Dreifuss J J, Raggenbass M
J Physiol. 1986 Oct;379:417-28. doi: 10.1113/jphysiol.1986.sp016261.
The effects of substance P, eledoisin and physalaemin--which are structurally similar and all belong to the tachykinin family--and of bombesin, a gastrin-releasing peptide, on non-pyramidal neurones were studied using unitary extracellular recordings from rat hippocampal slices. The peptides were added to the perifusion solution, or locally applied by pressure ejection from a micropipette, at concentrations ranging from 10(-8) to 10(-6) M. 104 out of 115 non-pyramidal neurones responded to tachykinins, and 26 out of 27 responded to bombesin, by a reversible, concentration-dependent increase in firing. The responsive neurones retained their sensitivity to the tachykinins and to bombesin under the condition of synaptic blockade. A synthetic peptide known to antagonize the effects of oxytocin on hippocampal non-pyramidal neurones did not affect the excitations induced by the tachykinins or bombesin. The action of the tachykinins was not blocked by the muscarinic antagonist, atropine. These results indicate that hippocampal non-pyramidal neurones--which were previously shown to possess oxytocin receptors and mu-type opiate receptors--bear receptors for peptides of the tachykinin and of the gastrin-releasing families. The hippocampal effects of tachykinins and of bombesin, however, were not blocked by synthetic structural analogues of substance P, known to antagonize the action of these peptides on some non-nervous tissues. The possibility must be considered that brain receptors for tachykinins and for gastrin-releasing peptides may be distinct from the peripheral receptors for these peptides.
使用大鼠海马切片的单细胞细胞外记录技术,研究了P物质、蛙皮素和 Physalaemin(它们在结构上相似,均属于速激肽家族)以及胃泌素释放肽蛙皮素对非锥体神经元的影响。将这些肽添加到灌流液中,或以10(-8)至10(-6)M的浓度通过微量移液器压力喷射局部应用。115个非锥体神经元中有104个对速激肽有反应,27个中有26个对蛙皮素的反应是发放频率出现可逆的、浓度依赖性增加。在突触阻断的条件下,反应性神经元对速激肽和蛙皮素仍保持敏感性。一种已知可拮抗催产素对海马非锥体神经元作用的合成肽,并不影响速激肽或蛙皮素所诱导的兴奋。速激肽的作用不受毒蕈碱拮抗剂阿托品的阻断。这些结果表明,海马非锥体神经元(先前已证明其具有催产素受体和μ型阿片受体)具有速激肽家族和胃泌素释放肽家族的肽受体。然而,速激肽和蛙皮素对海马的作用并未被已知可拮抗这些肽对某些非神经组织作用的P物质合成结构类似物所阻断。必须考虑到速激肽和胃泌素释放肽的脑受体可能与这些肽的外周受体不同的可能性。