Diabetes Clinical Trial
— Just_StandUpOfficial title:
Investigating the Response of Glycaemic Excursions in Type-2 Diabetes to Interrupting Prolonged Sedentary Behaviour (Sitting)
Type-2 diabetes, a common non-infectious disease, is the result of impaired insulin function
and insulin production in the body. In type-2 diabetic patients, postprandial glucose
control, lipid control and reduction of insulin resistance are crucial to deter the
development of diabetes related complications (e.g. retinopathy, nephropathy, neuropathy and
cardiovascular diseases), pancreatic β cells failure, morbidity and mortality. Currently,
diet, exercise and standard oral medicines are used to treat type-2 diabetes. However,
providing the most effective treatment to control postprandial glucose and lipid; and to
preserve the pancreatic β cells is challenging because poor metabolic profiles are still
detected in type-2 diabetic patients. Therefore, understanding the factors influencing the
poor metabolic profiles and adjunct therapy to manage type-2 diabetes are really important
to tackle this disease.
In modern society, people are spending most of their waking time in sedentary behaviour,
which is primarily prolonged sitting. Prolonged sedentary time is associated with increased
postprandial glucose, lipid and insulin resistance. In contrast, frequent interruption of
prolonged sitting with short light activity break reduces postprandial glucose, triglyceride
cholesterol and insulin resistance. However, how frequently patients should interrupt
sitting, potential longer-term effect of short activity break on reduction of postprandial
glucose, triglyceride cholesterol and insulin resistance, and the knowledge, beliefs and
experiences on the use of technology to decrease sedentary behaviour and improve glycaemic
control are not investigated in type-2 diabetic patients. Therefore, it would be relevant to
investigate this to prove the therapeutic role of frequent short activity break in sedentary
time in the management of type-2 diabetes.
Primary Research Objective:
1. To investigate the dose-response effect of frequency/number of light intensity walking
breaks of sitting on postprandial glucose, insulin, C-peptide and triglyceride
cholesterol level.
2. To investigate the potential longer-term effect of light intensity walking breaks of
sitting on glucose control using 24-h glucose data.
Secondary Research Objectives: The secondary objectives are
1. To obtain data to inform the development of a future feasibility trial investigating
the feasibility, compliance, adherence and longer-term effect of different frequencies
of light intensity walking breaks in sitting time on glycaemic excursions in
free-living.
2. To explore the knowledge, beliefs and experiences of those with Type 2 diabetes on the
use of technology to decrease sedentary behaviour and improve glycaemic control, that
could be used in the feasibility trial
| Status | Not yet recruiting |
| Enrollment | 24 |
| Est. completion date | April 2017 |
| Est. primary completion date | January 2017 |
| Accepts healthy volunteers | No |
| Gender | Both |
| Age group | 35 Years to 60 Years |
| Eligibility |
Inclusion Criteria: - Individuals with type 2 diabetes for less than 10 years - Individuals aged 35-60 years - Individuals receiving metformin or diet control - Non-smokers - Overweight and obese individuals (BMI 25-35 kg/m2) - Individuals with an HbA1c between >7% - Individuals with BP below 160/90mmHg Exclusion Criteria: - Individuals unable or unwilling to consent - Individuals under the age of 35 years and over the age of 60 years at study enrolment - Patients on sulphonylurea or other oral hypoglycaemic drugs therapy except metformin - Individuals with hepatic or renal dysfunction - Individuals with body mass index greater than 35 - Individuals suffering from cancer, cardiovascular diseases, cirrhosis, hepatitis and renal disease - Pregnant Individuals - Individuals who smoke - Individuals who are alcohol and drug abusers - Individuals with a blood pressure =160/90mmHg - Individuals diagnosed with anaemia (Hb<12g/dl in women and <13 g/dl in men) - Individuals taking medicines which can interfere with the glucose metabolism (e.g. anticoagulants, oral contraceptives, steroid, thiazide, ß-blocker, NSAID, anti-fungal, hormonal therapy, psychotropic drugs) - Individual taking drugs for glycaemic control in excess of standard care highlighted by the SIGN guideline 116. |
