首页> 外文期刊>The European Journal of Neuroscience >Clozapine-, but not haloperidol-, induced increases in deltaFosB-like immunoreactivity are completely blocked in the striatum of mice lacking D3 dopamine receptors.
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Clozapine-, but not haloperidol-, induced increases in deltaFosB-like immunoreactivity are completely blocked in the striatum of mice lacking D3 dopamine receptors.

机译:缺乏D3多巴胺受体的小鼠的纹状体中完全阻断了氯氮平而不是氟哌啶醇引起的deltaFosB样免疫反应性的增加。

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On the basis of anatomical and pharmacological evidence, we have proposed that D3 receptor antagonism plays a role in the mediation of clozapine-, but not haloperidol-, induced immediate-early gene expression in the striatum. To test this hypothesis directly, we compared the effects of repeated administration of vehicle (8 mL/kg/day), clozapine (20 mg/kg/day) and haloperidol (2 mg/kg/day) for 17 days on expression of deltaFosB-like immunoreactivity (deltaFosB-Ir) in the island of Calleja major, nucleus accumbens and caudate-putamen of wild-type C57Bl6 (WT) and D3 receptor knockout (D3KO) mice. In vehicle-treated mice, the number of deltaFosB-Ir neurons in the nucleus accumbens was greater in D3KO than in WT mice. This finding is consistent with results implicating D3 receptor activation in the tonic inhibition of this limbic structure. Unlike rats, clozapine significantly increased the number of deltaFosB-Ir neurons in both the nucleus accumbens and the caudate-putamen of WT mice albeit to a lesser extent in the caudate-putamen than nucleus accumbens. Similar to rats, however, deltaFosB-Ir in the island of Calleja major of WT mice was elevated by clozapine but not by haloperidol. In the nucleus accumbens and caudate-putamen, haloperidol produced similar increases in deltaFosB-Ir in WT and D3KO mice. By contrast, clozapine-induced increases in deltaFosB-Ir in the island of Calleja major, nucleus accumbens and caudate-putamen of WT mice were absent in D3KO mice. These findings, which indicate that D3 receptor blockade is essential for clozapine-induced increases in striatal deltaFosB-Ir, suggest that D3 receptor antagonism may contribute to the unique therapeutic profile of this atypical antipsychotic.
机译:根据解剖学和药理学证据,我们已提出D3受体拮抗作用在氯氮平(而不是氟哌啶醇)介导的纹状体中早期基因表达的介导中起作用。为了直接检验该假设,我们比较了重复给药载体(8 mL / kg /天),氯氮平(20 mg / kg /天)和氟哌啶醇(2 mg / kg /天)17天对deltaFosB表达的影响。型C57B16(WT)和D3受体敲除(D3KO)小鼠的大型Calleja岛,伏隔核和尾状豆核中存在类似的免疫反应性(deltaFosB-Ir)。在用媒介物治疗的小鼠中,D3KO中伏隔核中deltaFosB-Ir神经元的数量大于野生型小鼠。这一发现与在该边缘结构的张力抑制中暗示D3受体活化的结果一致。与大鼠不同,氯氮平显着增加了伏特核的伏隔核和尾状-丘脑中的deltaFosB-Ir神经元的数量,尽管在尾状-丘脑中的程度比伏隔核小。然而,与大鼠相似,WT小鼠Calleja major岛中的deltaFosB-Ir被氯氮平升高,但未被氟哌啶醇升高。在伏隔核和尾状豆核中,氟哌啶醇在WT和D3KO小鼠的deltaFosB-Ir中产生相似的增加。相比之下,D3KO小鼠中缺少氯氮平诱导的大Calleja岛,伏隔核和尾状豆核的deltaFosB-Ir增加。这些发现表明D3受体阻断对于氯氮平诱导的纹状体δFosB-Ir增加是必不可少的,表明D3受体拮抗作用可能有助于这种非典型抗精神病药的独特治疗作用。

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