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首页> 外文期刊>Brain research >Altered somatosensory barrel cortex refinement in the developing brain of Mecp2-null mice
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Altered somatosensory barrel cortex refinement in the developing brain of Mecp2-null mice

机译:Mecp2-null小鼠大脑发育过程中体感桶皮质的改变

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摘要

Rett syndrome (RTT) is a neurodevelopmental disorder caused by mutations in the methyl-CpG binding protein 2 (MeCP2) gene. In previous studies, monoaminergic dysfunctions have been detected in patients with RTT and in a murine model of RTT, the Mecp2-null mouse. Therefore, the pathogenesis of RTT is thought to involve impairments in the monoaminergic systems. However, there have been limited data showing that the impairment of monoamines leads to early symptoms during development. We used histochemistry to study the somatosensory barrel cortex in the B6.129P2(C)-Mecp2tm1.1Bird mouse model of RTT. The barrel cortex is widely used to investigate neuronal development and its regulation by various neurotransmitters including 5-HT. 5-HT levels were measured by high performance liquid chromatography with electrochemical detection (HPLC/EC), and serotonin transporter (SERT) and 5-HT1B receptor mRNAs were measured in the somatosensory cortex, thalamus and striatum on postnatal days (P) 10, P20 and P40. Mecp2-null mice (Mecp2-/y) had significantly smaller barrel fields than age-matched wild-type controls (Mecp2+/y) on P10 and P40, but the topographic map was accurately formed. Levels of 5-HT, and SERT and 5-HT1B receptor mRNA expression in the somatosensory cortex did not differ significantly between the Mecp2-null and wild-type mice on P10. However, thalamic 5-HT was reduced in Mecp2-null mice. Our data indicate that a lack of MeCP2 may disturb the refinement of the barrel cortex in the early postnatal period. Our findings suggest that a decrease in thalamic 5-HT might be involved in this phenomenon.
机译:Rett综合征(RTT)是由甲基CpG结合蛋白2(MeCP2)基因突变引起的神经发育障碍。在先前的研究中,在患有RTT的患者和RTT的鼠模型(Mecp2-null小鼠)中检测到单胺能功能障碍。因此,RTT的发病机理被认为与单胺能系统的损伤有关。然而,有限的数据表明单胺的损伤导致发育过程中的早期症状。我们使用组织化学研究了RTT的B6.129P2(C)-Mecp2tm1.1Bird小鼠模型中的体感桶状皮质。桶状皮层被广泛用于研究神经元的发育及其对各种神经递质(包括5-HT)的调控。在出生后第10天,采用电化学检测的高效液相色谱(HPLC / EC)测量5-HT水平,并在体感皮层,丘脑和纹状体中测量5-羟色胺转运蛋白(SERT)和5-HT1B受体mRNA, P20和P40。在P10和P40上,Mecp2-null小鼠(Mecp2- / y)的桶视野比年龄匹配的野生型对照(Mecp2 + / y)小得多,但地形图准确地形成了。 P10上的Mecp2-null和野生型小鼠之间,体感皮层中5-HT,SERT和5-HT1B受体mRNA的表达水平没有显着差异。但是,丘脑5-HT在Mecp2无小鼠中减少。我们的数据表明,缺乏MeCP2可能会干扰出生后早期桶状皮质的细化。我们的发现表明,丘脑5-HT的降低可能与这种现象有关。

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