Background: Physical inactivity induces insulin resistance (IR) and metabolic imbalances before any significant changes in adiposity. Recent studies suggest that the beneficial effects of exercise can be potentiated if performed while fasting. This work aimed to compare the subacute effects of fed- and fasted-state single-bout exercise on biochemical parameters and cellular signaling in the metabolism. Methods: The animals were allocated into fed rest (FER), fasting rest (FAR), fed exercise (FEE), and fasting exercise (FAE) groups. The exercise protocol was a 30 min treadmill session at 60% of VËO(2max). The fasting groups fasted for 8 h before exercise and were killed after 12 h post-exercise. Results: Soleus glycogen concentration increased only in the fasting groups, whereas the triglyceride (TGL) content increased in brown adipose tissue (BAT) and liver in the FAE. The FAE showed decreased plasma total cholesterol concentration compared withthe FAR group. Immunocontent of HSP70, SIRT1, UCP-1, and PGC1-α did not change in any tissue investigated. Conclusions: Our results indicate that physical exercise while fasting can have beneficial metabolic effects on sedentary animals. Remarkably, in the FAE group, there was a reduction in total plasma cholesterol and an increase in the capacity of BAT to metabolize and store nutrients in the form of TGLs.
Subacute Effects of Moderate-Intensity Aerobic Exercise in the Fasted State on Cell Metabolism and Signaling in Sedentary Rats.
空腹状态下中等强度有氧运动对久坐大鼠细胞代谢和信号传导的亚急性影响
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作者:Ayres Layane Ramos, Vogt Ãverton Lopes, Schroeder Helena Trevisan, Russo Mariana Kras Borges, Von Dentz Maiza Cristina, Rocha Débora Santos, Model Jorge Felipe Argenta, Kowalewski Lucas Stahlhöfer, de Souza Samir Khal, de Oliveira Girelli Vitória, da Rosa Coelho Jerônimo, de Souza Vargas Nathalia, Reischak-Oliveira Alvaro, de Bittencourt Paulo Ivo Homem Jr, Wilhelm Eurico Nestor, Vinagre Anapaula Sommer, Krause Mauricio
| 期刊: | Nutrients | 影响因子: | 5.000 |
| 时间: | 2024 | 起止号: | 2024 Oct 18; 16(20):3529 |
| doi: | 10.3390/nu16203529 | 种属: | Rat |
| 研究方向: | 代谢、信号转导、细胞生物学 | ||
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