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5-HT1A受体基因背景及无效突变对基础体温和应激诱导体温的影响:5-羟色胺能和GABAA能药物的调节作用

Effects of genetic background and null mutation of 5-HT1A receptors on basal and stress-induced body temperature: modulation by serotonergic and GABAA-ergic drugs.

作者信息

Van Bogaert Meg, Oosting Ronald, Toth Miklos, Groenink Lucianne, van Oorschot Ruud, Olivier Berend

机构信息

Section of Psychopharmacology, Utrecht Institute of Pharmaceutical Sciences, Utrecht University, The Netherlands.

出版信息

Eur J Pharmacol. 2006 Nov 21;550(1-3):84-90. doi: 10.1016/j.ejphar.2006.08.058. Epub 2006 Sep 8.

DOI:10.1016/j.ejphar.2006.08.058
PMID:17022970
Abstract

The stress-induced hyperthermia procedure, in which effects of drugs on basal (T(1)) and stress-induced body temperature (T(2)) are measured, predicts anxiolytic drug effect. Serotonergic drugs alter these responses and here, we studied the role of 5-HT(1A) receptors in stress-induced hyperthermia by using 5-HT(1A) receptor knockout mice. Three strains (129/Sv, Swiss Webster and C57Bl6) were used because genetic background can significantly modulate the null phenotype. We found that GABA-ergic drugs with an anxiolytic profile and stimulate alpha(2) subunit containing GABA(A) receptors, including diazepam and L838,417, result in reduced DeltaT (DeltaT=T(2)-T(1)). The alpha(1) subunit containing GABA(A) receptor was found to be primarily involved in regulation of basal body temperature T(1) and its stimulation can induce hypothermia. In addition, stimulation of 5-HT(1A) receptors by buspirone results in a reduced DeltaT, while stimulation of 5-HT(7) receptors primarily results in hypothermia. The null mutation of 5-HT(1A) receptors resulted in differences in drug-sensitivity that was further modulated by the genetic background. In particular, the null mutation on the SW and C57Bl6 backgrounds resulted in differential diazepam/L838,417 and 5-CT responses respectively. This indicates an interaction between the 5-HT(1A) receptor and genetic background and demonstrates the importance of selecting the background strain in a receptor knockout model.

摘要

应激诱导性体温过高程序用于测量药物对基础体温(T(1))和应激诱导的体温(T(2))的影响,可预测抗焦虑药物的效果。血清素能药物会改变这些反应,在此,我们通过使用5-HT(1A)受体基因敲除小鼠研究了5-HT(1A)受体在应激诱导性体温过高中的作用。使用了三个品系(129/Sv、瑞士韦伯斯特和C57Bl6),因为遗传背景可显著调节无效表型。我们发现,具有抗焦虑作用且刺激含α(2)亚基的GABA(A)受体的GABA能药物,包括地西泮和L838,417,会导致ΔT降低(ΔT = T(2) - T(1))。发现含α(1)亚基的GABA(A)受体主要参与基础体温T(1)的调节,刺激该受体可诱导体温过低。此外,丁螺环酮刺激5-HT(1A)受体导致ΔT降低,而刺激5-HT(7)受体主要导致体温过低。5-HT(1A)受体的无效突变导致药物敏感性存在差异,这种差异进一步受到遗传背景的调节。特别是,SW和C57Bl6背景上的无效突变分别导致对地西泮/L838,417和5-CT的反应不同。这表明5-HT(1A)受体与遗传背景之间存在相互作用,并证明了在受体基因敲除模型中选择背景品系的重要性。

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