Wesemann W, Dette-Wildenhahn G, Fellehner H
J Neural Transm. 1979;44(4):263-85. doi: 10.1007/BF01250322.
Synaptosomes, synaptic vesicles, and membranes were isolated from rat brain homogenates by differential and density gradient centrifugation in sucrose. Synaptosomes incorporated serotonin (5-HT) with two different uptake mechanisms, high affinity: Kt1 = 47 nM and low affinity: Kt2 = 660 nM. Both uptake mechanisms are non-competitively inhibited by the potential antiparkinson drugs 1-aminoadamantane (amantadine, D 1: Ki1 = 57 microM, Ki2 = 96 microM) and 1-amino-3,5-dimethyladamantane (memantine, D 145: Ki1 = 97 microM, Ki2 = 150 microM). The incorporated 5-HT is released from synaptosomes on incubation with high concentrations (0.5--5 mM) of the drugs or on electrical stimulation with rectangular pulses of alternating polarity. Subthreshold concentrations of these drugs (5--50 microM) which are too low to liberate 5-HT increase the electrically stimulated release of 5-HT.--The effect of D 1, D 145, and electrical stimulation on DA release parallels the results observed with 5-HT. The uptake of 5-HT into isolated synaptic vesicles and the binding to isolated nerve ending membranes is non-competitively inhibited by 1-aminoadamantanes. D 145 inhibits the binding of 5-HT to membranes more effectively (Ki = 0.95 mM) than its uptake into vesicles (Ki = 1.2 mM) contrasting with D 1 which is a weaker inhibitor affecting vesicular uptake (Ki = 2.5 mM) slightly more than membrane binding (Ki = 3.1 mM). The results obtained suggest that, in addition to other mechanisms like receptor stimulation, 1-aminoadamantanes may act in parkinsonian patients by enriching the transmitter content in the synaptic cleft.
通过在蔗糖中进行差速离心和密度梯度离心,从大鼠脑匀浆中分离出突触体、突触小泡和膜。突触体通过两种不同的摄取机制摄取5-羟色胺(5-HT),即高亲和力:Kt1 = 47 nM和低亲和力:Kt2 = 660 nM。两种摄取机制均受到潜在抗帕金森病药物1-氨基金刚烷(金刚烷胺,D 1:Ki1 = 57 microM,Ki2 = 96 microM)和1-氨基-3,5-二甲基金刚烷(美金刚,D 145:Ki1 = 97 microM,Ki2 = 150 microM)的非竞争性抑制。掺入的5-HT在与高浓度(0.5 - 5 mM)的药物孵育或用交替极性的矩形脉冲进行电刺激时从突触体中释放出来。这些药物的阈下浓度(5 - 50 microM)过低而无法释放5-HT,但会增加电刺激引起的5-HT释放。——D 1、D 145和电刺激对多巴胺释放的影响与5-HT的观察结果相似。1-氨基金刚烷非竞争性抑制5-HT摄取到分离的突触小泡中以及与分离的神经末梢膜的结合。与D 1相比,D 145更有效地抑制5-HT与膜的结合(Ki = 0.95 mM),而对其摄取到小泡中的抑制作用(Ki = 1.2 mM)较弱,D 1是较弱的抑制剂,但对小泡摄取的影响(Ki = 2.5 mM)略大于对膜结合的影响(Ki = 3.1 mM)。所得结果表明,除了受体刺激等其他机制外,1-氨基金刚烷可能通过增加突触间隙中的递质含量而对帕金森病患者起作用。