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Acute sodium bicarbonate ingestion provides small beneficial effect on HIIE performance in team-sport athletesSodium bicarbonate may offer small gains for team sport athletes

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Key Takeaway
Consider sodium bicarbonate for modest HIIE performance gains, but note the low certainty of evidence for physiological changes.

This meta-analysis evaluated the effects of acute or short-term sodium bicarbonate (NaHCO3) ingestion on performance and physiological markers in 241 team-sport athletes. The primary outcome, HIIE performance, showed a small beneficial effect (Hedges' g = 0.23; 95% CI: 0.07 to 0.39, P = 0.008). However, the authors noted that the 95% prediction interval for HIIE performance crossed zero, and no consistent moderators were identified.

Secondary outcomes showed significant increases in blood lactate (MD = 1.73 mmol/L; 95% CI: 0.97 to 2.49), bicarbonate (MD = 2.73 mmol/L; 95% CI: 2.16 to 3.30), and pH (MD = 0.050; 95% CI: 0.025 to 0.075). No clear effects were observed for repeated-sprint performance, mean power, intermittent endurance, or work capacity.

The certainty of evidence was low for HIIE performance and very low for blood lactate and pH. Clinical application should be individualized based on the specific exercise task, the athlete's performance response, and gastrointestinal tolerance. The results suggest a modest potential for performance enhancement, but the low certainty of evidence and wide prediction intervals necessitate caution in clinical recommendations.

How this fits prior evidence

This meta-analysis addresses a gap in performance-specific data for athletes. While prior coverage included sodium bicarbonate for albumin in chronic kidney disease patients, this study focuses on acute ingestion for athletic performance. It confirms that sodium bicarbonate can influence physiological markers like blood lactate and pH, though the evidence for these specific markers is of very low certainty.

If you are a team sport athlete, you know that every small advantage counts when pushing through high intensity exercise. Some athletes use sodium bicarbonate, a common compound, to help manage the physical strain of intense bursts of movement. New data suggests that taking this substance shortly before exercise can lead to a small improvement in performance for these types of activities.

Researchers looked at data from 241 athletes to see how sodium bicarbonate affected their bodies and their performance. The study found that while it did provide a small boost in high intensity exercise, the results were not consistent across all areas. For example, it did not show clear effects on repeated sprints, mean power, or work capacity.

While the evidence is still limited, the data did show that sodium bicarbonate increased blood lactate, bicarbonate levels, and pH levels after exercise. Because the evidence is not yet strong, the best way to use it depends on your specific sport and how your body handles it. Talk to a coach or a medical professional to see if it fits your specific training goals.

What this means for you:
Sodium bicarbonate may provide a small performance boost for team sports, but results vary by individual.

Common questions

Does sodium bicarbonate help with high intensity exercise?

The data shows that taking sodium bicarbonate shortly before exercise can lead to a small improvement in high intensity exercise performance. However, the certainty of this evidence is low, and the results are not consistent across all types of athletic performance.

How does sodium bicarbonate affect the body during exercise?

The study found that sodium bicarbonate increased blood lactate, bicarbonate levels, and pH levels after exercise. These changes occur when the body is under physical stress, but the evidence for these specific changes is currently considered very low.

Does it help with repeated sprints or power?

The study did not find clear effects for repeated sprint performance, mean power, intermittent endurance, or work capacity. Because results vary, the benefit of sodium bicarbonate depends on the specific task and how an individual athlete responds.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
Sodium bicarbonate (NaHCO3) ingestion can induce extracellular alkalosis, but its effects on high-intensity intermittent exercise (HIIE) performance in team sports remain unclear. This study evaluated the effects of acute or short-term NaHCO3 ingestion on HIIE performance and physiological responses in team-sport athletes. This systematic review followed the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) 2020 statement. Six databases were searched from inception for randomized controlled trials, with the final search conducted on July 26, 2026. HIIE performance outcomes were synthesized using a covariance-adjusted three-level random-effects meta-analysis, whereas blood lactate, bicarbonate (), and pH were analyzed separately using two-level random-effects models. Subgroup, meta-regression, and sensitivity analyses were conducted. Risk of bias was assessed using the Cochrane Risk of Bias 2 (RoB 2) tool, and certainty of evidence was evaluated using the Grading of Recommendations Assessment, Development and Evaluation (GRADE) approach. Twenty studies involving 241 athletes contributed 53 performance effect sizes. NaHCO3 ingestion had a small beneficial effect on HIIE performance (Hedges' g = 0.23, 95% CI: 0.07 to 0.39, P = 0.008; 95% PI: −0.22 to 0.68; I2 = 37.36%). No clear effects were identified for repeated-sprint performance, mean power, intermittent endurance, or work capacity, and neither subgroup analyses nor meta-regression identified significant moderating effects of sex, dose, ingestion frequency, formulation, exercise phase, or rest/work ratio. NaHCO3 ingestion increased post-exercise blood lactate (MD = 1.73 mmol/L, 95% CI: 0.97 to 2.49), (MD = 2.73 mmol/L, 95% CI: 2.16 to 3.30), and pH (MD = 0.050, 95% CI: 0.025 to 0.075). The performance findings remained stable across alternative correlation assumptions, one-primary-outcome-per-study analyses, and leave-one-study-out analyses. Certainty of evidence was low for HIIE performance and and very low for blood lactate and pH. Acute or short-term NaHCO3 ingestion may provide a small average improvement in HIIE performance and increase post-exercise blood lactate, , and pH. However, the prediction interval crossed zero, and no consistent moderators were identified. Its practical use should therefore be individualized according to the exercise task, performance response, and gastrointestinal tolerance. https://www.crd.york.ac.uk/PROSPERO/view/CRD420261424869, identifier: CRD420261424869.
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