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Clinical Trials/NCT07166835
NCT07166835Not yet recruitingNot Applicable

The Efficacy of a Blackcurrant-based Nootropic Drink to Support Cognitive Functioning Under Normobaric Simulated High Altitude

Leeds Beckett University2 sites in 1 country27 target enrollmentStarted: September 1, 2025Last updated:

Trial Snapshot

Phase
Not Applicable
Status
Not yet recruiting
Enrollment
27
Locations
2
Primary Endpoint
Executive Function (Trail Making Task)

Study Overview

Brief Summary

This study investigates the cognitive effects of Ārepa, a blackcurrant-based drink, under simulated high-altitude conditions (4,500m normobaric hypoxia for ~180 minutes). Using a double-blind, randomised, placebo-controlled crossover design, participants will consume either the nootropic blackcurrant-based drink or a taste-matched placebo. Cognitive testing (~80 minutes) includes Trail-making, Stroop, N-back, Serial 7s/3s, and RVIP tasks. Physiological measures (heart rate, SpO₂, blood) and biomarkers (MAO-B, BDNF, hsCRP, S100B, Prolactin, C3G, Sarmentosin) will be assessed. Scales will evaluate mood, wellbeing, and perceived effects. The aim is to determine if the nootropic drink can support cognitive function in hypoxic environments.

Detailed Description

Cognitive functioning can be influenced by varying factors including age, education, fatigue and environmental conditions. It is well established that stress, including hypoxia, sleep deprivation, and mental fatigue, alters brain energetics therefore resulting in a decline of cognitive function. Any physical or psychological stressor that disrupts homeostasis results in a stress response. Altitude, often associated with sports, recreational activities and holidaying, refers to environments where the partial pressure of oxygen (pO2) is reduced relative to sea level. The effects of high altitude on humans are mostly the consequences of reduced pO2 in the atmosphere and can result in fatigue, dizziness and debilitating cognitive consequences to unacclimatised individuals. These effects can significantly impair cognitive and physical performance at high elevations. In this context, interests in prophylactic use of dietary interventions to mitigate the effects of oxygen deprivation has increased in recent years. Interventions utilising a number of plant derived phytochemicals have demonstrated some protective efficacy against these physiological insults and may be capable of attenuating cognitive function and mood under hypoxic stress. However, there is limited research available on polyphenol supplementation to support cognition at high altitudes. Therefore, the purpose of the study is to explore the possibility of the nootropic drink and how effective it is in reducing cognitive impairment of healthy males at a simulated high altitude of 4,500m.

Participants will attend the laboratory on four occasions over a 2-3-week period. The first two visits will involve a pre-screening assessment and a familiarisation session with the experimental procedures and cognitive tasks.

The subsequent two visits will serve as the experimental trials, during which participants will be exposed to a normobaric hypoxic environment simulating an altitude of 4,500 meters. This condition is achieved by maintaining sea-level barometric pressure with a reduced inspired oxygen fraction (FiO₂ ~11.3%, equivalent to a PiO₂ of approximately 80.9 mmHg).

Acute exposure to high altitudes (3,000-4,500 m) for durations as short as 45 to 120 minutes has been shown to impair cognitive function, increase mood disturbances, reduce task accuracy, and slow reaction times. Based on prior research the duration of hypoxic exposure in this study will be approximately 180 minutes, allowing sufficient time for potential cognitive changes to occur.

