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NCT Number: NCT07737327

The Effect of Individual Sodium Citrate Consumption on Repeated Sprint Performance in Female Soccer Players

The aim of this research is to determine whether sodium citrate supplementation, taken at the best individual time, would improve repeated sprint performance in professional female soccer players.

The main questions it aims to answer are:

1. Does sodium citrate improve sprint times, peak power, minimum power, and mean power during repeated sprints? 2. Does sodium citrate lower fatigue index (the drop in power across sprints) during repeated sprint exercise? 3. Does sodium citrate change blood bicarbonate, pH, and lactate levels before and after exercise? 4. Does sodium citrate affect how hard exercise feels (perceived exertion)?

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Key information

Age range

18 year–25 year

Sex eligibility

Female

Study type

Interventional

Phase

Not applicable

About this study

This study is a randomized, double-blind, placebo-controlled crossover trial designed to investigate the effects of acute sodium citrate (SC) supplementation on repeated sprint performance and acid-base responses in female soccer players. Based on an a priori sample size calculation using G*Power (version 3.1), a minimum of 20 participants is required and will be recruited. Eligible participants will be professional female soccer players competing in the Turkish Women's Third League.

Each participant will complete two experimental trials in a randomized order, separated by a washout period of at least three days. During the SC trial, participants will ingest SC at a dose of 0.5 g·kg-¹ body mass dissolved in a flavored beverage. During the placebo (PL) trial, participants will consume a taste- and appearance-matched sodium chloride solution. Both supplements will be prepared by a researcher not involved in data collection to ensure allocation concealment and maintenance of double blinding.

On each experimental visit, participants will arrive at the laboratory following an overnight fast and will consume a standardized breakfast before supplementation. Capillary blood samples will be collected before supplementation and at regular intervals thereafter to determine blood bicarbonate concentration. During the SC condition, exercise testing will commence once blood bicarbonate concentration has increased by at least 5.0 mmol·L-¹ above baseline (individualized peak bicarbonate response; Tpeak). During the placebo condition, exercise testing will begin 120-150 minutes after ingestion, corresponding to the expected time window for peak bicarbonate responses observed during SC supplementation. To minimize the influence of hormonal fluctuations on exercise performance and physiological responses, both experimental trials will be conducted during the same phase of the menstrual cycle, outside the menstruation period. Participants using oral contraceptives will be excluded.

Repeated sprint performance will be assessed using the Running-based Anaerobic Sprint Test (RAST), which consists of six maximal 35-m sprints separated by 10 seconds of passive recovery. Sprint performance outcomes will include sprint times, peak power, minimum power, mean power, and fatigue index. Capillary blood samples will be collected at baseline, immediately before exercise, and immediately after exercise to determine blood bicarbonate concentration, blood pH, and lactate concentration. Ratings of perceived exertion (RPE) will be recorded after each sprint using the Borg 6-20 scale. The success of participant blinding will be evaluated using a blinding questionnaire administered at three predefined time points during the study.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Female professional soccer players competing in the Turkish Women's Third League
  • Age between 18-25 years
  • Active training status (minimum 3 sessions per week)
  • Regular menstrual cycles
  • Both experimental trials scheduled in the same phase of the menstrual cycle, outside of menstruation
  • No use of nutritional supplements in the 4 weeks prior to the study
  • Willingness to provide written informed consent

Exclusion criteria

  • Use of oral contraceptives
  • Irregular menstrual cycle
  • History of gastrointestinal disorders
  • Any musculoskeletal injury preventing maximal sprint performance
  • Smoking
  • Use of any medication that may affect acid-base balance
  • Pregnancy

Treatment and study plan

Sodium Citrate Oral Product

Dietary Supplement

0.5 g/kg body weight of sodium citrate dissolved in flavored water, ingested orally. Exercise begins at individual peak blood bicarbonate time (T_peak), determined through serial capillary blood sampling starting 90 minutes post-ingestion.

Other names: Trisodium citrate

Placebo

Other

Sodium chloride (NaCl) at a taste-matched dose dissolved in flavored water, ingested orally. Exercise begins 120-150 minutes post-ingestion.

Other names: Sodium Chloride, NaCl

Primary outcomes

  1. Minimum Power

    Time frame: Measured during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    The lowest power output recorded across six maximal 35-meter sprints during the Running-based Anaerobic Sprint Test (RAST). Calculated as body weight (kg) multiplied by the square of sprint distance (m) divided by the cube of the slowest sprint time (s).

  2. Fatigue Index

    Time frame: Measured during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    The rate of power decline across six maximal 35-meter sprints during the Running-based Anaerobic Sprint Test (RAST). Calculated as the difference between peak power and minimum power divided by total sprint time (W/s).

Secondary outcomes

  1. Peak Power

    Time frame: Measured during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    The highest power output recorded across six maximal 35-meter sprints during the Running-based Anaerobic Sprint Test (RAST). Calculated as body weight (kg) multiplied by the square of sprint distance (m) divided by the cube of the fastest sprint time (s).

  2. Mean Power

    Time frame: Measured during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    The average power output recorded across six maximal 35-meter sprints during the Running-based Anaerobic Sprint Test (RAST). Calculated as the mean of all six individual sprint power values.

  3. Sprint Times

    Time frame: Measured during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    Individual sprint times recorded for each of the six maximal 35-meter sprints during the Running-based Anaerobic Sprint Test (RAST), measured in seconds using a photoelectric timing system.

  4. Blood Bicarbonate Concentration

    Time frame: Measured at baseline (pre-ingestion), pre-exercise (at T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo), and at 1, 3, 5, and 7 minutes post-exercise.

    Capillary blood bicarbonate concentration (HCO₃-, mmol/L) measured at baseline, pre-exercise, and post-exercise using a portable blood gas analyzer.

  5. Blood pH

    Time frame: Measured at baseline (pre-ingestion), pre-exercise (at T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo), and at 1, 3, 5, and 7 minutes post-exercise.

    Capillary blood pH measured at baseline, pre-exercise, and post-exercise using a portable blood gas analyzer.

  6. Blood Lactate Concentration

    Time frame: Measured at baseline (pre-ingestion), pre-exercise (at T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo), and at 1, 3, 5, and 7 minutes post-exercise.

    Capillary blood pH measured at baseline, pre-exercise, and post-exercise using a portable blood gas analyzer.

  7. Rating of Perceived Exertion (RPE)

    Time frame: Measured after each sprint during the RAST test, administered immediately after the individualized ingestion-to-exercise interval (T_peak for sodium citrate; 120-150 minutes post-ingestion for placebo)

    Perceived exertion rated by participants after each of the six maximal 35-meter sprints using the Borg RPE scale (6-20).

Study contacts

Contact information is provided by the study sponsor or research team.

Dilara KURU, PhD Candidate

CONTACT

[email protected]

+905317242084

Hüseyin Hüsrev TURNAGÖL, Professor

CONTACT

[email protected]

+905323975259

Sponsors and collaborators

Lead sponsor

Hacettepe University

Other

Registry information

Official study title

The Acute Effects of Individually Timed Sodium Citrate Ingestion on Repeated Sprint Performance in Professional Female Soccer Players: A Randomized, Double-Blind, Placebo-Controlled Crossover Study

Acronym: ITSCORE-F

Important dates

Study start
2026
Primary completion
2026
Study completion
2027
First posted
Jul 30, 2026
Registry last updated
Jul 30, 2026

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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