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Completed

NCT Number: NCT05242978

Acute Impact of Different Foods and Beverages on Exercise Induced Oxidative Stress and Inflammation

The aim of this research project is to explore the acute impact of specific foods and beverages, which have been shown to be associated with inflammatory processes, mainly in epidemiological studies, on inflammatory and oxidative stress parameters in healthy humans following a high intensity physical workout.

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Key information

Age range

18 year–40 year

Sex eligibility

Female

Study type

Interventional

Phase

Not applicable

Primary location

University of Vienna

Vienna, Austria, 1070

About this study

The aim of this research project is to explore the acute impact of specific foods and beverages, which have been shown to be associated with inflammatory processes, mainly in epidemiological studies, on inflammatory and oxidative stress parameters in healthy humans following a high intensity physical workout. The choice of food will mainly be based on the food groups from the Empirical Dietary Inflammatory Index. For that purpose, forty-two healthy volunteers will be recruited to perform several interventions in order to assess the impact of different nutrient groups or single- foods on oxidative and inflammatory markers. They will be divided into two groups (beverage consumption, n=20 & plantbased foods, n=22). The intense physical activity serves to induce a physiological stress response in the body, known to be accompanied by an increase in oxidative and inflammatory stress parameters. The idea is that anti- inflammatory or antioxidant nutrients could potentially attenuate this stress response in dependence on their anti- inflammatory or antioxidant potential. The operability of this concept has already been tested. The main benefit of this approach is to get a deeper insight into short term effects of single foods or beverages on inflammatory and prooxidative processes in humans by using short term intense physical activity as a stress model. One major practical aspect of this approach is to assess dietary components with respect to their pro- or anti-inflammatory-/oxidative stress potential regarding e.g. non-communicable diseases such as type 2 diabetes, coronary heart disease or the metabolic syndrome. Furthermore, it could help to reduce inflammation or oxidative stress during or following high intense physical exercise in order to reduce the stress response during training or competition in order to enhance regeneration and to foster the training gain in sports.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • female human subjects
  • aged 18-40 years
  • no chronical diseases
  • not more than 120 minutes of physical activity per week
  • no regular resistance training within the past 6 months
  • BMI 18.5 - 24.99 kg/m²
  • body fat percentage of at least 20%
  • Exclusion Criteria:
  • contraindications against physical activity
  • anemia
  • fructose or lactose intolerance
  • smoking
  • medications with influence on ROS levels or inflammation
  • allergy or intolerance against intervention food/beverages.

Treatment and study plan

Nutrition

Other

acute single dose nutrition intervention

Primary outcomes

  1. ROS change

    Time frame: change from baseline to 2.5 hours

    ROS (change from baseline = after overnight fasting to post exercise (=after 2.5 hours)

  2. IL-6 change

    Time frame: change from baseline to 2.5 hours

    IL-6 (change from baseline = after overnight fasting to post exercise (=after 2.5 hours)

Secondary outcomes

  1. estradiol

    Time frame: baseline

    17-beta-estradiol

  2. DNA damage (comet assay

    Time frame: change from baseline to 2.5 hours

    comet assay - wholeblood

  3. MDA change

    Time frame: change from baseline to 2.5 hours

    MDA (change from baseline = after overnight fasting to post exercise (=after 2.5 hours)

  4. hs-CRP change

    Time frame: change from baseline to 2.5 hours

    hs-CRP (change from baseline = after overnight fasting to post exercise (=after 2.5 hours)

  5. FRAP

    Time frame: change from baseline to 2.5 hours

    Ferric Reducing Antioxidant Power Assay

  6. Polyphenol Content

    Time frame: change from baseline to 2.5 hours

    Polyphenol Content Plasma

  7. Lipidomics

    Time frame: change from baseline to 2.5 hours

    oxLDL

  8. Protein Carbonyls

    Time frame: change from baseline to 2.5 hours

    Protein Carbonyl Assay

Sponsors and collaborators

Lead sponsor

University of Vienna

Other

Registry information

Important dates

Study start
2022
Primary completion
2024
Study completion
2024
First posted
Feb 16, 2022
Registry last updated
Jul 4, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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