Falkenburger B H, Barstow K L, Mintz I M
Department of Pharmacology and Experimental Therapeutics, Boston University Medical Center, Boston, MA 02118, USA.
Science. 2001 Sep 28;293(5539):2465-70. doi: 10.1126/science.1060645.
Synapses in the central nervous system are usually defined by presynaptic exocytotic release sites and postsynaptic differentiations. We report here a demonstration of dendrodendritic inhibition that does not engage a conventional synapse. Using amperometric and patch-clamp recordings in rat brain slices of the substantia nigra, we found that blockade of the dopamine transporter abolished the dendritic release of dopamine and the resulting self-inhibition. These findings demonstrate that dendrodendritic autoinhibition entails the carrier-mediated release of dopamine rather than conventional exocytosis. This suggests that some widely used antidepressants that inhibit the dopamine transporter may benefit patients in the early stages of Parkinson's disease.
中枢神经系统中的突触通常由突触前胞吐释放位点和突触后分化来定义。我们在此报告一种不涉及传统突触的树突-树突抑制的证明。通过在大鼠黑质脑片中进行安培测量和膜片钳记录,我们发现多巴胺转运体的阻断消除了多巴胺的树突释放以及由此产生的自我抑制。这些发现表明,树突-树突自抑制需要载体介导的多巴胺释放而非传统的胞吐作用。这表明一些抑制多巴胺转运体的常用抗抑郁药可能对帕金森病早期患者有益。