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离体细胞培养中大鼠岩神经节神经元5-羟色胺受体的电生理特性研究

Electrophysiological characterization of 5-HT receptors on rat petrosal neurons in dissociated cell culture.

作者信息

Zhong H, Zhang M, Nurse C A

机构信息

Department of Biology, McMaster University, 1280 Main St. West, Hamilton, ON, Canada.

出版信息

Brain Res. 1999 Jan 23;816(2):544-53. doi: 10.1016/s0006-8993(98)01232-3.

Abstract

The petrosal ganglion supplies chemoafferent pathways via the glossopharyngeal (IXth) nerve to peripheral targets which release various neurotransmitters including serotonin (5-HT). Here, we combined rapid 5-HT application with patch clamp, whole-cell recording to investigate whether 5-HT receptors are expressed on isolated petrosal neurons (PN), cultured from 7-12 day-old rat pups. In responsive cells, the dominant effect of 5-HT was a rapid depolarization associated with a conductance increase in approximately 43% of the neurons (53/123); however, in a minority population ( approximately 6%; 8/123), 5-HT caused membrane depolarization associated with a conductance decrease. In the former group, 5-HT produced a transient inward current (I5-HT) in neurons voltage-clamped near the resting potential ( approximately -60 mV); the effect was mimicked by the 5-HT3 receptor-specific agonist, 2-methyl-5-HT, suggesting it was mediated by 5-HT3 receptors. Further, I5-HT was selectively inhibited by the 5-HT3 receptor-specific antagonist MDL72222 (1-10 microM), but was unaffected by either 5-HT1/5-HT2 receptor antagonist, spiperone, or by 5-HT2 receptor-specific antagonist, ketanserin (50-100 microM). I5-HT displayed moderate inward rectification and had a mean reversal potential (+/-S.E.M.) of -4.3+/-6.6 mV (n=6). Application of 5-HT (dose range: 0.1-100 microM) produced a dose-response curve that was fitted by the Hill equation with EC50= approximately 3.4 microM and Hill coefficient= approximately 1.6 (n=8). The activation phase of I5-HT (10 microM 5-HT at -60 mV) was well fitted by a single exponential with mean (+/-S.E.M.) time constant of 45+/-30 ms (n=6). The desensitization phase of I5-HT was best fitted by a single exponential with mean (+/-S.E.M.) time constant of 660+/-167 ms (n=6). Fluctuation analysis yielded an apparent mean single-channel conductance (+/-S.E.M) of 2.7+/-1.5 pS (n=4) at -60 mV. In the minority ( approximately 6%) population of neurons which responded to 5-HT with a conductance decrease, the depolarization was blocked by the 5-HT2 receptor antagonist, ketanserin (50 microM). Taken together, these results suggest that 5-HT3 receptors are the major subtype expressed by rat petrosal neurons, and therefore are candidates for facilitating chemoafferent excitation in response to 5-HT released from peripheral targets.

摘要

岩神经节通过舌咽神经(第九对脑神经)为外周靶器官提供化学传入通路,这些外周靶器官会释放包括5-羟色胺(5-HT)在内的多种神经递质。在此,我们将快速应用5-HT与膜片钳全细胞记录相结合,以研究从7至12日龄大鼠幼崽分离培养的岩神经节神经元(PN)上是否表达5-HT受体。在有反应的细胞中,5-HT的主要作用是使约43%的神经元(53/123)快速去极化并伴有电导增加;然而,在少数群体(约6%;8/123)中,5-HT引起膜去极化并伴有电导降低。在前一组中,5-HT在静息电位(约-60 mV)附近电压钳制的神经元中产生短暂内向电流(I5-HT);5-HT3受体特异性激动剂2-甲基-5-HT可模拟该效应,表明其由5-HT3受体介导。此外,I5-HT被5-HT3受体特异性拮抗剂MDL72222(1 - 10 μM)选择性抑制,但不受5-HT1/5-HT2受体拮抗剂螺哌隆或5-HT2受体特异性拮抗剂酮色林(50 - 100 μM)的影响。I5-HT表现出适度的内向整流,平均反转电位(±标准误)为-4.3 ± 6.6 mV(n = 6)。应用5-HT(剂量范围:0.1 - 100 μM)产生的剂量反应曲线可由希尔方程拟合,EC50约为3.4 μM,希尔系数约为1.6(n = 8)。I5-HT(-60 mV时10 μM 5-HT)的激活阶段由单个指数很好地拟合,平均(±标准误)时间常数为45 ± 30 ms(n = 6)。I5-HT的脱敏阶段由单个指数最佳拟合,平均(±标准误)时间常数为660 ± 167 ms(n = 6)。波动分析在-60 mV时得出表观平均单通道电导(±标准误)为2.7 ± 1.5 pS(n = 4)。在少数(约6%)对5-HT有电导降低反应的神经元群体中,去极化被5-HT2受体拮抗剂酮色林(50 μM)阻断。综上所述,这些结果表明5-HT3受体是大鼠岩神经节神经元表达的主要亚型,因此是促进对来自外周靶器官释放的5-HT产生化学传入兴奋的候选受体。

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