Sirinathsinghji D J, Heavens R P, Sikdar S K
Department of Neuroendocrinology, AFRC Institute of Animal Physiology and Genetics Research, Babraham, Cambridge, U.K.
Brain Res. 1988 Jan 12;438(1-2):399-403. doi: 10.1016/0006-8993(88)91372-8.
We used the push-pull perfusion technique to study the in vivo changes in dopamine (DA) levels in the rat striatum in response to treatments which could affect DA re-uptake into the nigrostriatal DA terminals. Benztropine (10(-6) M), a potent DA uptake inhibitor induced a 1.7-fold increase in DA levels in the perfusates compared to basal levels. Perfusion with a Na+-free medium in which Na+ was replaced with either Tris-Cl or choline-Cl in equimolar proportions induced respectively 6.5- and 8.5-fold increases in DA levels in the perfusates. Perfusion of media containing NaCl:Tris-Cl (50:50) or NaCl:choline-Cl (50:50) did not significantly alter the levels of DA in the perfusates. Ouabain (10(-6) M) did not significantly alter DA levels but at a concentration of 10(-4) M, there was a 5.3-fold increase in DA levels in the perfusates compared to basal levels. These results thus demonstrate that the raised DA levels in the extracellular space in response to benztropine is due to the action of the drug in blocking the uptake of DA. The dependence of the uptake mechanism on the presence of Na+ in the external medium and hence on metabolic energy (Na pump) is clearly demonstrated. However, the massive elevation of DA levels under these conditions cannot be due solely to an inhibition of DA uptake but to the carrier-mediated DA exit from cytoplasmic stores resulting from a running down of the ionic gradient.
我们采用推挽灌注技术,研究大鼠纹状体中多巴胺(DA)水平在体内的变化,这些变化是对可能影响DA重新摄取到黑质纹状体DA终末的处理的反应。苯海索(10⁻⁶ M),一种有效的DA摄取抑制剂,与基础水平相比,使灌注液中DA水平升高了1.7倍。用无钠培养基灌注,其中Na⁺分别被等摩尔比例的Tris-Cl或胆碱-Cl替代,使灌注液中DA水平分别升高了6.5倍和8.5倍。灌注含有NaCl:Tris-Cl(50:50)或NaCl:胆碱-Cl(50:50)的培养基,并未显著改变灌注液中DA的水平。哇巴因(10⁻⁶ M)并未显著改变DA水平,但在浓度为10⁻⁴ M时,与基础水平相比,灌注液中DA水平升高了5.3倍。因此,这些结果表明,苯海索引起的细胞外空间DA水平升高是由于该药物阻断DA摄取的作用。摄取机制对外部介质中Na⁺的存在以及因此对代谢能量(Na泵)的依赖性得到了明确证明。然而,在这些条件下DA水平的大量升高不能仅仅归因于DA摄取的抑制,而是由于离子梯度降低导致载体介导的DA从细胞质储存中流出。