Effects of olfactory bulbectomy on neuropeptide gene expression in the rat olfactory/limbic system.

Effects of olfactory bulbectomy on neuropeptide gene expression in the rat olfactory/limbic system.
复制标题

嗅球切除术对大鼠嗅觉/边缘系统神经肽基因表达的影响。

DOI:
10.1016/s0306-4522(98)00029-3
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发表时间:
1998
期刊:
影响因子:
3.3
通讯作者:
Primeaux,SD
Primeaux,SD
中科院分区:
医学3区
文献类型:
--
作者:
Holmes,PV;Davis,RC;Masini,CV;Primeaux,SD

文献摘要

相似文献

Bilateral olfactory bulbectomy in the rat produces a well-characterized syndrome that is independent of anosmia. This syndrome is reversed by chronic antidepressant administration, which provides the basis for the olfactory bulbectomy model of depression. The present experiments focused on neuropeptide plasticity in central olfactory/limbic structures following olfactory bulbectomy in rats. Male Sprague–Dawley rats received bilateral surgical ablation of the olfactory bulbs, sham surgery, or no surgery and were killed either three, seven, 14 or 28 days later. Relative levels of messenger RNA encoding neuropeptide Y, somatostatin, thyrotropin-releasing hormone, and corticotropin-releasing factor precursors in the forebrain were measured by quantitative in situ hybridization histochemistry using oligonucleotide probes. Prepro-neuropeptide Y messenger RNA levels in the piriform cortex and dentate gyrus were significantly elevated in bulbectomized rats 14 and 28 days after surgery compared to sham-operated and surgically naive rats. Prepro-somatostatin messenger RNA levels in the piriform cortex were marginally increased in bulbectomized rats at these time-points. Thyrotropin-releasing hormone and corticotropin-releasing factor precursor messenger RNA levels were not altered in the brain regions studied. The results indicate that olfactory bulbectomy causes long-term increases in the expression of the neuropeptide Y gene. These findings suggest that neuropeptide Y plasticity in the olfactory/limbic system may contribute to the olfactory bulbectomy syndrome in rats, and they provide further evidence of a role for neuropeptide Y in the pathophysiology of depression.