Key result
Dietary tryptophan fails to alter heart rate in sled dogs, while exercise cuts resting HR ~21%.
Why the study?
To investigate the effects of a 12-week incremental exercise regimen and supplemental dietary tryptophan on heart rate and respiratory rate in sled dogs.
Does dietary tryptophan supplementation improve heart rate and respiratory rate in exercising sled dogs?
Does dietary tryptophan supplementation improve heart rate and respiratory rate in exercising sled dogs?
p-value: p=>0.10
In sled dogs, a 12-week exercise regimen improved cardiorespiratory parameters, whereas dietary tryptophan supplementation had no effect.
Exercise conditioning may improve resting HR in sled dogs; hypothesis-generating for tryptophan and cardiorespiratory endpoints in other athletic animals.
Tryptophan (Trp), an indispensable amino acid for dogs, is the precursor of serotonin, a neurotransmitter with a variety of effects throughout the body, including the ability to modulate cardiac and pulmonary activity. This study aimed to investigate the effects of a 12-week incremental exercise regimen and supplemental dietary Trp on heart rate (HR) and respiratory rate (RR) in client-owned sled dogs. Sixteen Siberian huskies were randomly allocated to either treatment or control diet groups. Both groups were fed a control diet (Trp to large neutral amino acid ratio of 0.047:1); however, treatment dogs received a Trp supplement to achieve a Trp to large neutral amino acid ratio of 0.075:1. Every three weeks, external telemetry equipment was used to non-invasively measure and record HR and RR at a resting, working, and post-exercise state in a controlled exercise challenge. A mixed model was used to test differences between diet, activity parameter, and week. Dietary Trp supplementation had no effect on HR or RR. Independent of diet, resting, working, post-exercise HR, and time to recover post-exercise HR decreased from week −1 to week 11 (p < 0.05). Resting HR had the greatest reduction from week −1 to week 11 (21%, p < 0.05). Working RR did not change with exercise (p > 0.10), but rRR and postRR decreased from week −1 to week 11 (p < 0.05). These data suggest that the exercise regimen the dogs were subjected to may have positively impacted the dogs’ capacity to sustain aerobic exercise, whereas Trp supplementation had no effect on HR or RR.
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Thornton et al. (2020) studied Healthy sled dogs (n=16). Dietary Tryptophan supplementation vs. Control diet (Trp to large neutral amino acid ratio of 0.047:1) was evaluated on Heart rate and respiratory rate (p=>0.10). Dietary tryptophan supplementation had no effect on heart rate or respiratory rate in sled dogs, whereas a 12-week exercise regimen significantly reduced resting heart rate by 21%.
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