Jordan Philpott, Mark Kern, Shirin Hooshmand, Imogene Carson, Vernon Rayo, Elise North, Lauren Okamoto, Timothy O'Neil, Mee Young Hong, Changqi Liu, Gillian Dreczkowski, Nidia Rodriguez-Sanchez, Oliver C Witard, Stuart D Galloway
Journal: European journal of sport science 2023;23(12):2400-2410
PMID: 37596062
Athletes and exercisers routinely embark on high intensity and rigorous training routines to maximise their physiological potential. Exercise-induced muscle damage (EIMD) is common in athletes, leading to muscle soreness and impaired function. This study aimed to investigate the impact of pistachio nut consumption on muscle soreness and function following EIMD in recreational team-sport athletes. This study was a randomised, cross-over design study that enrolled eighteen male team-sport players. Participants performed a 40-minute downhill treadmill run after consuming either a control (water), a standard dose of pistachios (42.5 g/day), or a higher dose of pistachios (85 g/day) for two weeks. Results showed that high-dose pistachio consumption significantly reduced muscle soreness in the non-dominant quadriceps compared to the control group. However, no significant differences were observed in muscle function (isokinetic torque and vertical jump) or in blood markers of muscle damage and inflammation (creatine kinase, C-reactive protein, myoglobin, superoxide dismutase) across the different trials. Authors concluded that high dose pistachio consumption may alleviate soreness, particularly in muscles that are damaged more. However, further work is warranted to explore whether continued ingestion of pistachios beyond the initial 72 h post-damage period could promote exercise recovery in exercisers of all ages.
We aimed to investigate the impact of pistachio nut consumption on muscle soreness and function following exercise-induced muscle damage. Using a randomised cross-over design, male team-sport players ( = 18) performed a 40-minute downhill treadmill run to induce muscle damage, which was conducted after 2-wks of consuming either control (CON, water), a standard dose of daily pistachios (STD, 42.5 g/d) or a higher dose of daily pistachios (HIGH, 85 g/d). Lower limb muscle soreness (visual analogue scale), muscle function (maximal voluntary isokinetic torque and vertical jump), and blood markers of muscle damage/inflammation (creatine kinase, C-reactive protein, myoglobin, superoxide dismutase) were measured pre (baseline) and post (24, 48, and 72 h) exercise. No trial order effects were observed for any outcome measurement across trials. Mean quadriceps soreness (non-dominant leg) during exercise recovery was reduced ( < 0.05) in HIGH . CON (mean difference (95%CI): 13(1-25) mm). Change in soreness in the dominant quadriceps was not different between HIGH vs. CON ( = 0.06; mean difference (95%CI): 13(-1 to 26 mm)). No main effects of time or trial were observed for mean soreness of hamstrings, or on isokinetic torque of knee extensors or knee flexors, during recovery. Serum creatine kinase concentration peaked at 24 h post-damage (mean(SEM): 763(158)µg/L) from baseline (300(87)µg/L), but had returned to baseline by 72 h post (398(80)µg/L) exercise in all trials, with no trial or trial × time interaction evident. These data suggest that high dose pistachio nut ingestion may provide some alleviation of muscle soreness, but no effect on muscle function, following modest muscle damage.
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