The 5-HT3 receptor agonist 1-(m-chlorophenyl)-biguanide interacts with the dopamine transporter in rat brain synaptosomes

Andrew D. Campbell , Daniel E. Womer , Jay R. Simon
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引用次数: 19

Abstract

The ability of the 5-HT3 receptor agonist 1-(m-chlorophenyl)-biguanide to bind to the dopamine transporter and inhibit [3H]dopamine uptake was investigated in rat brain synaptosomes from the nucleus accumbens and caudate putamen. Competitive displacement experiments showed that 1-(m-chlorophenyl)-biguanide inhibited the binding of [3H]GBR-12935 in a biphasic manner (IC50 values of 0.4 and 2.0 μM [high affinity] and 34.8 and 52.7 μM [low affinity] for caudate putamen and nucleus accumbens, respectively), and the high affinity binding site differed between brain regions. Serotonin was ineffective at competing for [3H]GBR-12935 binding, while the selective 5-HT3 receptor antagonist ICS 205–930 exhibited an IC50 > 100 μM. The maximum density of [3H]GBR-12935 binding sites was more than two-fold greater in the caudate putamen than in the nucleus accumbens (6.9 vs. 2.7 pmol/mg protein), and KD values were similar (4.7 and 4.2 nM). 1-(m-chlorophenyl)-biguanide was able to inhibit [3H]dopamine uptake into synaptosomes of both brain regions, however it was significantly more potent in the caudate putamen (IC50: 5.1 vs. 6.5 μM). The results demonstrate that some of the reported dopamine releasing effects of 1-(m-chlorophenyl)-biguanide may be due in part to activity at the dopamine transporter, and further suggest a possible difference in dopamine uptake parameters between the caudate putamen and nucleus accumbens.

5-HT3受体激动剂1-(间氯苯基)双胍与大鼠脑突触体中的多巴胺转运体相互作用
研究了5-HT3受体激动剂1-(间氯苯基)-双胍结合多巴胺转运体并抑制[3H]多巴胺摄取的能力,研究了大鼠脑伏隔核和尾状壳核突触体。竞争取代实验表明,1-(间氯苯基)-双胍双相抑制[3H]GBR-12935在尾状壳核和伏隔核的结合IC50分别为0.4和2.0 μM(高亲和力)和34.8和52.7 μM(低亲和力),且高亲和力结合位点在脑区之间存在差异。血清素在竞争[3H]GBR-12935结合时无效,而选择性5-HT3受体拮抗剂ICS 205-930表现出IC50 >100μM。[3H]GBR-12935结合位点在尾状壳核的最大密度是伏隔核的两倍多(6.9 vs. 2.7 pmol/mg蛋白),KD值相似(4.7和4.2 nM)。1-(间氯苯基)双胍能够抑制[3H]多巴胺进入两个脑区突触体,但在尾状壳核中更有效(IC50: 5.1 vs. 6.5 μM)。结果表明,一些报道的多巴胺释放效应可能部分归因于多巴胺转运体的活性,并进一步表明尾状壳核和伏隔核之间多巴胺摄取参数可能存在差异。
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