Cardiovascular Diseases Clinical Trial
Official title:
Changing or Substituting Low-calorie Sweetened Beverages for Sugar-Sweetened Beverages or Water and Cardiometabolic Outcomes: A Systematic Review and Meta-analysis of Prospective Cohort Studies
Verified date | February 2020 |
Source | University of Toronto |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Observational |
We propose to conduct a systematic literature review and meta-analysis to assess the
association of low-calorie sweetened beverages (LCSBs) on cardiometabolic outcomes in
prospective cohort studies. We will be using methodological approaches (change in LCSBs
intake, and/or substitution analysis) that attempt to overcome the issue of reverse causality
associated with studies of LCSBs and cardiometabolic disease. Ten cardiometabolic outcomes
will be assessed:
1. Global adiposity - body weight
2. Global adiposity - BMI
3. Global adiposity - body fat
4. Abdominal adiposity - waist circumference
5. Overweight/obesity incidence
6. Metabolic syndrome incidence
7. Type 2 diabetes incidence
8. Cardiovascular disease incidence
9. Cardiovascular disease mortality
10. Total mortality
Status | Active, not recruiting |
Enrollment | 1 |
Est. completion date | May 1, 2020 |
Est. primary completion date | March 1, 2020 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | N/A and older |
Eligibility |
Inclusion Criteria: - Prospective cohorts studies - Duration: more than 1 year follow-up - Exposure: LCSBs - Change analysis or substitution analysis of exposure Exclusion Criteria: - Non-human studies - Less than 1 year follow-up - Analysis of baseline or prevalent intake of exposure only |
Country | Name | City | State |
---|---|---|---|
Canada | Clinical Nutrition and Risk Factor Modification Centre, St. Michael's Hospital | Toronto | Ontario |
Lead Sponsor | Collaborator |
---|---|
University of Toronto |
Canada,
Azad MB, Abou-Setta AM, Chauhan BF, Rabbani R, Lys J, Copstein L, Mann A, Jeyaraman MM, Reid AE, Fiander M, MacKay DS, McGavock J, Wicklow B, Zarychanski R. Nonnutritive sweeteners and cardiometabolic health: a systematic review and meta-analysis of randomized controlled trials and prospective cohort studies. CMAJ. 2017 Jul 17;189(28):E929-E939. doi: 10.1503/cmaj.161390. Review. — View Citation
Imamura F, Fretts A, Marklund M, Ardisson Korat AV, Yang WS, Lankinen M, Qureshi W, Helmer C, Chen TA, Wong K, Bassett JK, Murphy R, Tintle N, Yu CI, Brouwer IA, Chien KL, Frazier-Wood AC, Del Gobbo LC, Djoussé L, Geleijnse JM, Giles GG, de Goede J, Gudnason V, Harris WS, Hodge A, Hu F; InterAct Consortium, Koulman A, Laakso M, Lind L, Lin HJ, McKnight B, Rajaobelina K, Risérus U, Robinson JG, Samieri C, Siscovick DS, Soedamah-Muthu SS, Sotoodehnia N, Sun Q, Tsai MY, Uusitupa M, Wagenknecht LE, Wareham NJ, Wu JH, Micha R, Forouhi NG, Lemaitre RN, Mozaffarian D; Fatty Acids and Outcomes Research Consortium (FORCE). Fatty acid biomarkers of dairy fat consumption and incidence of type 2 diabetes: A pooled analysis of prospective cohort studies. PLoS Med. 2018 Oct 10;15(10):e1002670. doi: 10.1371/journal.pmed.1002670. eCollection 2018 Oct. — View Citation
Johnson RK, Lichtenstein AH, Anderson CAM, Carson JA, Després JP, Hu FB, Kris-Etherton PM, Otten JJ, Towfighi A, Wylie-Rosett J; American Heart Association Nutrition Committee of the Council on Lifestyle and Cardiometabolic Health; Council on Cardiovascular and Stroke Nursing; Council on Clinical Cardiology; Council on Quality of Care and Outcomes Research; and Stroke Council. Low-Calorie Sweetened Beverages and Cardiometabolic Health: A Science Advisory From the American Heart Association. Circulation. 2018 Aug 28;138(9):e126-e140. doi: 10.1161/CIR.0000000000000569. Review. — View Citation
Khan TA, Malik VS, Sievenpiper JL. Letter by Khan et al Regarding Article, "Artificially Sweetened Beverages and Stroke, Coronary Heart Disease, and All-Cause Mortality in the Women's Health Initiative". Stroke. 2019 Jun;50(6):e167-e168. doi: 10.1161/STROKEAHA.119.025571. Epub 2019 May 16. — View Citation
Malik VS. Non-sugar sweeteners and health. BMJ. 2019 Jan 3;364:k5005. doi: 10.1136/bmj.k5005. — View Citation
Rogers PJ, Hogenkamp PS, de Graaf C, Higgs S, Lluch A, Ness AR, Penfold C, Perry R, Putz P, Yeomans MR, Mela DJ. Does low-energy sweetener consumption affect energy intake and body weight? A systematic review, including meta-analyses, of the evidence from human and animal studies. Int J Obes (Lond). 2016 Mar;40(3):381-94. doi: 10.1038/ijo.2015.177. Epub 2015 Sep 14. Review. — View Citation
Toews I, Lohner S, Küllenberg de Gaudry D, Sommer H, Meerpohl JJ. Association between intake of non-sugar sweeteners and health outcomes: systematic review and meta-analyses of randomised and non-randomised controlled trials and observational studies. BMJ. 2019 Jan 2;364:k4718. doi: 10.1136/bmj.k4718. Erratum in: BMJ. 2019 Jan 15;364:l156. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Global measures of adiposity with established clinical relevance - body weight | Change in body weight | More than 1 year | |
Primary | Global measures of adiposity with established clinical relevance - BMI | Change in body mass index (BMI) | More than 1 year | |
Primary | Global measures of adiposity with established clinical relevance - body fat | Change in body fat | More than 1 year | |
Primary | Abdominal measures of adiposity with established clinical relevance - waist circumference | Change in waist circumference | More than 1 year | |
Primary | Overweight/obesity incidence | Risk ratio of Overweight/obesity incidence | More than 1 year | |
Primary | Metabolic syndrome incidence | Risk ratio of metabolic syndrome incidence | More than 1 year | |
Primary | Type 2 diabetes incidence | Risk ratio of type 2 diabetes incidence | More than 1 year | |
Primary | Cardiovascular disease incidence | Risk ratio of cardiovascular disease incidence | More than 1 year | |
Primary | Cardiovascular disease mortality | Risk ratio of Cardiovascular disease mortality | More than 1 year | |
Primary | Total mortality | Risk ratio of total mortality | More than 1 year |
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