Eisenhofer G, Ropchak T G, Kopin I J, Goldstein D S
Clinical Neuroscience Branch, National Institute of Neurological and Communicative Disorders and Stroke, Bethesda, Maryland.
J Pharmacol Exp Ther. 1988 Apr;245(1):81-8.
In the isolated rat vas deferens the release and intraneuronal disposition of endogenous norepinephrine (NE) were compared with those of newly synthesized or exogenous radioactive NE by preloading tissues with trace amounts of tritiated dopamine ([3H]DA) or tritiated NE ([3H]NE) and measuring release of radioactive and endogenous NE and dihydroxyphenylglycol (DHPG). Tissues were examined before and during electrical simulation, exposure to tyramine or exposure to depolarizing concentrations of K+. In [3H]DA-preloaded tissues the [3H]DA was converted readily to [3H]NE. Newly synthesized radioactive NE formed from exogenous [3H]DA was distributed differently from endogenous NE within at least two intraneuronal pools. One pool contained a high concentration (high specific activity) of newly synthesized [3H]NE and less than 3% of the total NE content of the tissues, and it released NE more readily than the larger low specific activity pool which contained over 95% of the total tissue NE content. Exogenous [3H]NE in [3H]NE-preloaded vasa deferentia was distributed among at least three different tissue pools, one consisting of extraneuronally bound NE containing [3H]NE of high specific activity, and two intraneuronal pools containing [3H]NE of intermediate and low specific activity in which NE was released from the intermediate specific activity pool more readily than from the low specific activity pool.(ABSTRACT TRUNCATED AT 250 WORDS)
在离体大鼠输精管中,通过用微量氚标记的多巴胺([3H]DA)或氚标记的去甲肾上腺素([3H]NE)预加载组织,并测量放射性和内源性去甲肾上腺素(NE)及二羟苯乙二醇(DHPG)的释放,比较了内源性NE的释放和神经元内分布与新合成的或外源性放射性NE的释放和神经元内分布。在电刺激、暴露于酪胺或暴露于去极化浓度的钾离子之前和期间对组织进行检查。在[3H]DA预加载的组织中,[3H]DA很容易转化为[3H]NE。由外源性[3H]DA形成的新合成放射性NE在至少两个神经元内池中的分布与内源性NE不同。一个池含有高浓度(高比活性)的新合成[3H]NE,占组织总NE含量的不到3%,它比含有超过95%组织总NE含量的较大的低比活性池更容易释放NE。[3H]NE预加载的输精管中的外源性[3H]NE分布在至少三个不同的组织池中,一个由细胞外结合的NE组成,含有高比活性的[3H]NE,两个神经元内池含有中等和低比活性的[3H]NE,其中中等比活性池中的NE比低比活性池中的NE更容易释放。(摘要截于250字)