Each experimental trial will follow a double-blind, randomised, placebo-controlled crossover design. Participants will consume 100 mL of either an anthocyanin-rich blackcurrant drink (containing 200 mg of bioactive compounds) or a taste- and appearance-matched placebo (0 mg). A 45-minute rest period will follow to allow for absorption.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Crossover
Primary Purpose
Supportive Care
Masking
Double (Participant, Investigator)

Eligibility Criteria

Ages
18 Years to 35 Years (Adult)
Sex
Male
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Willing and able to provide written informed consent (in English)
  • Aged 18-35
  • Residing at a low altitude (<500m)

Exclusion Criteria

  • Diagnosed food allergy or intolerance to the investigational products or control products. (Blackcurrant, food allergen/ pine, tree-derived allergen/ l-theanine tree allergen (camellia sinensis))
  • Significant past medical and psychiatric history and ongoing chronic conditions such as, cardiovascular disease, respiratory disease, endocrine disorder (e.g. Diabetes mellites) and neurological and psychiatric conditions including brain injury or are colourblind.
  • Significant medication history or current prescription of medication or supplements known to affect cognition such as. Sedatives, stimulants, or herbal supplements high in anthocyanin and polyphenol content.
  • A positive result from the pre-screening sickle cell trait blood test.
  • An abnormal ECG reading.
  • A resting heart rate above 100bmp.
  • A blood pressure reading above 140/90mmHg.
  • Subjects not willing and/ or not able to comply with the scheduled visits required for the study.
  • Not willing to provide blood samples.
  • Not classified as low risk based on the ACSM guidelines.

Outcomes

Primary Outcomes

Executive Function (Trail Making Task)

Time Frame: Baseline (sea level, pre-supplementation), approximately 1 hour (±10 minutes) after exposure, and 2 hours (±10 minutes) after exposure.

Change from baseline (sea level, pre-supplementation) in completion time during acute high-altitude exposure, assessed at \~1 hour and \~2 hours post exposure following a cognitive demand battery. Measures of correct response and reaction time in seconds.

Working Memory (N-back)

Time Frame: Baseline (sea level, pre-supplementation), approximately 1 hour (±10 minutes) after exposure, and 2 hours (±10 minutes) after exposure.

Change from baseline (sea level, pre-supplementation) in accuracy (percent correct responses) and mean reaction time (milliseconds) on the N-back task during acute high-altitude exposure, assessed at \~1 hour and \~2 hours post exposure following a cognitive demand battery. Measures are response time in milliseconds and percentage of correct response.

Attention (RVIP) as part of the Cognitive Demand Battery

Time Frame: Baseline (sea level, pre-supplementation), and 6 repeated assessments during the cognitive demand battery conducted between 1 hr 20 min and 2 hr 20 min after onset of acute high-altitude exposure.

Change from baseline (sea level, pre-supplementation) in accuracy (percent correct) and mean reaction time (milliseconds) on the RVIP task, administered as part of a repeated cognitive demand battery beginning \~1 hr 20 min into acute high-altitude exposure and repeated 6 times within 1 hour.

Working Memory (Serial 7s)

Time Frame: Baseline (sea level, pre-supplementation), and 6 repeated assessments during the cognitive demand battery conducted between 1 hr 20 min and 2 hr 20 min after onset of acute high-altitude exposure.

Change from baseline (sea level, pre-supplementation) in number of correct subtractions on the Serial 7s task, administered as part of a repeated cognitive demand battery beginning \~1 hr 20 min into acute high-altitude exposure and repeated 6 times within 1 hour. Measure is Number of correct responses.

Executive Function (Stroop, colour word task)

Time Frame: Baseline (sea level, pre-supplementation), approximately 1 hour (±10 minutes) after exposure, and 2 hours (±10 minutes) after exposure.

Change from baseline (sea level, pre-supplementation) in number of correct responses and mean reaction time during acute high-altitude exposure, assessed at \~1 hour and \~2 hours post exposure following a cognitive demand battery. Measures are number of correct responses and response time in seconds.

Working Memory (Serial 3s)

Time Frame: Baseline (sea level, pre-supplementation), and 6 repeated assessments during the cognitive demand battery conducted between 1 hr 20 min and 2 hr 20 min after onset of acute high-altitude exposure.

Change from baseline (sea level, pre-supplementation) in number of correct subtractions on the Serial 3s task, administered as part of a repeated cognitive demand battery beginning \~1 hr 20 min into acute high-altitude exposure and repeated 6 times within 1 hour. Units of measure is the number of correct responses.

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (2)

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