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电刺激对含儿茶酚胺的结节神经细胞荧光强度的影响。

Effect of electrical stimulation on the fluorescence intensity of catecholamine-containing tuberal nerve cells.

作者信息

Lichtensteiger W

出版信息

J Physiol. 1971 Oct;218(1):63-84. doi: 10.1113/jphysiol.1971.sp009604.

Abstract
  1. By means of a microfluorimetric technique, the intensity of the catecholamine fluorescence was measured in nerve cells of the arcuate and periventricular hypothalamic nuclei of ovariectomized rats pre-treated with oestrogen and progesterone. In such animals the fluorescence intensity is in the range of the lowest intensities that were observed during the oestrous cycle.2. Unilateral intermittent electrical stimulation of the arcuate nucleus or of the medial preoptic area induced an acute increase of the fluorescence intensity in the cell bodies of the tuberal catecholamine-containing nerve cell group. The change was already manifest 5 min after the onset of stimulation and within 10 min the mean fluorescence intensity reached levels that are among the highest so far observed in this cell group. Prolonged stimulation of the medial preoptic area led to a biphasic response, as shown by a decrease in intensity between 30 and 60 min of stimulation.3. The increase in fluorescence intensity caused by stimulation of the arcuate nucleus was completely prevented by pre-treatment with the tyrosine hydroxylase inhibitor alpha-methyl-tyrosine. Thus, the effect appears to be due to an enhancement of amine synthesis.4. The intensity values found after synthesis inhibition were used for a preliminary estimation of the catecholamine turnover time in the nerve cell bodies of the arcuate nucleus.5. In conclusion, electrical stimulation appears to induce a characteristic type of concentration change in the nerve cell body, at least under certain experimental conditions. It is compared with similar responses to physiological changes such as the reaction to acute cold exposure.
摘要
  1. 采用微量荧光测定技术,测量了经雌激素和孕酮预处理的去卵巢大鼠弓状核和室周下丘脑核神经细胞中儿茶酚胺荧光强度。在这类动物中,荧光强度处于发情周期中所观察到的最低强度范围内。

  2. 对弓状核或内侧视前区进行单侧间歇性电刺激,可使含结节部儿茶酚胺的神经细胞群胞体中的荧光强度急剧增加。刺激开始5分钟后这种变化就已明显,10分钟内平均荧光强度达到了该细胞群迄今所观察到的最高水平之一。如内侧视前区的长时间刺激导致双相反应,表现为刺激30至60分钟之间强度下降。

  3. 用酪氨酸羟化酶抑制剂α-甲基酪氨酸预处理可完全阻止弓状核刺激引起的荧光强度增加。因此,这种效应似乎是由于胺合成增强所致。

  4. 合成抑制后测得的强度值用于初步估计弓状核神经细胞体中儿茶酚胺的周转时间。

  5. 总之,至少在某些实验条件下,电刺激似乎能诱导神经细胞体中一种特征性的浓度变化。将其与对诸如急性冷暴露反应等生理变化的类似反应进行了比较。

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