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猴子在运动、热应激和进食过程中钙离子的间脑流出。

Diencephalic efflux of calcium ions in the monkey during exercise, thermal stress and feeding.

作者信息

Gisolfi C V, Mora F, Myers R D

出版信息

J Physiol. 1977 Dec;273(3):617-30. doi: 10.1113/jphysiol.1977.sp012113.

Abstract
  1. The diencephalon of the unanaesthetized macaque monkey was radio-labelled with calcium by a microinjection of 6-8 muC (45)Ca(2+) into the third cerebral ventricle through a permanently implanted cannula. Successive 5 min push-pull perfusions of the mid-line hypothalamic region with an artificial C.S.F. were carried out at a rate of 28 mul./min every 20 min. A washout curve of declining (45)Ca(2+) radioactivity was thus generated.2. When the monkey exercised strenuously on a special ;rowing machine' to obtain highly palatable banana pellets, its body temperature rose sharply. As the monkey exercised, during a sequence of push-pull perfusions, the concurrent efflux of (45)Ca(2+) ions increased markedly in the corresponding samples of diencephalic perfusate. This enhanced activity of calcium ions continued throughout a 30 min work period and persisted as long as the monkey's temperature was elevated in the interval immediately following exercise.3. Exposure of the monkey's trunk, between neck and thigh to cold air of 5 degrees C likewise augmented the amount of (45)Ca(2+) ions in the diencephalic push-pull perfusates; however, a similar exposure to air warmed to 35 degrees C failed to alter the pattern of (45)Ca(2+) efflux from the animal's diencephalon. If a fasted monkey consumed only the banana pellets but was not exercised, the level of (45)Ca(2+) in the perfusate also increased transiently, just at the onset of feeding.4. We conclude that a local change in calcium transport, binding or other cellular activity of the cation within the diencephalon could play an important role in the central mechanism underlying the set-point rise in a primate's temperature which accompanies vigorous exercise. Further, the results support the idea that this cation functions in the diencephalic control of metabolic heat production as well as in the overall processes of energy metabolism, particularly in relation to feeding.
摘要
  1. 通过经永久植入的套管向第三脑室微量注射6 - 8微居里的(45)钙(2 +),对未麻醉的猕猴间脑进行钙放射性标记。每隔20分钟以28微升/分钟的速率,用人工脑脊液对下丘脑中线区域进行连续5分钟的推挽灌注。由此生成了(45)钙(2 +)放射性下降的洗脱曲线。

  2. 当猴子在特制的“划船机”上剧烈运动以获取美味的香蕉颗粒时,其体温急剧上升。在猴子运动期间,在一系列推挽灌注过程中,间脑灌注液相应样本中(45)钙(2 +)离子的同时流出量显著增加。这种钙离子活性的增强在30分钟的工作期间持续存在,并且只要猴子在运动后紧接着的时间段内体温升高就会持续。

  3. 将猴子颈部和大腿之间的躯干暴露于5摄氏度的冷空气中,同样会增加间脑推挽灌注液中(45)钙(2 +)离子的量;然而,将其暴露于加热至35摄氏度的空气中,未能改变动物间脑(45)钙(2 +)流出模式。如果一只禁食的猴子只吃香蕉颗粒但不运动,灌注液中(45)钙(2 +)的水平在进食开始时也会短暂升高。

  4. 我们得出结论,间脑内钙转运、结合或该阳离子其他细胞活性的局部变化,可能在灵长类动物剧烈运动时体温设定点升高的中枢机制中起重要作用。此外,结果支持这样一种观点,即这种阳离子在间脑对代谢产热的控制以及能量代谢的整体过程中起作用,特别是与进食有关。

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本文引用的文献

2
Spontaneous feeding in the satiated cat evoked by sodium or calcium ions perfused within the hypothalamus.
Physiol Behav. 1971 May;6(5):507-12. doi: 10.1016/0031-9384(71)90198-3.
3
Fever: reciprocal shift in brain sodium to calcium ratio as the set-point temperature rises.
Science. 1972 Nov 17;178(4062):765-7. doi: 10.1126/science.178.4062.765.
5
Uptake of calcium ions by synaptosomes from rat brain.大鼠脑突触体对钙离子的摄取。
Biochim Biophys Acta. 1974 Jul 31;356(2):174-83. doi: 10.1016/0005-2736(74)90281-8.
6
Effect of changes in plasma Na+ and Ca++ ion concentration on body temperature during exercise.
Acta Physiol Scand. 1974 May;91(1):123-9. doi: 10.1111/j.1748-1716.1974.tb05664.x.
7
Is fever in man reflected in changes in cerebrospinal fluid concentrations of sodium and calcium ions?
Scand J Clin Lab Invest. 1973 Dec;32(4):309-10. doi: 10.3109/00365517309084352.
10
Transport and metabolism of calcium ions in nerve.神经中钙离子的运输与代谢
Prog Biophys Mol Biol. 1972;24:177-223. doi: 10.1016/0079-6107(72)90007-7.

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