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心肌的机械化学。V. 甲状腺状态对能量利用的影响。

Mechanochemistry of cardiac muscle. V. Influence of thyroid state on energy utilization.

作者信息

Skelton C L, Pool P E, Seagren S C, Braunwald E

出版信息

J Clin Invest. 1971 Mar;50(3):463-73. doi: 10.1172/JCI106514.

Abstract

The possibility that alterations in the rate or efficiency of energy utilization could be involved in the control of cellular oxygen consumption by thyroid hormone was examined in right ventricular papillary muscles isolated from normal euthyroid cats and cats with experimentally induced hyperthyroidism and hypothyroidism. Energy production in the muscles was inhibited and isolated from the process of energy utilization by exposure to iodoacetic acid and nitrogen. After resting or performing variable amounts of contractile element work under isometric conditions, muscles were frozen, and the total amount of chemical energy ( approximately P = creatine phosphate + ATP) used was determined. The resting rate of energy utilization in muscles from euthyroid animals was 0.78+/-0.07 mumoles/g per min of approximately P. This rate was elevated in muscles from hyperthyroid cats to 1.00+/-0.09 mumoles/g per min and decreased in muscles from hypothyroid cats to 0.23+/-0.14 mumoles/g per min. Isometrically contracting muscles from cats with hypothyroidism utilized only 64% as much energy as muscles from euthyroid cats while performing 81% as much contractile element work at a moderately decreased level of contractile state. Muscles from hyperthyroid cats utilized an average of 41% more energy than did muscles from euthyroid cats while contracting an identical number of times and performing an equal amount of contractile element work at a slightly increased level of contractile state. These results suggest that thyroid hormone directly influences the rate of cellular energy utilization. Furthermore, the increase in energy utilization in muscles from hyperthyroid cats could not be attributed entirely to observed alterations in contractile behavior, which indicates that excess thyroid hormone may decrease the efficiency of the conversion of cellular energy to work. However, the opposite effect, an increased efficiency of energy utilization, was not observed in muscles from hypothyroid cats. Thus, it is concluded that the calorigenic effects of thyroid hormone may be explained, at least in part, by alterations in the process of energy utilization.

摘要

通过对从正常甲状腺功能正常的猫以及实验性诱导的甲状腺功能亢进和甲状腺功能减退的猫分离出的右心室乳头肌进行研究,探讨了能量利用速率或效率的改变是否参与甲状腺激素对细胞氧消耗的控制。通过暴露于碘乙酸和氮气,肌肉中的能量产生受到抑制,并与能量利用过程分离。在等长条件下休息或进行不同量的收缩元件工作后,将肌肉冷冻,并测定所使用的化学能总量(约P =磷酸肌酸+ ATP)。甲状腺功能正常的动物肌肉的静息能量利用速率为0.78±0.07微摩尔/克每分钟的约P。该速率在甲状腺功能亢进的猫的肌肉中升高至1.00±0.09微摩尔/克每分钟,而在甲状腺功能减退的猫的肌肉中降低至0.23±0.14微摩尔/克每分钟。甲状腺功能减退的猫的等长收缩肌肉在收缩状态适度降低的情况下,所利用的能量仅为甲状腺功能正常的猫的肌肉的64%,而收缩元件工作的量为81%。甲状腺功能亢进的猫的肌肉在收缩次数相同且收缩元件工作量相等且收缩状态略有增加的情况下,平均比甲状腺功能正常的猫的肌肉多利用41%的能量。这些结果表明甲状腺激素直接影响细胞能量利用速率。此外,甲状腺功能亢进的猫的肌肉中能量利用的增加不能完全归因于观察到的收缩行为的改变,这表明过量的甲状腺激素可能会降低细胞能量转化为功的效率。然而,在甲状腺功能减退的猫的肌肉中未观察到相反的效果,即能量利用效率的提高。因此,可以得出结论,甲状腺激素的产热作用至少部分可以通过能量利用过程的改变来解释。

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本文引用的文献

3
EFFECT OF THYROXINE AND THIOURACIL ON THE MG++-ACTIVATED ATPASE ON THE RAT MYOCARDIUM.
Life Sci (1962). 1964 May;3:431-40. doi: 10.1016/0024-3205(64)90203-6.
6
Biochemical actions of thyroid hormones.甲状腺激素的生化作用。
Physiol Rev. 1962 Oct;42:605-73. doi: 10.1152/physrev.1962.42.4.605.
7
Thyrotoxicosis as a disease of mitochondria.
N Engl J Med. 1962 Mar 1;266:446-54 contd. doi: 10.1056/NEJM196203012660907.
10
The effect of experimental hypothyroidism on coronary blood flow and hemodynamic factors.
Am J Cardiol. 1961 May;7:690-3. doi: 10.1016/0002-9149(61)90454-4.

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