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那不勒斯高兴奋性和低兴奋性大鼠品系的昼夜活动、痛觉阈值、黑质纹状体和中脑边缘多巴胺能活动。

Circadian activity, nociceptive thresholds, nigrostriatal and mesolimbic dopaminergic activity in the Naples High- and Low-Excitability rat lines.

作者信息

Sadile A G, Lamberti C, Siegfried B, Welzl H

机构信息

Dipartimento Fisiologia Umana e Funzioni Biologiche Integrate, F. Bottazzi, Università di Napoli Federico II, Italy.

出版信息

Behav Brain Res. 1993 May 31;55(1):17-27. doi: 10.1016/0166-4328(93)90003-9.

Abstract

These experiments were designed to further characterize the differential phenotypic constellation of the Naples High- (NHE) and Naples Low-Excitability (NLE) lines. In order to determine possible differences between NHE and NLE rats in activity and circadian rhythms, besides reactivity to novelty (selection trait), adult male rats of both strains were tested during two 10-min exposures to a Làt-maze. They were then kept in activity cages continuously for 3 days. Moreover, nociceptive thresholds were measured with the hot-plate and the tail-flick test, to probe the possibility that these rats could be differentially sensitive to nociceptive stimuli. Further, the integrity of the nigro-striatal and mesolimbic system was investigated by measuring tyrosine-hydroxylase activity in the striatum and 3,4-dihydroxyphenylacetic acid (DOPAC) levels in the striatum as well as in the nucleus accumbens. In addition, TH activity was measured in the adrenals to probe the sympathetic section of the neurovegetative system. The results indicate that NHE and NLE rats differ by a factor of two in their phasic activity in a Làt-maze. In contrast, no differences in 24-h activity during the dark or light phase could be observed in the activity cages. However, NHE rats anticipated the light-on stimulus in the morning by reducing their activity 1 h earlier than NLE rats. Further, no difference could be found with the hot-plate and the tail-flick test. Finally, biochemical analyses revealed no difference in the NHE and NLE rats in the main terminal zone of mesolimbic system (n. accumbens) nor of nigrostriatal system (striatum) nor in the adrenal glands. In conclusion, since the only consistent difference between NHE and NLE rats appears to be reactivity to spatial novelty, an hippocampus-dependent behavioral trait (selection trait), independent of altered activity in the sympathetic system or dopaminergic activity in the major dopaminergic brain systems, the usefulness of these strains as genetic model to test current hypotheses of spatial processor device(s) in the mammalian brain is supported.

摘要

这些实验旨在进一步刻画那不勒斯高兴奋性(NHE)品系和那不勒斯低兴奋性(NLE)品系不同的表型特征。为了确定NHE和NLE大鼠在活动和昼夜节律方面可能存在的差异,以及对新奇事物的反应性(选择性状),在两个10分钟的Lat迷宫暴露过程中对两个品系的成年雄性大鼠进行了测试。然后将它们连续3天置于活动笼中。此外,用热板法和甩尾试验测量伤害性感受阈值,以探究这些大鼠对伤害性刺激的敏感性是否存在差异。此外,通过测量纹状体中的酪氨酸羟化酶活性以及纹状体和伏隔核中的3,4-二羟基苯乙酸(DOPAC)水平,研究黑质-纹状体和中脑边缘系统的完整性。此外,测量肾上腺中的TH活性以探究神经植物性系统的交感部分。结果表明,NHE和NLE大鼠在Lat迷宫中的阶段性活动相差两倍。相比之下,在活动笼中未观察到黑暗或光照阶段24小时活动的差异。然而,NHE大鼠比NLE大鼠提前1小时降低活动,从而预期早晨的光照刺激。此外,热板法和甩尾试验未发现差异。最后,生化分析显示,NHE和NLE大鼠在中脑边缘系统(伏隔核)、黑质纹状体系统(纹状体)的主要终末区以及肾上腺中均无差异。总之,由于NHE和NLE大鼠之间唯一一致的差异似乎是对空间新奇性的反应性,这是一种依赖海马体的行为性状(选择性状),与交感神经系统活动改变或主要多巴胺能脑系统中的多巴胺能活动无关,因此支持了这些品系作为遗传模型来检验当前关于哺乳动物大脑中空间处理装置假设的有用性。

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