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外源性神经节苷脂和胆固醇应用对海兔神经元兴奋性的影响。

Effects of exogenous ganglioside and cholesterol application on excitability of Aplysia neurons.

作者信息

Büsselberg D, Evans M L, Carpenter D O, Rahmann H

机构信息

Wadsworth Center for Laboratories and Research, New York State Department of Health, Albany 12237.

出版信息

Membr Biochem. 1989;8(1):19-26. doi: 10.3109/09687688909025823.

Abstract

The effects of pressure-ejected gangliosides GM1 and GMix ("Cronassial") and cholesterol dissolved in sea water on the electrophysiological characteristics of Aplysia neurons were studied using voltage-clamp recording techniques. Two types of electrophysiological effects were found. In about 5% of neurons brief pulses (0.1-0.2 sec) of GM1 or GMix elicited fast and large currents associated with an increase in membrane conductance and clear reversal potentials. These currents were similar to those elicited by common neuro-transmitters. Thus it appears that gangliosides may activate a membrane-bound receptor on at least some neurons. Most (about 85%) of the 121 neurons studied showed responses to longer pulses (1.0-2.5 sec) of gangliosides. These responses were much smaller, usually had a relatively slow component, and could be mimicked by application of cholesterol. The currents elicited were either inward or outward and were often biphasic, with an small initial outward component followed by a larger slow inward current. The responses often became larger upon repeated application at short intervals, and long periods of wash were required for recovery. This type of response appears to reflect changes in the electrical properties of the cell induced by incorporation of small amounts of gangliosides or cholesterol into the membrane.

摘要

利用电压钳记录技术,研究了压力喷射的神经节苷脂GM1和GMix(“Cronassial”)以及溶解在海水中的胆固醇对海兔神经元电生理特性的影响。发现了两种类型的电生理效应。在约5%的神经元中,GM1或GMix的短暂脉冲(0.1 - 0.2秒)引发了快速且大的电流,这与膜电导增加和明确的反转电位有关。这些电流与常见神经递质引发的电流相似。因此,神经节苷脂似乎可能激活至少一些神经元上的膜结合受体。在研究的121个神经元中,大多数(约85%)对神经节苷脂的较长脉冲(1.0 - 2.5秒)有反应。这些反应要小得多,通常有一个相对缓慢的成分,并且可以通过应用胆固醇来模拟。引发的电流要么是内向的,要么是外向的,并且通常是双相的,最初有一个小的外向成分,随后是一个较大的缓慢内向电流。在短时间间隔内重复施加时,反应通常会变大,并且需要长时间冲洗才能恢复。这种类型的反应似乎反映了由于少量神经节苷脂或胆固醇掺入膜中而引起的细胞电特性变化。

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