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Sodium Bicarbonate Supplementation Enhances Repeated High‐Intensity Interval Training Performance and Time Above 90% of V˙O2max in Well‐Trained Cyclists

Joshua Frederik Feuerbacher, Marius Bjerkeset, Knut Sindre Mølmen, Moritz Schumann, Bent Ronny Rønnestad · European Journal of Sport Science · 2026

This study examined how sodium bicarbonate supplementation affected well-trained cyclists during high-intensity interval training and sprint efforts. The researchers found that cyclists who took sodium bicarbonate produced more power output during both high-intensity intervals and repeated sprints, and spent more time working at very high oxygen uptake levels, compared to placebo.
Takeaway: Consider sodium bicarbonate supplementation before high-intensity interval workouts or sprint sessions if you're a competitive cyclist seeking to boost power output.
Abstract (source)

ABSTRACT This study investigated the effects of sodium bicarbonate (SB) supplementation on physiological responses and performance during submaximal exercise, high‐intensity interval training (HIT) and repeated Wingate sprints in well‐trained cyclists. Twenty‐four participants (♂ = 15, maximal oxygen uptake [max] = 72 ± 5 mL·min −1 kg −1 ; ♀ = 9, max = 57 ± 6 mL·min −1 kg −1 ) performed one screening and familiarisation session and two experimental sessions in a randomised, double‐blind and crossover

Design: . Participants ingested SB (∼0.26 g·kg −1 ) or an appearance‐matched placebo (PLA) 2 hours before the experimental session. Each session consisted of a step‐test protocol followed by five 5 min HIT bouts (3 × 40 s maximal efforts with 60 s recovery at power output (PO) equal to 3 mmol·L −1 [blood lactate]) and four 30 sec Wingate sprints. Cycling economy and fractional utilisation of max were evaluated during a submaximal step test. During HIT bouts, PO was significantly higher in SB (2.0 ± 5.4%, mean difference (MD): 8.1 ± 22.1 W, p = 0.045, = 0.171), accompanied by increased oxygen uptake (MD: 60.1 ± 124.7 mL·min −1 , p = 0.006, = 0.281) and greater time spent above 90% max (MD: 23.7 ± 52.6 s, p = 0.012, = 0.246). In the Wingate sprints, cyclists demonstrated significantly greater PO following SB ingestion (2.0 ± 4.7%, MD: 11.6 ± 26.8 W, p = 0.002, = 0.342). This was accompanied by higher blood levels of bicarbonate, pH and lactate ( p < 0.001, = 0.557; p < 0.001, = 0.548; p < 0.001, = 0.558, respectively). Cycling economy and fractional utilisation of max were unaffected by SB supplementation ( p = 0.977 and p = 0.818). SB supplementation increased PO and time above 90% max during HIT and PO during repeated Wingate sprints. Whether this translates into superior long‐term adaptations, such as enhanced max and sprint performance, remains to be investigated.

Randomized controlled trialOpen accessEndurance & CardiovascularSports Nutrition & Supplements
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