Exercise-induced Oxidative Stress Clinical Trial
Official title:
Physiological Response to Ataulfo Mango Pulp and Peel Beverages in Exercise
| Verified date | June 2017 |
| Source | Universidad Autonoma de Ciudad Juarez |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | |
| Study type | Interventional |
The aim of this study is to assess the antioxidant capacity of two mango base beverages (AM1, AM2), against exercise-induced oxidative stress.
| Status | Completed |
| Enrollment | 19 |
| Est. completion date | April 30, 2017 |
| Est. primary completion date | February 28, 2017 |
| Accepts healthy volunteers | Accepts Healthy Volunteers |
| Gender | Male |
| Age group | 17 Years to 28 Years |
| Eligibility |
Inclusion Criteria: - healthy male - university student - no alcohol, cigar or drugs consumption Exclusion Criteria: - no antioxidant supplement or ergogenic consumption - health issues with performing physical activity |
| Country | Name | City | State |
|---|---|---|---|
| n/a | |||
| Lead Sponsor | Collaborator |
|---|---|
| Universidad Autonoma de Ciudad Juarez |
Alvarez-Parrilla E, De La Rosa LA, Legarreta P, Saenz L, Rodrigo-García J, González-Aguilar GA. Daily consumption of apple, pear and orange juice differently affects plasma lipids and antioxidant capacity of smoking and non-smoking adults. Int J Food Sci Nutr. 2010 Jun;61(4):369-80. doi: 10.3109/09637480903514041. — View Citation
Ramos-Jiménez A, Hernández-Torres RP, Wall-Medrano A, Torres-Durán PV, Juárez-Oropeza MA, Solis Ceballos JA. Acute physiological response to indoor cycling with and without hydration; case and self-control study. Nutr Hosp. 2013 Sep-Oct;28(5):1487-93. doi: 10.3305/nh.2013.28.5.6698. — View Citation
Spirlandeli AL, Deminice R, Jordao AA. Plasma malondialdehyde as biomarker of lipid peroxidation: effects of acute exercise. Int J Sports Med. 2014 Jan;35(1):14-8. doi: 10.1055/s-0033-1345132. Epub 2013 Jun 14. — View Citation
Wall-Medrano A, Olivas-Aguirre FJ, Velderrain-Rodriguez GR, González-Aguilar A, de la Rosa LA, López-Díaz JA, Álvarez-Parrilla E. [Mango: agroindustrial aspects, nutritional/functional value and health effects]. Nutr Hosp. 2014 Nov 1;31(1):67-75. doi: 10.3305/nh.2015.31.1.7701. Review. Spanish. — View Citation
Wang CY, Haskell WL, Farrell SW, Lamonte MJ, Blair SN, Curtin LR, Hughes JP, Burt VL. Cardiorespiratory fitness levels among US adults 20-49 years of age: findings from the 1999-2004 National Health and Nutrition Examination Survey. Am J Epidemiol. 2010 Feb 15;171(4):426-35. doi: 10.1093/aje/kwp412. Epub 2010 Jan 15. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | Antioxidant capacity change | Assessed by FRAP change. Blood samples were drawn from the antecubital vein into EDTA test tubes at rest, before beverage intake, and immediately following the exercise test. Samples were then centrifuged at 5000 rpm for 10 min at 4°C to obtain plasma, which was withdrawn and separated into eppendorf vials, maintained at -80°C until further biochemical analysis. | 0 min (before beverage intake), 9-15 min (immediately after exercise test) | |
| Primary | Antioxidant capacity change | Assessed by uric acid concentration change. Blood samples were drawn from the antecubital vein into EDTA test tubes at rest, before beverage intake, and immediately following the exercise test. Samples were then centrifuged at 5000 rpm for 10 min at 4°C to obtain plasma, which was withdrawn and separated into eppendorf vials, maintained at -80°C until further biochemical analysis. | 0 min (before beverage intake), 9-15 (immediately after exercise test) | |
| Primary | Antioxidant capacity change | Assessed by reduced glutathione concentration change. Blood samples were drawn from the antecubital vein into EDTA test tubes at rest, before beverage intake, and immediately following the exercise test. Samples were then centrifuged at 5000 rpm for 10 min at 4°C to obtain plasma, which was withdrawn and separated into eppendorf vials, maintained at -80°C until further biochemical analysis. | 0 min (before beverage intake), 9-15 (immediately after exercise test) | |
| Secondary | Oxidative stress change | Assessed by TBARS concentration change. Blood samples were drawn from the antecubital vein into EDTA test tubes at rest, before beverage intake, and immediately following the exercise test. Samples were then centrifuged at 5000 rpm for 10 min at 4°C to obtain plasma, which was withdrawn and separated into eppendorf vials, maintained at -80°C until further biochemical analysis. | 0 min (before beverage intake), 9-15 (immediately after exercise test) | |
| Secondary | Oxidative stress change | Assessed by protein carbonyls concentration change. Blood samples were drawn from the antecubital vein into EDTA test tubes at rest, before beverage intake, and immediately following the exercise test. Samples were then centrifuged at 5000 rpm for 10 min at 4°C to obtain plasma, which was withdrawn and separated into eppendorf vials, maintained at -80°C until further biochemical analysis. | 0 min (before beverage intake), 9-15 (immediately after exercise test) | |
| Secondary | Lactic acid concentration change | Assessed by lactic acid concentration change. Capillary blood samples were taken from the fingertip, using a lancet and analyzed (YSI modelo 1500, Yellow Springs, USA) | 0 min (before performing exercise test), 3 min, 6 min, 9 min, 12 min, 15 min (during exercise test) | |
| Secondary | Postprandial glycemic change | Assessed by blood glucose concentration change. Capillary blood samples were taken from the fingertip, using a lancet, and analyzed (ReliOn Confirm/micro Test Strips ARKRAY, USA) | 0 min (before beverage intake), 30 min, 60 min, 90 min, 120 min (after beverage intake) |
| Status | Clinical Trial | Phase | |
|---|---|---|---|
| Completed |
NCT01775384 -
Polyphenols, Exercise, and Metabolomics
|
N/A |