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A Mango Leaf Extract (Zynamite®) Combined with Quercetin Has Exercise-Mimetic Properties in Human Skeletal Muscle

Authors :
Calbet, Miriam Martinez-Canton
Victor Galvan-Alvarez
Eduardo Garcia-Gonzalez
Angel Gallego-Selles
Miriam Gelabert-Rebato
Giovanni Garcia-Perez
Alfredo Santana
Laura Lopez-Rios
Tanausu Vega-Morales
Marcos Martin-Rincon
Jose A. L.
Source :
Nutrients; Volume 15; Issue 13; Pages: 2848
Publication Year :
2023
Publisher :
Multidisciplinary Digital Publishing Institute, 2023.

Abstract

Zynamite PX®, a mango leaf extract combined with quercetin, enhances exercise performance by unknown molecular mechanisms. Twenty-five volunteers were assigned to a control (17 males) or supplementation group (8 males, receiving 140 mg of Zynamite® + 140 mg quercetin/8 h for 2 days). Then, they performed incremental exercise to exhaustion (IE) followed by occlusion of the circulation in one leg for 60 s. Afterwards, the cuff was released, and a 30 s sprint was performed, followed by 90 s circulatory occlusion (same leg). Vastus lateralis muscle biopsies were obtained at baseline, 20 s after IE (occluded leg) and 10 s after Wingate (occluded leg), and bilaterally at 90 s and 30 min post exercise. Compared to the controls, the Zynamite PX® group showed increased basal protein expression of Thr287-CaMKIIδD (2-fold, p = 0.007) and Ser9-GSK3β (1.3-fold, p = 0.005) and a non-significant increase of total NRF2 (1.7-fold, p = 0.099) and Ser40-NRF2 (1.2-fold, p = 0.061). In the controls, there was upregulation with exercise and recovery of total NRF2, catalase, glutathione reductase, and Thr287-CaMKIIδD (1.2–2.9-fold, all p < 0.05), which was not observed in the Zynamite PX® group. In conclusion, Zynamite PX® elicits muscle signaling changes in resting skeletal muscle resembling those described for exercise training and partly abrogates the stress kinases responses to exercise as observed in trained muscles.

Details

Language :
English
ISSN :
20726643
Database :
OpenAIRE
Journal :
Nutrients; Volume 15; Issue 13; Pages: 2848
Accession number :
edsair.multidiscipl..da8efe19486e8fc1afe85b738815490f
Full Text :
https://doi.org/10.3390/nu15132848