mealsp-value: 0.3195% CI: [-25, 8]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.0395% CI: [-41, -8]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.1495% CI: [-4.1, 29.5]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: 0.3495% CI: [3.1, 31.7]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: 0.0795% CI: [-33.3, -4.7]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: <0.00195% CI: [-51, -21.8]Linear Mixed Model
Secondary

Percentage Coefficient of Variation

This is used to assess glucose variability over the three hour postprandial period taken from CGM readings taken every 5 mins

Time frame: 3 hours

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsPercentage Coefficient of VariationTest meal 1 (HGL)26.4 percentageStandard Deviation 9.5
Breakfast MealsPercentage Coefficient of VariationTest meal 2 (HGLP)23.0 percentageStandard Deviation 8
Breakfast MealsPercentage Coefficient of VariationTest meal 3 (MGL)19.8 percentageStandard Deviation 6.4
Breakfast MealsPercentage Coefficient of VariationControl meal (usual breakfast)19.7 percentageStandard Deviation 8.9
Comparison: HGL meals vs control mealsp-value: <0.0195% CI: [3.3, 10.4]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.0695% CI: [-0.2, 7.2]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.8695% CI: [-3.3, 3.9]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: 0.1195% CI: [0.24, 6.48]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: <0.00195% CI: [3.6, 9.8]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.1395% CI: [0.2, 6.5]Linear Mixed Model
Secondary

Time Above Range

This is the time that the glucose was above range (\>10mmol/l) during the 3 hours postprandial period taken from CGM readings taken every 5 minutes

Time frame: 3 hours

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsTime Above RangeTest meal 1 (HGL)74 MinutesStandard Deviation 57
Breakfast MealsTime Above RangeTest meal 2 (HGLP)45 MinutesStandard Deviation 54
Breakfast MealsTime Above RangeTest meal 3 (MGL)47 MinutesStandard Deviation 50
Breakfast MealsTime Above RangeControl meal (usual breakfast)31 MinutesStandard Deviation 34
Comparison: Control vs HGL mealsp-value: 0.0495% CI: [2, 65]t-test, 2 sided
Comparison: Control vs HGLP mealsp-value: 0.5695% CI: [-17, 30]t-test, 2 sided
Comparison: Control vs MGL mealsp-value: 0.2295% CI: [8, 32]t-test, 2 sided
Comparison: HGL vs HGLP mealsp-value: 0.0195% CI: [10, 67]t-test, 2 sided
Comparison: HGL vs MGL mealsp-value: 0.0395% CI: [4, 62]t-test, 2 sided
Comparison: HGLP vs MGL mealsp-value: 0.6395% CI: [-29, 18]t-test, 2 sided
Secondary

Time in Range

This is the time in minutes that was spent with a glucose in range (3.9-10mmol/l over the 3 hours postprandial period

Time frame: three-hour postprandial breakfast period

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsTime in RangeTest meal 1 (HGL)100 MinutesStandard Deviation 56
Breakfast MealsTime in RangeTest meal 2 (HGLP)132 MinutesStandard Deviation 53
Breakfast MealsTime in RangeTest meal 3 (MGL)131 MinutesStandard Deviation 49
Breakfast MealsTime in RangeControl meal (usual breakfast)135 MinutesStandard Deviation 50
Comparison: HGL meals vs control mealp-value: 0.0195% CI: [-55.9, -13.6]Linear Mixed Model
Comparison: HGLP meals vs control mealsp-value: 0.8795% CI: [-23.6, 19.9]Linear Mixed Model
Comparison: MGL meals vs control mealsp-value: 0.6795% CI: [-26.4, 17]Linear Mixed Model
Comparison: HGL vs HGLP mealsp-value: 0.0195% CI: [-54.4, -12.2]Linear Mixed Model
Comparison: HGL vs MGL mealsp-value: 0.0195% CI: [-52.4, -10.4]Linear Mixed Model
Comparison: HGLP vs MGL mealsp-value: 0.8795% CI: [-19.7, 23.4]Linear Mixed Model
Secondary

Time in Tight Range

This the time of glucose reading spent in tight range (3.9-7.8mmol/l) over the three hour postprandial period from CGM readings taken every 5 minutes

Time frame: 3 hours

Population: CGM data for 25 participants who consumed breakfast test and control meals on two occasions. Not all the participants tested all the meals and not all repeated meals. Test meal 1 (HGL): 42 meals, participants: 24. Test meal 2 (HGLP): 36 meals, participants: 20. Test meal 3 (MGL): 37 meals, participants:20, control meals: 34 meals, participants: 20

ArmMeasureGroupValue (MEAN)Dispersion
Breakfast MealsTime in Tight RangeTest meal 1 (HGL)60 MinutesStandard Deviation 46
Breakfast MealsTime in Tight RangeTest meal 2 (HGLP)97 MinutesStandard Deviation 54
Breakfast MealsTime in Tight RangeTest meal 3 (MGL)69 MinutesStandard Deviation 49
Breakfast MealsTime in Tight RangeControl meal (usual breakfast)88 MinutesStandard Deviation 58
Comparison: Control vs HGL mealsp-value: 0.1695% CI: [10, 53]t-test, 2 sided
Comparison: Control vs HGLP mealsp-value: 0.1195% CI: [5, 46]t-test, 2 sided
Comparison: Control vs MGL mealsp-value: 0.1595% CI: [8, 45]t-test, 2 sided
Comparison: HGL vs HGLP mealsp-value: <0.0195% CI: [16, 71]t-test, 2 sided
Comparison: HGL vs MGL mealsp-value: 0.695% CI: [-36, 21]t-test, 2 sided
Comparison: HGLP vs MGL mealsp-value: 0.0295% CI: [6, 51]t-test, 2 sided

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026