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夜光虫原生质膜稳定性与外加电场持续时间和强度的关系。

THE RELATION OF THE STABILITY OF PROTOPLASMIC FILMS IN NOCTILUCA TO THE DURATION AND INTENSITY OF AN APPLIED ELECTRIC POTENTIAL.

机构信息

Puget Sound Marine Biological Laboratory, Friday Harbor, General and the Laboratory of Physiology, University of Minnesota, Minneapolis.

出版信息

J Gen Physiol. 1925 Mar 20;7(4):461-71. doi: 10.1085/jgp.7.4.461.

Abstract
  1. The experiments demonstrate that when a constant electric potential of sufficient intensity is applied to Noctiluca, the protoplasmic films which represent a part of the visible continuous phase of the cytoplasm and plasma membrane at the surface of the cell, become unstable and break down, thus releasing the acid contents of one of the internal discontinuous phases present in the cytoplasm of Noctiluca. This process which occurs first at anode then at the cathode side of the cell, appears to be a selective deemulsification or coalescence similar to that at the surface of an emulsion having a viscous continuous phase. 2. The experiments demonstrate that Nernst's equation See PDF for Equation which expresses approximately the relation of duration and intensity of a constant electric current to threshold stimulation of striated muscle, applies equally well to the process of anodal coalescence in Noctiluca. 3. Anodal and cathodal coalescence have different thresholds, due to the fact that the semipermeable plasma film at the surface of the cell is asymmetric with respect to the direction of the applied current. Attention is called to the possible relation between this phenomenon and the conditions occurring at the synapse between neurons. 4. The stability of the protoplasmic films in relation to the applied electric potential is greater in young cells than in old cells, or in other words the threshold intensity of the stimulus is higher for young than for old cells. 5. Attention is called to the occurrence in the same cell of different receptor-affector mechanisms having a corresponding difference in intensity threshold when an electric current is acting as a stimulus.
摘要
  1. 实验表明,当施加足够强度的恒定电势时,代表细胞表面细胞质和质膜可见连续相一部分的原生质膜变得不稳定并破裂,从而释放出存在于夜光藻细胞质中的一个内部不连续相的酸含量。这个过程首先在细胞的阳极侧然后在阴极侧发生,似乎是一种选择性的去乳化或聚结,类似于具有粘性连续相的乳液表面上的去乳化或聚结。

  2. 实验表明,能斯特方程(Nernst's equation)[见 PDF 中的方程],该方程大致表达了恒定电流的持续时间和强度与横纹肌阈值刺激的关系,同样适用于夜光藻中的阳极聚结过程。

  3. 阳极和阴极聚结具有不同的阈值,这是由于细胞表面的半透质膜膜对于施加电流的方向不对称。提请注意这种现象与神经元之间突触处发生的情况之间可能存在的关系。

  4. 与施加的电场电位相比,原生质膜的稳定性在年轻细胞中大于在年老细胞中,或者换句话说,对于年轻细胞比对于年老细胞,刺激的阈值强度更高。

  5. 提请注意在同一细胞中,当电流作为刺激时,具有相应强度阈值差异的不同受体-效应器机制的发生。

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