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青春期和老年金黄仓鼠(Mesocricetus auratus)的进食差异与组胺3型受体的特定脑表达模式有关。

Feeding differences in pubertal and aged golden hamsters (Mesocricetus auratus) are related to specific cerebral expression pattern of histamine subtype 3 receptor.

作者信息

Madeo Maria, Granata Teresa, Facciolo Rosa Maria, Tripepi Sandro, Canonaco Marcello

机构信息

Comparative Neuroanatomy Laboratory, Department of Ecology, University of Calabria, Arcavacata di Rende, Italy.

出版信息

Behav Neurosci. 2006 Dec;120(6):1235-41. doi: 10.1037/0735-7044.120.6.1235.

Abstract

The hibernating golden hamster (Mesocricetus auratus) is becoming a useful rodent model to study the neurophysiological role of some neuromediators on vital behaviors such as sleep and thermoregulation. Recent works have shown that the histamine neuroreceptor subtypes (H-sub(1-3)R) are able to modulate such behaviors. Here, specific subtype(s) and cerebral nuclei that were actively operating on feeding behaviors in pubertal and adult hamsters were identified. Of the subtypes assessed, H-sub-3R antagonist (thioperamide) provoked significant (p < .001) changes in behavior (very low total food and water intake) in adults, whereas it did not significantly modify these behaviors in pubertals. The H-sub-3R antagonist's role seemed to be related to elevated amounts of stress-induced damaged neurons displaying, mainly, shrunken crenated cell membranes and altered synaptic processes in limbic areas such as amygdala, cortex, and hippocampus. At the transcription level, an evident expression pattern of H-sub-3R messenger RNA appeared in pubertals, especially in neurons of the cortex and hippocampus, whereas the same trend was featured in amygdalar areas of hibernating adult hamsters, suggesting early H-sub-3R regulatory activities, at least in limbic sites of this rodent model.

摘要

冬眠的金黄地鼠(Mesocricetus auratus)正成为一种有用的啮齿动物模型,用于研究某些神经介质对睡眠和体温调节等重要行为的神经生理作用。最近的研究表明,组胺神经受体亚型(H-sub(1-3)R)能够调节这些行为。在此,确定了在青春期和成年仓鼠中对进食行为起作用的特定亚型和脑核。在所评估的亚型中,H-sub-3R拮抗剂(硫代哌啶)在成年仓鼠中引起了显著(p < .001)的行为变化(食物和水的总摄入量极低),而在青春期仓鼠中并未显著改变这些行为。H-sub-3R拮抗剂的作用似乎与应激诱导的受损神经元数量增加有关,这些神经元主要表现为细胞膜皱缩和边缘区域(如杏仁核、皮层和海马体)的突触过程改变。在转录水平上,H-sub-3R信使核糖核酸在青春期有明显的表达模式,特别是在皮层和海马体的神经元中,而在冬眠成年仓鼠的杏仁核区域也有相同的趋势,这表明至少在这种啮齿动物模型的边缘部位存在早期的H-sub-3R调节活动。

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