Allocation: Randomized, Endpoint Classification: Efficacy Study, Intervention Model: Crossover Assignment, Masking: Open Label, Primary Purpose: Treatment
| Country | Name | City | State |
|---|---|---|---|
| n/a | |||
| Lead Sponsor | Collaborator |
|---|---|
| Glasgow Caledonian University | University of Strathclyde |
Chastin SF, Egerton T, Leask C, Stamatakis E. Meta-analysis of the relationship between breaks in sedentary behavior and cardiometabolic health. Obesity (Silver Spring). 2015 Sep;23(9):1800-10. doi: 10.1002/oby.21180. — View Citation
Cooper AR, Sebire S, Montgomery AA, Peters TJ, Sharp DJ, Jackson N, Fitzsimons K, Dayan CM, Andrews RC. Sedentary time, breaks in sedentary time and metabolic variables in people with newly diagnosed type 2 diabetes. Diabetologia. 2012 Mar;55(3):589-99. doi: 10.1007/s00125-011-2408-x. Epub 2011 Dec 14. — View Citation
Dempsey, P.C., Owen, N., Larsen, R., Straznicky, N., Cohen, Neale., FACSM, B.B., Kingwell, B.A., Dunstan, D.W., Baker IDI Heart and Diabetes Institute, Melbourne, Australia., Department of Health and Exercise Science, Colorado State University, Fort Collins, Colorado, USA. 2015. Interrupting Prolonged Sitting: A Potential Therapeutic Tool in the Management of Type 2 Diabetes
Dunstan DW, Kingwell BA, Larsen R, Healy GN, Cerin E, Hamilton MT, Shaw JE, Bertovic DA, Zimmet PZ, Salmon J, Owen N. Breaking up prolonged sitting reduces postprandial glucose and insulin responses. Diabetes Care. 2012 May;35(5):976-83. doi: 10.2337/dc11-1931. Epub 2012 Feb 28. — View Citation
Healy GN, Dunstan DW, Salmon J, Cerin E, Shaw JE, Zimmet PZ, Owen N. Breaks in sedentary time: beneficial associations with metabolic risk. Diabetes Care. 2008 Apr;31(4):661-6. doi: 10.2337/dc07-2046. Epub 2008 Feb 5. — View Citation
Henson J, Yates T, Biddle SJ, Edwardson CL, Khunti K, Wilmot EG, Gray LJ, Gorely T, Nimmo MA, Davies MJ. Associations of objectively measured sedentary behaviour and physical activity with markers of cardiometabolic health. Diabetologia. 2013 May;56(5):1012-20. doi: 10.1007/s00125-013-2845-9. Epub 2013 Mar 1. — View Citation
Latouche C, Jowett JB, Carey AL, Bertovic DA, Owen N, Dunstan DW, Kingwell BA. Effects of breaking up prolonged sitting on skeletal muscle gene expression. J Appl Physiol (1985). 2013 Feb 15;114(4):453-60. doi: 10.1152/japplphysiol.00978.2012. Epub 2012 Dec 27. — View Citation
Peddie MC, Bone JL, Rehrer NJ, Skeaff CM, Gray AR, Perry TL. Breaking prolonged sitting reduces postprandial glycemia in healthy, normal-weight adults: a randomized crossover trial. Am J Clin Nutr. 2013 Aug;98(2):358-66. doi: 10.3945/ajcn.112.051763. Epub 2013 Jun 26. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | Postprandial glucose excursions measured with Area under curve | Dose-response relationship between frequencies of short light activity breaks in sedentary time and postprandial glucose excursions | 8 hours | No |
| Secondary | 24 hours glucose profile measured with continuous glucose monitor LifeStyle Libre | The effect of interruption of sedentary time with frequent short activity break on 24 hr glucose profile, insulin, C-peptide and triglyceride cholesterol levels will be assessed during each intervention. Then knowledge, beliefs and experiences of the type-2 diabetic patients on the use of technology to decrease sedentary behaviour and improve glycaemic control will be assessed. | 24 hours | Yes |
| Secondary | Insulin, C-peptide and triglyceride cholesterol plasma level during the intervention measured with Area under curve | The effect of interruption of sedentary time with frequent short activity break on 24 hr glucose profile, insulin, C-peptide and triglyceride cholesterol levels will be assessed during each intervention. Then knowledge, beliefs and experiences of the type-2 diabetic patients on the use of technology to decrease sedentary behaviour and improve glycaemic control will be assessed. | 8 hours | Yes |
| Secondary | Qualitative exploration of the knowledge, beliefs and experiences of those with type 2 diabetes on the use of technology to decrease sedentary behaviour and improve glycaemic control | The effect of interruption of sedentary time with frequent short activity break on 24 hr glucose profile, insulin, C-peptide and triglyceride cholesterol levels will be assessed during each intervention. Then knowledge, beliefs and experiences of the type-2 diabetic patients on the use of technology to decrease sedentary behaviour and improve glycaemic control will be assessed. | 1 hour | Yes |
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