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Effects of Royal Jelly Administration on Endurance Training-Induced Mitochondrial Adaptations in Skeletal Muscle. | LitMetric

AI Article Synopsis

  • The study examined how royal jelly (RJ) affects endurance training and mitochondrial adaptations in the skeletal muscles of ICR mice.
  • Mice were divided into two groups, one receiving RJ and the other distilled water, and both were subjected to a specific endurance training program.
  • While endurance training boosted mitochondrial enzyme activities in the control group, RJ treatment enhanced these activities in the soleus muscle, suggesting that RJ may help improve mitochondrial adaptations during endurance training by activating certain signaling proteins.

Article Abstract

We investigated the effect of royal jelly (RJ), a natural secretion from worker bees, on the endurance training-induced mitochondrial adaptations in skeletal muscles of ICR mice. Mice received either RJ (1.0 mg/g body weight) or distilled water for three weeks. The mice in the training group were subjected to endurance training (20 m/min; 60 min; 5 times/week). There was a main effect of endurance training on the maximal activities of the mitochondrial enzymes, citrate synthase (CS), and β-hydroxyacyl coenzyme Adehydrogenase (β-HAD), in the and () muscles, while no effect of RJ treatment was observed. In the muscle, CS and β-HAD maximal activities were significantly increased by endurance training in the RJ-treated group, while there was no effect of training in the control group. Furthermore, we investigated the effects of acute RJ treatment on the signaling cascade involved in mitochondrial biogenesis. In the , phosphorylation of 5'-AMP-activated protein kinase (AMPK) and acetyl-CoA carboxylase (ACC) were additively increased by a single RJ treatment and endurance exercise, while only an exercise effect was found in the and muscles. These results indicate that the RJ treatment induced mitochondrial adaptation with endurance training by AMPK activation in the soleus muscles of ICR mice.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6266893PMC
http://dx.doi.org/10.3390/nu10111735DOI Listing

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