Physical Activity Clinical Trial
Official title:
Isolating and Exploiting the Mechanisms That Link Breakfast and Human Health - Intervention
NCT number | NCT04417205 |
Other study ID # | DC-I |
Secondary ID | |
Status | Completed |
Phase | N/A |
First received | |
Last updated | |
Start date | February 26, 2019 |
Est. completion date | August 1, 2022 |
Verified date | April 2023 |
Source | University of Bath |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
Following the establishment of causal links between breakfast consumption, the individual components of energy balance, and health it is now important to examine and target the underlying biological mechanisms involved to maximise potential health benefits. To begin investigating the outlined mechanisms healthy, non-obese participants will be recruited to take part in phase I (acute design) of a wider project.
Status | Completed |
Enrollment | 34 |
Est. completion date | August 1, 2022 |
Est. primary completion date | August 1, 2022 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | 18 Years to 65 Years |
Eligibility | Inclusion Criteria: - Body mass index 18.5-29.9 kg·m-2 - Age 18-65 years - Able and willing to provide informed consent and safely comply with study procedures - Females to maintain record of regular menstrual cycle phase or contraceptive use - No anticipated changes in diet/physical activity during the study (e.g. holidays or diet plans) - Inclusive to all breakfast habits (e.g. regular skipper / consumer) Exclusion Criteria: - Any reported condition or behaviour deemed either to pose undue personal risk to the participant or introduce bias - Any diagnosed metabolic disease (e.g. type 1 or type 2 diabetes) - Any reported use of substances which may pose undue personal risk to the participants or introduce bias into the experiment (e.g. smoking/substance abuse) - Lifestyle not conforming to standard sleep-wake cycle (e.g. shift worker) - Any reported recent (<6 months) change in body mass (± 3%) |
Country | Name | City | State |
---|---|---|---|
United Kingdom | University of Bath | Bath | Somerset |
Lead Sponsor | Collaborator |
---|---|
University of Bath |
United Kingdom,
Betts JA, Richardson JD, Chowdhury EA, Holman GD, Tsintzas K, Thompson D. The causal role of breakfast in energy balance and health: a randomized controlled trial in lean adults. Am J Clin Nutr. 2014 Aug;100(2):539-47. doi: 10.3945/ajcn.114.083402. Epub 2014 Jun 4. — View Citation
Bray GA, Redman LM, de Jonge L, Covington J, Rood J, Brock C, Mancuso S, Martin CK, Smith SR. Effect of protein overfeeding on energy expenditure measured in a metabolic chamber. Am J Clin Nutr. 2015 Mar;101(3):496-505. doi: 10.3945/ajcn.114.091769. Epub 2015 Jan 14. — View Citation
Chowdhury EA, Richardson JD, Holman GD, Tsintzas K, Thompson D, Betts JA. The causal role of breakfast in energy balance and health: a randomized controlled trial in obese adults. Am J Clin Nutr. 2016 Mar;103(3):747-56. doi: 10.3945/ajcn.115.122044. Epub 2016 Feb 10. — View Citation
Leidy HJ, Ortinau LC, Douglas SM, Hoertel HA. Beneficial effects of a higher-protein breakfast on the appetitive, hormonal, and neural signals controlling energy intake regulation in overweight/obese, "breakfast-skipping," late-adolescent girls. Am J Clin Nutr. 2013 Apr;97(4):677-88. doi: 10.3945/ajcn.112.053116. Epub 2013 Feb 27. — View Citation
Park YM, Heden TD, Liu Y, Nyhoff LM, Thyfault JP, Leidy HJ, Kanaley JA. A high-protein breakfast induces greater insulin and glucose-dependent insulinotropic peptide responses to a subsequent lunch meal in individuals with type 2 diabetes. J Nutr. 2015 Mar;145(3):452-8. doi: 10.3945/jn.114.202549. Epub 2014 Dec 24. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in physical activity thermogenesis | Energy expenditure measured using physical activity monitor | Assessed for 1 week at baseline, 3 days a week during weeks 1-3 of the intervention and again for 1 week in the 4th week of the intervention. | |
Primary | Change in expression of circadian clock genes measured in whole blood | Pre and post intervention change clock gene expression | Baseline and 4-weeks | |
Primary | Change in postprandial glycaemia following carbohydrate rich test breakfast and lunch over 4 weeks | The postprandial time course response of plasma glucose to the test breakfast and lunch meals | Baseline and 4-weeks | |
Primary | Change in postprandial insulinaemia following carbohydrate rich test breakfast and lunch over 4 weeks | The postprandial time course response of plasma insulin to the test breakfast and lunch meals | Assessed at baseline and after 4 weeks of the intervention | |
Primary | Change in body mass | Participants will be weighed prior to the intervention and again upon completion | 4 weeks | |
Secondary | Change in postprandial incretin hormone response following breakfast and lunch | The postprandial time course response of plasma incretin hormones (e.g. GLP-1 & GIP) to the the test breakfast. | Baseline and 4 weeks | |
Secondary | Change in subjective appetite ratings following breakfast and lunch | Ratings of appetite provided on subjective appetite scales (on a scale of 0-100 mm where 0 is associated with lower ratings and 100 with higher ratings) following the test breakfast and lunch | Baseline and 4 weeks | |
Secondary | Change in fuel oxidation during the test breakfast | Fat and carbohydrate oxidation following breakfast | Baseline and 4 weeks |
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