首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Paradoxical increase in striatal neuropeptide gene expression following ischemic lesions of the cerebral cortex.
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Paradoxical increase in striatal neuropeptide gene expression following ischemic lesions of the cerebral cortex.

机译:大脑皮质缺血性损伤后纹状体神经肽基因表达的反常增加。

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摘要

Ischemic lesions of the cerebral cortex occur frequently in humans as a result of stroke. One major consequence of the death of cortical neurons is the loss of excitatory cortical projections to subcortical regions. Little is known, however, about the transsynaptic effect of such lesions on neurotransmitter expression in subcortical structures. We have examined the effects of ischemic cortical lesions on the peptidergic neurotransmitters enkephalin and tachykinins in the striatum, a brain region massively innervated by glutamatergic cortical inputs. The levels of enkephalin and tachykinin mRNAs increased in the striatum of adult rats after thermocoagulation of pial vessels. The effects were more pronounced in the striatal region most heavily innervated by the lesioned cortex but were also observed in other striatal regions and on the contralateral side. Increased gene expression was accompanied by increased immunoreactivity for the two peptides. Elevated levels of enkephalin mRNA were observed up to 3 months after surgery in the ipsilateral striatum. Whereas results of previous studies of acute cortical ablations suggested that excitatory corticostriatal neurons were necessary to maintain normal peptide levels in striatal efferent neurons, the present data indicate that lesions of the same corticostriatal neurons secondary to local ischemia result in a paradoxical transsynaptic activation of neuropeptide synthesis in subcortical structures. This effect may play a role in the functional consequences of cortical strokes and progressive cortical atrophy in humans and may have critical bearing for their treatment and prognosis.
机译:由于中风,人类大脑皮层的缺血性损伤频繁发生。皮质神经元死亡的一个主要后果是兴奋性皮质投射物丢失到皮质下区域。然而,关于这种损伤对皮层下结构中神经递质表达的经突触作用了解甚少。我们已经检查了缺血性皮层病变对纹状体中的肽能神经递质脑啡肽和速激肽的影响,纹状体是由谷氨酸能皮质输入大量支配的大脑区域。脉管热凝后成年大鼠纹状体中脑啡肽和速激肽mRNA的水平增加。在病变皮层受最严重支配的纹状体区域,这种效应更为明显,但在其他纹状体区域和对侧也观察到。基因表达的增加伴随着两种肽的免疫反应性的增加。在同侧纹状体中直至手术后3个月,脑啡肽mRNA水平升高。先前有关急性皮质消融的研究结果表明,兴奋性皮质上皮神经元是维持纹状体传出神经元中正常肽水平所必需的,而目前的数据表明,局部缺血继发的相同皮质上皮神经元的病变导致神经肽合成的反常的突触激活在皮下结构中。这种作用可能在人的皮质中风和进行性皮质萎缩的功能后果中起作用,并且可能对其治疗和预后具有关键意义。

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