Marcoli M, Maura G, Munari C, Ruelle A, Raiteri M
Dipartimento di Medicina Sperimentale, Sezione di Farmacologia e Tossicologia, Università di Genova, Italy.
Br J Pharmacol. 1999 Feb;126(3):607-12. doi: 10.1038/sj.bjp.0702336.
The releases of [3H]5-hydroxytryptamine ([3H]5-HT) and of endogenous glutamic acid and their modulation through presynaptic h5-HT1B autoreceptors and h5-HT1D heteroreceptors have been investigated in synaptosomal preparations from fresh neocortical samples obtained from patients undergoing neurosurgery. The inhibition by 5-HT of the K+ (15 mM)-evoked overflow of [3H]5-HT was antagonized by the 5-HT1B/5-HT1D receptor ligand GR 127935, which was ineffective on its own; this drug was previously found to behave as a full agonist at the h5-HT1D heteroreceptor regulating glutamate release. The recently proposed selective h5-HT1B receptor ligand SB-224289 also prevented the effect of 5-HT at the autoreceptor, being inactive on its own; in contrast, SB-224289, at 1 microM, was unable to interact with the h5-HT1D heteroreceptor. The inhibitory effect of 5-HT on the K+-evoked overflow of glutamate was antagonized by the h5-HT1D receptor ligand BRL-15572; added in the absence of 5-HT the compound was without effect. BRL-15572 (1 microM) was unable to modify the effect of 5-HT at the autoreceptor regulating [3H]5-HT release. The selective 5-HT1A receptor antagonist (+)-WAY 100135, previously found to be an agonist at the h5-HT1D heteroreceptor regulating glutamate release, could not interact with the h5-HT1B autoreceptor when added at 1 microM. It is concluded that native h5-HT1B and h5-HT1D receptors exhibit a hitherto unexpected pharmacological diversity.
在取自接受神经外科手术患者的新鲜新皮质样本的突触体制剂中,研究了[3H]5-羟色胺([3H]5-HT)、内源性谷氨酸的释放以及它们通过突触前h5-HT1B自身受体和h5-HT1D异源受体的调节作用。5-HT对K+(15 mM)诱发的[3H]5-HT释放的抑制作用被5-HT1B/5-HT1D受体配体GR 127935拮抗,该配体单独使用无效;先前发现该药物在调节谷氨酸释放的h5-HT1D异源受体上表现为完全激动剂。最近提出的选择性h5-HT1B受体配体SB-224289也能阻止5-HT对自身受体的作用,其自身无活性;相比之下,1 microM的SB-224289无法与h5-HT1D异源受体相互作用。5-HT对K+诱发的谷氨酸释放的抑制作用被h5-HT1D受体配体BRL-15572拮抗;在无5-HT的情况下添加该化合物则无作用。1 microM的BRL-15572无法改变5-HT对调节[3H]5-HT释放的自身受体的作用。选择性5-HT1A受体拮抗剂(+)-WAY 100135先前被发现是调节谷氨酸释放的h5-HT1D异源受体的激动剂,当以1 microM添加时,它无法与h5-HT1B自身受体相互作用。结论是,天然的h5-HT1B和h5-HT1D受体表现出迄今为止意想不到的药理学多样性。