Effect of triiodothyronine (T3) excess on fatty acid metabolism in the soleus muscle from endurance-trained rats.

M. Górecka, M. Synak, Z. Brzezińska, J. Dąbrowski, E. Żernicka
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引用次数: 3

Abstract

We studied whether short-term administration of triiodothyronine (T3) for the last 3 days of endurance training would influence the rate of uptake of palmitic acid (PA) as well as metabolism in rat soleus muscle, in vitro. Training per se did not affect the rate of PA uptake by the soleus; however, an excess of T3 increased the rate of this process at 1.5 mmol/L PA, as well as the rate that at which PA was incorporated into intramuscular triacylglycerols (TG). The rate of TG synthesis in trained euthyroid rats was reduced after exercise (1.5 mmol/L PA). The rate of PA oxidation in all of the trained rats immediately after exercise was enhanced by comparison with the sedentary values. Hyperthyroidism additionally increased the rate of this process at 1.5 mmol/L PA. After a recovery period, the rate of PA oxidation returned to the control values in both the euthyroid and the hyperthyroid groups. Examination of the high-energy phosphate levels indicated that elevated PA oxidation after exercise-training in euthyroid rats was associated with stable ATP levels and increased ADP and AMP levels, thus reducing energy cellular potential (ECP). In the hyperthyroid rats, levels of ADP and AMP were increased in the sedentary as well as the exercise-trained rats. ECP levels were high as a result of high levels of ATP and decreased levels of ADP and AMP in hyperthyroid rats after the recovery period. In conclusion, short-term hyperthyroidism accelerates PA utilization in well-trained soleus muscle.
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过量三碘甲状腺原氨酸对耐力训练大鼠比目鱼肌脂肪酸代谢的影响。
我们在体外研究了耐力训练最后3天短期服用三碘甲状腺原氨酸(T3)是否会影响大鼠比目鱼肌对棕榈酸(PA)的摄取率和代谢。训练本身并不影响比目鱼肌摄取PA的速率;然而,过量的T3增加了1.5 mmol/L PA时这一过程的速率,以及PA被肌内甘油三酯(TG)掺入的速率。运动后(1.5 mmol/L PA)正常甲状腺大鼠TG合成速率降低。所有训练后的大鼠在运动后立即的PA氧化率与久坐的值相比有所提高。甲状腺机能亢进在1.5 mmol/L PA时也增加了这一过程的速率。恢复期后,甲状腺功能正常组和甲状腺功能亢进组的PA氧化率均恢复到控制值。高能磷酸盐水平检测表明,甲状腺功能正常大鼠运动训练后PA氧化升高与ATP水平稳定、ADP和AMP水平升高相关,从而降低能量细胞电位(ECP)。在甲状腺功能亢进大鼠中,久坐大鼠和运动训练大鼠的ADP和AMP水平均升高。恢复期后甲亢大鼠ATP水平升高,ADP和AMP水平降低,导致ECP水平升高。总之,短期甲亢加速了训练良好的比目鱼肌对PA的利用。
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