EGCG Influence on Catecholamine Metabolism Clinical Trial
Official title:
The Polyphenol Epigallocatechin Gallate Lowers Circulating Catecholamine Concentrations and Alters Lipid Metabolism During Graded Exercise in Man.
| Verified date | June 2017 |
| Source | Swansea University |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | |
| Study type | Interventional |
The aim of this study was to explore the impact of acute ingestion of the polyphenol epigallocatechin galate (EGCG) on catecholamine, catecholamine metabolite, systemic metabolic and cardio-vascular variables across a range of exercise intensities during graded cycle exercise in man.
| Status | Completed |
| Enrollment | 8 |
| Est. completion date | February 2016 |
| Est. primary completion date | January 2016 |
| Accepts healthy volunteers | Accepts Healthy Volunteers |
| Gender | Male |
| Age group | 18 Years to 35 Years |
| Eligibility |
Inclusion Criteria: - Age 18-35 years old. Caffeine intake =400 mg.d-1 (thus less than four cups of tea/ coffee or caffeinated soda beverages). Habitual participation in exercise three to five times per week for 30-90 minutes per formal exercise session. Exclusion Criteria: - Female Any injury, assessed via health screening questionnaire prior to the start of the study. |
| Country | Name | City | State |
|---|---|---|---|
| n/a | |||
| Lead Sponsor | Collaborator |
|---|---|
| Swansea University |
Frayn KN. Calculation of substrate oxidation rates in vivo from gaseous exchange. J Appl Physiol Respir Environ Exerc Physiol. 1983 Aug;55(2):628-34. — View Citation
Jeukendrup AE, Wallis GA. Measurement of substrate oxidation during exercise by means of gas exchange measurements. Int J Sports Med. 2005 Feb;26 Suppl 1:S28-37. Review. — View Citation
Newell J, Higgins D, Madden N, Cruickshank J, Einbeck J, McMillan K, McDonald R. Software for calculating blood lactate endurance markers. J Sports Sci. 2007 Oct;25(12):1403-9. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | change in Adrenaline & Noradrenaline concentrations (nmol.l-1) | Changes in Adrenaline & Noradrenaline concentrations (nmol.l-1) from rest to exhaustion under EGCG and placebo conditions. | Relativised to each metabolic domain; rest, 2 hours post ingestion, highest lipid oxidation rate during exercise, lactate threshold and VO2peak (participant dependant) | |
| Primary | Changes in Metanephrine and Normetanephrine (pmol.l-1) | Changes in Metanephrine & Normetanephrine concentrations (pmol.l-1) from rest to exhaustion under EGCG and placebo conditions. | Relativised to each metabolic domain; rest, 2 hours post ingestion, highest lipid oxidation rate during exercise, lactate threshold and VO2peak (participant dependant) | |
| Primary | Changes in lipid and carbohydrate oxidation (g.min-1) | Changes in lipid and carbohydrate oxidation (g.min-1) from rest to exhaustion under EGCG and placebo conditions. | Over a period of approximately 2 and a half hours with the data collected relativised to each metabolic domain; rest, highest lipid oxidation rate during exercise, lactate threshold and VO2peak (participant dependant) | |
| Secondary | Changes in blood glucose concentrations (mmol.l-1) | Changes in glucose concentrations (pmol.l-1) from rest to exhaustion under EGCG and placebo conditions. | Relativised to each metabolic domain; rest, two hours post ingestion, highest lipid oxidation rate during exercise, lactate threshold and VO2peak (participant dependant) | |
| Secondary | Changes in exercise performance (S) under EGCG and placebo conditions. | Changes in markers of exercise performance, (performance time) under EGCG and placebo conditions | over a period of approximately 30 minutes from rest to volitional exhaustion. | |
| Secondary | Changes in blood lactate concentrations (mmol.l-1) | Changes in lactate concentrations (pmol.l-1) from rest to exhaustion under EGCG and placebo conditions. | Relativised to each metabolic domain; rest, two hours post ingestion, highest lipid oxidation rate during exercise, lactate threshold and VO2peak (participant dependant) | |
| Secondary | Changes in exercise performance (W) under EGCG and placebo conditions. | Changes in markers of exercise performance, (maximal power obtained) under EGCG and placebo conditions | over a period of approximately 30 minutes from rest to volitional exhaustion. |