Forget Caroline, Stewart Jane, Trudeau Louis-Eric
Department of Pharmacology, Faculty of Medicine, Université de Montréal, C.P. 6128, Succursale Centre-Ville Montréal, Québec, Canada, H3C 3J7.
Eur J Neurosci. 2006 Feb;23(3):608-16. doi: 10.1111/j.1460-9568.2006.04570.x.
Behavioural sensitization to amphetamine (AMPH) requires action of the drug in the ventral midbrain where dopamine (DA) neurons are located. In vivo studies suggest that AMPH sensitization requires enhanced expression of basic fibroblast growth factor (bFGF) in the nucleus of midbrain astrocytes. One idea is that the AMPH-induced increase in bFGF expression in astrocytes leads to enhanced secretion of this peptide and to long-term plasticity in DA neurons. To study directly the effects of astrocytic expression of bFGF on DA neurons, we established a cell-culture model of mesencephalic astrocytes and DA neurons. Immunolabelling showed that even in the absence of a pharmacological stimulus, the majority of mesencephalic astrocytes in culture express bFGF at a nuclear level. Arguing against the idea that bFGF was secreted, bFGF was undetectable in the extracellular medium (below 10 pg/mL). However, supplementing culture medium with exogenous bFGF at standard concentrations (20 ng/mL) led to a dramatic change in the morphology of astrocytes, increased spontaneous DA release, and inhibited synapse formation by individual DA neurons. RNA interference (siRNA) against bFGF mRNA, caused a reduction in DA release but produced no change in synaptic development. Together these data demonstrate that under basal conditions (in the absence of a pharmacological stimulus such as amphetamine) bFGF is not secreted even though there is abundant nuclear expression in astrocytes. The effects of bFGF seen here on DA neurons are thus likely to be mediated through more indirect glial-neuronal interactions, leading to enhanced DA release without a necessary change in synapse number.
对苯丙胺(AMPH)的行为敏化需要该药物作用于多巴胺(DA)神经元所在的腹侧中脑。体内研究表明,AMPH敏化需要中脑星形胶质细胞核中碱性成纤维细胞生长因子(bFGF)的表达增强。一种观点认为,AMPH诱导的星形胶质细胞中bFGF表达增加会导致该肽的分泌增强,并导致DA神经元的长期可塑性。为了直接研究星形胶质细胞表达bFGF对DA神经元的影响,我们建立了中脑星形胶质细胞和DA神经元的细胞培养模型。免疫标记显示,即使在没有药理刺激的情况下,培养的大多数中脑星形胶质细胞在细胞核水平表达bFGF。与bFGF被分泌的观点相反,在细胞外培养基中未检测到bFGF(低于10 pg/mL)。然而,用标准浓度(20 ng/mL)的外源性bFGF补充培养基会导致星形胶质细胞形态发生显著变化,增加DA的自发释放,并抑制单个DA神经元的突触形成。针对bFGF mRNA的RNA干扰(siRNA)导致DA释放减少,但对突触发育没有影响。这些数据共同表明,在基础条件下(在没有诸如苯丙胺等药理刺激的情况下),即使星形胶质细胞中有丰富的细胞核表达,bFGF也不会被分泌。因此,这里观察到的bFGF对DA神经元的影响可能是通过更间接的胶质-神经元相互作用介导的,导致DA释放增强,而突触数量没有必要的变化。