Metabolic Syndrome Clinical Trial
Official title:
Design of a Genetic Score to Predict the Response to a Dietary Intervention in Adults With Metabolic Syndrome
Verified date | September 2023 |
Source | Instituto Nacional de Ciencias Medicas y Nutricion Salvador Zubiran |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
The aim of this study is to evaluate whether a genetic score based on genetic variants related to amino acid metabolism could predict the response to a dietary intervention in adults with metabolic syndrome.
Status | Active, not recruiting |
Enrollment | 100 |
Est. completion date | April 2024 |
Est. primary completion date | April 2024 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years to 60 Years |
Eligibility | Inclusion Criteria: - Adults (men and women) between the ages of 18 and 60. - Adults mexican mestizos (parents and grandparents born in Mexico). - Adults who can read and write. - Adults willing/able to provide informed consent. - Adults with obesity (BMI = 30 and = 39 kg / m2). - Adults with at least one of the metabolic syndrome diagnostic criteria: Waist circumference: men > 102 cm or women > 88 cm. Hypertriglyceridemia >150 mg/dL High fasting glucose >100 mg/dL High blood pressure = 130/85 mmHg Low HDL-cholesterol: men <40 mg/dL and women < 50 mg/dL Exclusion Criteria: - Adults with any type of diabetes. - Adults with hypertension. - Adults with kidney disease diagnosed by a medical or with creatinine> 1.3 mg / dL for men and > 1.1 mg / dL for women and / or blood urea nitrogen (BUN)> 20 mg / dL. - Adults with acquired diseases that produce obesity and diabetes secondarily. - Adults who have suffered a cardiovascular event. - Adults with weight loss > 3 kg in the last 3 months. - Adults with any catabolic diseases such as cancer and/or AIDS. - Gravidity status - Adults who smoke - Adults in treatment with any medication |
Country | Name | City | State |
---|---|---|---|
Mexico | Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubiran. | Mexico City |
Lead Sponsor | Collaborator |
---|---|
Instituto Nacional de Ciencias Medicas y Nutricion Salvador Zubiran | Universidad Autonoma de San Luis Potosí |
Mexico,
Kettunen J, Tukiainen T, Sarin AP, Ortega-Alonso A, Tikkanen E, Lyytikainen LP, Kangas AJ, Soininen P, Wurtz P, Silander K, Dick DM, Rose RJ, Savolainen MJ, Viikari J, Kahonen M, Lehtimaki T, Pietilainen KH, Inouye M, McCarthy MI, Jula A, Eriksson J, Raitakari OT, Salomaa V, Kaprio J, Jarvelin MR, Peltonen L, Perola M, Freimer NB, Ala-Korpela M, Palotie A, Ripatti S. Genome-wide association study identifies multiple loci influencing human serum metabolite levels. Nat Genet. 2012 Jan 29;44(3):269-76. doi: 10.1038/ng.1073. — View Citation
Mahendran Y, Jonsson A, Have CT, Allin KH, Witte DR, Jorgensen ME, Grarup N, Pedersen O, Kilpelainen TO, Hansen T. Genetic evidence of a causal effect of insulin resistance on branched-chain amino acid levels. Diabetologia. 2017 May;60(5):873-878. doi: 10.1007/s00125-017-4222-6. Epub 2017 Feb 10. — View Citation
Serralde-Zuniga AE, Guevara-Cruz M, Tovar AR, Herrera-Hernandez MF, Noriega LG, Granados O, Torres N. Omental adipose tissue gene expression, gene variants, branched-chain amino acids, and their relationship with metabolic syndrome and insulin resistance in humans. Genes Nutr. 2014 Nov;9(6):431. doi: 10.1007/s12263-014-0431-5. Epub 2014 Sep 27. — View Citation
Teslovich TM, Kim DS, Yin X, Stancakova A, Jackson AU, Wielscher M, Naj A, Perry JRB, Huyghe JR, Stringham HM, Davis JP, Raulerson CK, Welch RP, Fuchsberger C, Locke AE, Sim X, Chines PS, Narisu N, Kangas AJ, Soininen P; Genetics of Obesity-Related Liver Disease Consortium (GOLD), The Alzheimer's Disease Genetics Consortium (ADGC), The DIAbetes Genetics Replication And Meta-analysis (DIAGRAM); Ala-Korpela M, Gudnason V, Musani SK, Jarvelin MR, Schellenberg GD, Speliotes EK, Kuusisto J, Collins FS, Boehnke M, Laakso M, Mohlke KL. Identification of seven novel loci associated with amino acid levels using single-variant and gene-based tests in 8545 Finnish men from the METSIM study. Hum Mol Genet. 2018 May 1;27(9):1664-1674. doi: 10.1093/hmg/ddy067. — View Citation
Wang TJ, Larson MG, Vasan RS, Cheng S, Rhee EP, McCabe E, Lewis GD, Fox CS, Jacques PF, Fernandez C, O'Donnell CJ, Carr SA, Mootha VK, Florez JC, Souza A, Melander O, Clish CB, Gerszten RE. Metabolite profiles and the risk of developing diabetes. Nat Med. 2011 Apr;17(4):448-53. doi: 10.1038/nm.2307. Epub 2011 Mar 20. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in waist circumference | Change in waist circumference before and after the dietary intervention (cm) | Baseline to 2-month | |
Primary | Change in serum glucose | The concentration of serum glucose will be determined by an autoanalyzer before and after the intervention | Baseline to 2-month | |
Primary | Change in serum HDL cholesterol | The concentration of serum HDL-cholesterol will be determined by an autoanalyzer before and after the intervention (mg/dL) | Baseline to 2-month | |
Primary | Change in serum triglycerides | The concentration of serum triglycerides will be determined by an autoanalyzer before and after the intervention (mg/dL) | Baseline to 2-month | |
Primary | Change in systolic and diastolic blood pressure | The blood pressure will be determined before and after the intervention (mmHg) | Baseline to 2-month | |
Secondary | Change in the serum amino acid profile | The concentration of the amino acid profile will be determined by high pressure liquid chromatography (HPLC) before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change in body composition | Change in the percentage of fat mass, lean mass and skeletal muscle mass before and after the dietary intervention. | Baseline to 2-month | |
Secondary | Change in body weight | The change in body weight before and after the dietary intervention. | Baseline to 2-month | |
Secondary | Change in serum insulin | The concentration of insulin will be determined by ELISA before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change in serum leptin | The concentration of leptin will be determined by ELISA before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change in serum glucagon | The concentration of glucagon will be determined by ELISA before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change in serum adiponectin | The concentration of adiponectin will be determined by ELISA before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change of insulin resistance by homeostasis model assessment (HOMA) index | The HOMA index will be calculated as follows: glucose (mg / dl) x insulin (mUI / ml) / 405 before and after the dietary intervention | Baseline to 2-month | |
Secondary | Change of Body mass index | The body mass index will be calculated before an after the dietary intervention. | Baseline to 2-month |
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