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体内和体外海马去甲肾上腺素能反应。α和β成分的特征

Hippocampal noradrenergic responses in vivo and in vitro. Characterization of alpha and beta components.

作者信息

Mueller A L, Palmer M R, Hoffer B J, Dunwiddie T V

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1982 Mar;318(4):259-66. doi: 10.1007/BF00501163.

Abstract

Pressure ejection of l-norepinephrine (NE) in the in vivo rat hippocampus generally produced depression of pyramidal cell spontaneous activity. In addition, both excitation and biphasic responses were observed. NE-induced inhibition of firing rate was effectively antagonized by concurrent administration of the alpha antagonist phentolamine, but was largely unaltered by the beta antagonist timolol. On the other hand, NE-induced elevation in spontaneous firing rate was effectively blocked by timolol, and largely unaffected by phentolamine. Another beta antagonist, sotalol, did not selectively antagonize either NE-induced inhibition or NE-induced excitation. The beta agonist 2-fluoro-NE produced increases in pyramidal cell firing rates in most cells studied, while the alpha agonist 6-fluoro-NE inhibited the majority of cells examined. The effects of sotalol were also examined on alpha and beta receptor-mediated field responses in the in vitro hippocampal slice. Sotalol was shown to be a selective beta antagonist in this system, blocking excitation evoked by the beta agonist isoproterenol while having no effect on inhibition elicited by the alpha agonist clonidine; however, the potency of sotalol (Ki = 3.5 microM) was considerably less than that of timolol (Ki = 50 nM). Taken together, these results suggest that NE-induced depression and elevation in hippocampal pyramidal cell spontaneous discharge in vivo are mediated via alpha and beta adrenoceptors, respectively.

摘要

在活体大鼠海马体中,去甲肾上腺素(NE)的压力喷射通常会导致锥体细胞自发活动受到抑制。此外,还观察到了兴奋和双相反应。同时给予α拮抗剂酚妥拉明可有效拮抗NE诱导的放电频率抑制,但β拮抗剂噻吗洛尔对其影响不大。另一方面,噻吗洛尔可有效阻断NE诱导的自发放电频率升高,而酚妥拉明对此影响不大。另一种β拮抗剂索他洛尔对NE诱导的抑制或NE诱导的兴奋均无选择性拮抗作用。β激动剂2-氟-NE在大多数研究的细胞中可使锥体细胞放电频率增加,而α激动剂6-氟-NE则抑制了大多数检测的细胞。还研究了索他洛尔对体外海马体切片中α和β受体介导的场反应的影响。结果表明,索他洛尔在该系统中是一种选择性β拮抗剂,可阻断β激动剂异丙肾上腺素诱发的兴奋,而对α激动剂可乐定引起的抑制无影响;然而,索他洛尔的效力(Ki = 3.5 microM)远低于噻吗洛尔(Ki = 50 nM)。综上所述,这些结果表明,体内NE诱导的海马锥体细胞自发放电抑制和升高分别通过α和β肾上腺素能受体介导。

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