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大鼠犁鼻器感觉神经元对尿液物质的内向电流反应。

Inward current responses to urinary substances in rat vomeronasal sensory neurons.

作者信息

Inamura K, Kashiwayanagi M

机构信息

Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Eur J Neurosci. 2000 Oct;12(10):3529-36. doi: 10.1046/j.1460-9568.2000.00233.x.

Abstract

No study has yet demonstrated an inward current in response to pheromonal substances in vomeronasal sensory neurons. Using female rat vomeronasal sensory neurons, we here successfully recorded inward currents in response to urine from various sources. Of the neurons that responded to urine, 77% responded to only one type of urine. Male Wistar urine induced responses preferentially in the apical layer of the sensory epithelium, whilst male Donryu and female Wistar urine induced responses mainly in the basal layer of the epithelium. The amplitude of inward currents induced by application of male Wistar urine was voltage-dependent with average amplitude of -47.1+/-6.2 pA at -74 mV. The average reversal potential for male Wistar urine was -9.3 +/-6.1 mV, which was not apparently different from the reversal potentials for urine from different species. It is likely that the urine-induced inward currents in response to different types of urine are mediated via a similar channel. The simultaneous removal of Na+ and Ca2+ from extracellular solution eliminated the response. The magnitude of the urine-induced inward current in Cl--free external solution was similar to that in normal solution, suggesting that the urine-induced current is cation selective. Removal of external Ca2+ enhanced the amplitude of the urine-induced current and prolonged the response. Application of the constant-field equation indicated a very high permeability coefficient for Ca2+. This study first demonstrated that substances contained in urine elicited inward currents, which induce an excitatory response in vomeronasal sensory neurons, through cation-selective channels.

摘要

尚无研究表明犁鼻器感觉神经元对信息素物质会产生内向电流。我们利用雌性大鼠的犁鼻器感觉神经元,成功记录到了其对各种来源尿液产生的内向电流。在对尿液有反应的神经元中,77%仅对一种类型的尿液有反应。雄性Wistar大鼠的尿液优先在感觉上皮的顶层诱发反应,而雄性唐育大鼠和雌性Wistar大鼠的尿液主要在上皮的基底层诱发反应。施加雄性Wistar大鼠尿液所诱发的内向电流幅度呈电压依赖性,在-74 mV时平均幅度为-47.1±6.2 pA。雄性Wistar大鼠尿液的平均反转电位为-9.3±6.1 mV,这与不同物种尿液的反转电位没有明显差异。对不同类型尿液产生的尿液诱发内向电流可能是通过相似的通道介导的。从细胞外溶液中同时去除Na+和Ca2+可消除反应。在无Cl-的外部溶液中,尿液诱发的内向电流幅度与正常溶液中的相似,这表明尿液诱发的电流是阳离子选择性的。去除外部Ca2+会增强尿液诱发电流的幅度并延长反应时间。应用恒定场方程表明Ca2+具有非常高的渗透系数。本研究首次证明,尿液中含有的物质通过阳离子选择性通道引发内向电流,从而在犁鼻器感觉神经元中诱导兴奋性反应。

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