首页> 美国卫生研究院文献>Cambridge Open Access >The absence of P2X7 receptors (P2rx7) on non-haematopoietic cells leads to selective alteration in mood-related behaviour with dysregulated gene expression and stress reactivity in mice
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The absence of P2X7 receptors (P2rx7) on non-haematopoietic cells leads to selective alteration in mood-related behaviour with dysregulated gene expression and stress reactivity in mice

机译:非造血细胞上缺乏P2X7受体(P2rx7)会导致小鼠情绪相关行为的选择性改变从而导致小鼠基因表达失调和应激反应

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摘要

The purpose of this study was to explore how genetic deletion and pharmacological antagonism of the P2X7 receptor (P2rx7) alter mood-related behaviour, gene expression and stress reactivity in the brain. The forced swim test (FST), tail suspension test (TST) and amphetamine-induced hyperlocomotion (AH) tests were used in wild-type (P2rx7+/+) and P2rx7-deficient (P2rx7−/−) mice. Biogenic amine levels were analysed in the amygdala and striatum, adrenocorticotropic hormone (ACTH) and corticosterone levels were measured in the plasma and pituitary after restraint stress. Chimeric mice were generated by bone marrow transplantation. A whole genome microarray analysis with real-time polymerase chain reaction validation was performed on the amygdala. In the absence of P2rx7s decreased behavioural despair in the FST, reduced immobility in the TST and attenuated amphetamine-induced hyperactivity were detected. Basal norepinephrine levels were elevated in the amygdala, whereas stress-induced ACTH and corticosterone responses were alleviated in P2rx7−/− mice. Sub-acute treatment with the selective P2rx7 antagonist, Brilliant Blue G, reproduced the effect of genetic deletion in the TST and AH test in P2rx7+/+ but not P2rx7−/− mice. No change in behavioural phenotype was observed in chimeras lacking the P2rx7 in their haematopoietic compartment. Whole genome microarray analysis indicated a widespread up- and down-regulation of genes crucial for synaptic function and neuroplasticity by genetic deletion. Here, we present evidence that the absence of P2rx7s on non-haematopoietic cells leads to a mood-stabilizing phenotype in several behavioural models and suggest a therapeutic potential of P2rx7 antagonists for the treatment of mood disorders.
机译:这项研究的目的是探讨P2X7受体(P2rx7)的基因删除和药理拮抗作用如何改变与情绪有关的行为,基因表达和应激反应。在野生型(P2rx7 + / + )和P2rx7缺乏型(P2rx7 )中使用强迫游泳测试(FST),尾部悬吊测试(TST)和苯丙胺诱导的运动过度(AH)测试>-/-)小鼠。在杏仁核和纹状体中分析了生物胺的水平,限制了应激后血浆和垂体中的促肾上腺皮质激素(ACTH)和皮质酮水平被测量。通过骨髓移植产生嵌合小鼠。在杏仁核上进行了具有实时聚合酶链反应验证的全基因组微阵列分析。在缺乏P2rx7s的情况下,检测到FST的行为绝望减少,TST的固定性降低和苯丙胺诱导的亢进减弱。在杏仁核中,基础去甲肾上腺素水平升高,而在P2rx7 -/-小鼠中,应激诱导的ACTH和皮质酮响应得到缓解。用选择性P2rx7拮抗剂Brilliant Blue G进行的亚急性治疗在P2rx7 + / + 的TST和AH测试中再现了基因缺失的效果,但在P2rx7 -/-中却没有。 >老鼠。在其造血区室中缺乏P2rx7的嵌合体中未观察到行为表型的变化。全基因组微阵列分析表明,通过基因缺失,对突触功能和神经可塑性至关重要的基因普遍上调和下调。在这里,我们提供的证据表明,非造血细胞上缺乏P2rx7s会在几种行为模型中导致稳定情绪的表型,并提示P2rx7拮抗剂具有治疗情绪障碍的潜力。

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