Gobbi Marco, Funicello Marcella, Gerstbrein Klaus, Holy Marion, Moya Pablo R, Sotomayor Ramón, Forray María Inés, Gysling Katia, Paluzzi Silvio, Bonanno Giambattista, Reyes-Parada Miguel, Sitte Harald H, Mennini Tiziana
Istituto di Ricerche Farmacologiche "Mario Negri", Italy.
J Neurochem. 2008 Jun;105(5):1770-80. doi: 10.1111/j.1471-4159.2008.05272.x. Epub 2008 Feb 4.
We studied two non-neurotoxic amphetamine derivatives (methyl-thioamphetamine, MTA and N,N-dimethylMTA, DMMTA) interacting with serotonin (5-HT) transporters (SERTs) with affinities comparable to that of p-Cl-amphetamine (pCA). The rank order for their maximal effects in inducing both [(3)H]5-HT release from rat brain synaptosomes or hSERT-expressing HEK-293 cells, and currents in hSERT-expressing oocytes, was pCA >> MTA > or = DMMTA. A correlation between drug-induced release and currents is also strengthened by the similar bell shape of the dose-response curves. Release experiments indicated that MTA and DMMTA are SERT substrates although MTA is taken up by HEK-293 cells with a V(max) 40% lower than pCA. The weak effects of MTA and DMMTA in vitro might therefore be due to their properties as 'partial substrates' on the mechanisms, other than translocation, responsible for currents and/or release. After either local or systemic in vivo administration, MTA and DMMTA release 5-HT in a manner comparable to pCA. These findings confirm that the neurotoxic properties of some amphetamine derivatives are independent of their 5-HT-releasing activity in vivo. It is worth noting that only those amphetamine derivatives with high efficiency in inducing 5-HT release and currents in vitro have neurotoxic properties.
我们研究了两种非神经毒性的苯丙胺衍生物(甲硫基苯丙胺,MTA和N,N - 二甲基MTA,DMMTA),它们与5-羟色胺(5-HT)转运体(SERTs)相互作用,其亲和力与对氯苯丙胺(pCA)相当。在诱导大鼠脑突触体或表达hSERT的HEK - 293细胞释放[³H]5-HT以及在表达hSERT的卵母细胞中诱导电流方面,它们最大效应的排序为pCA >> MTA ≥ DMMTA。药物诱导的释放与电流之间的相关性也因剂量反应曲线相似的钟形而得到加强。释放实验表明,MTA和DMMTA是SERT的底物,尽管MTA被HEK - 293细胞摄取的V(max)比pCA低40%。因此,MTA和DMMTA在体外的微弱效应可能是由于它们作为“部分底物”在除转运外负责电流和/或释放的机制中的特性。在局部或全身体内给药后,MTA和DMMTA以与pCA相当的方式释放5-HT。这些发现证实了某些苯丙胺衍生物的神经毒性特性与其体内5-HT释放活性无关。值得注意的是,只有那些在体外诱导5-HT释放和电流效率高的苯丙胺衍生物才具有神经毒性特性。