首页> 美国卫生研究院文献>The Journal of General Physiology >THE ORIGIN OF THE ELECTRICAL CHARGES OF COLLOIDAL PARTICLES AND OF LIVING TISSUES
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THE ORIGIN OF THE ELECTRICAL CHARGES OF COLLOIDAL PARTICLES AND OF LIVING TISSUES

机译:胶体粒子和活组织电荷的起源

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摘要

1. When a solution of a salt of gelatin or crystalline egg albumin is separated by a collodion membrane from a watery solution (free from protein) a potential difference is set up across the membrane in which the protein is positively charged in the case of protein-acid salts and in which the protein is negatively charged in the case of metal proteinates. The turning point is the isoelectric point of the protein. 2. Measurements of the pH of the (inside) protein solution and of the outside watery solution show that when equilibrium is established the value pH inside minus pH outside is positive in the case of protein-acid salts and negative in the case of metal proteinates. This is to be expected when the P.D. is caused by the establishment of a Donnan equilibrium, since in that case the pH should be lower outside than inside in the case of a protein-acid salt and should be higher outside than inside in the case of a metal proteinate. 3. At the isoelectric point where the electrical charge is zero the value of pH inside minus pH outside becomes also zero. 4. It is shown that a P.D. is established between suspended particles of powdered gelatin and the surrounding watery solution and that the sign of charge of the particles is positive when they contain gelatin-acid salts, while it is negative when the powdered particles contain metal gelatinate. At the isoelectric point the charge is zero. 5. Measurements of the pH inside the powdered particles and of the pH in the outside watery solution show that when equilibrium is established the value pH inside minus pH outside is positive when the powdered particles contain a gelatin-acid salt, while the value pH inside minus pH outside is negative when the powdered particles contain Na gelatinate. At the isoelectric point the value pH inside minus pH outside is zero. 6. The addition of neutral salts depresses the electrical charge of the powdered particles of protein-acid salts. It is shown that the addition of salts to a suspension of powdered particles of gelatin chloride also diminishes the value of pH inside minus pH outside. 7. The agreement between the values 58 (pH inside minus pH outside) and the P. D. observed by the Compton electrometer is not only qualitative but quantitative. This proves that the difference in the concentration of acid (or alkali, as the case may be) in the two phases is the only cause for the observed P.D. 8. The Donnan theory demands that the P.D. of a gelatin chloride solution should be 1½ times as great as the P.D. of a gelatin sulfate solution of the same pH and the same concentration (1 per cent) of originally isoelectric gelatin. This is found to be correct and it is also shown that the values of pH inside minus pH outside for the two solutions possess the ratio of 3:2. 9. All these measurements prove that the electrical charges of suspended particles of protein are determined exclusively by the Donnan equilibrium.
机译:1.当胶棉膜将明胶盐或蛋清蛋白的盐溶液从水溶液(不含蛋白质)中分离出来时,会在整个膜上形成电位差,如果是蛋白质,则该膜带正电-酸盐酸盐,如果是金属蛋白质,则蛋白质带负电荷。转折点是蛋白质的等电点。 2.对(内部)蛋白质溶液和外部水性溶液的pH值的测量表明,当建立平衡时,对于蛋白质酸盐而言,内部pH值减去外部pH值是正值,对于金属蛋白质酸盐则为负值。当P.D.这是由于建立Donnan平衡引起的,因为在这种情况下,在蛋白质酸盐的情况下,pH值应低于内部,而在金属蛋白质酸盐的情况下,pH值应高于内部。 3.在电荷为零的等电点处,内部pH值减去外部pH值也变为零。 4.显示了一个P.D.在粉末状明胶的悬浮颗粒和周围的水溶液之间建立“α”,并且当它们包含明胶酸盐时,颗粒的带电符号为正,而当粉末状颗粒包含明胶金属时,其带电符号为负。在等电点,电荷为零。 5.对粉末状颗粒内部的pH值和外部水性溶液中的pH值的测量表明,当建立平衡时,当粉末状颗粒包含明胶酸盐时,内部pH值减去外部pH值为正,而内部pH值为当粉末状颗粒含有明胶酸钠时,外部pH负数为负。在等电点处,内部pH值减去外部pH值为零。 6.添加中性盐会降低蛋白质酸盐粉末粉末的电荷。结果表明,向氯化明胶粉状颗粒的悬浮液中添加盐也会减少内部pH值减去外部pH值。 7.值58(内部pH值减去外部pH值)与康普顿静电计观察到的P. D.之间的一致性不仅是定性的,而且是定量的。这证明了两相中酸(或碱)的浓度差异是观察到的P.D的唯一原因。 8. Donnan理论要求P.D.明胶氯化物溶液的最大浓度应为P.D.的1.5倍。相同pH和相同浓度(1%)的原始等电明胶的硫酸明胶溶液。发现这是正确的,并且还表明两种溶液的内部pH值减去外部pH值之比为3:2。 9.所有这些测量结果证明,蛋白质悬浮颗粒的电荷完全由Donnan平衡确定。

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