Rapp B, de Boisfleury-Chevance A, Gruler H
Abteilung für Biophysik, Universität Ulm, Federal Republic of Germany.
Eur Biophys J. 1988;16(5):313-9. doi: 10.1007/BF00254068.
The galvanotactic response of human granulocytes was investigated theoretically and experimentally. The basic results are: (i) The granulocytes move towards the anode. (ii) The directed movement has been quantified by two different polar order parameters--the McCutcheon index and the average of cos phi. (iii) The polar order parameters are a function of the applied electric field (= dose-response curve). (iv) The inverse of the galvanotactic constant of migrating cells (analogous to the Michaelis-Menten constant) has a value of -0.2 +/- 0.03 V/mm. (v) The galvanotactic response of granulocytes is a non-cooperative process with a cooperativity coefficient of 1 +/- 0.2. (vi) The galvanotactic constant is a function of pH. (vii) The protein essential for the galvanotactic response is very likely a G-protein.
对人类粒细胞的趋电反应进行了理论和实验研究。基本结果如下:(i) 粒细胞向阳极移动。(ii) 定向运动已通过两个不同的极性有序参数进行量化——麦卡琴指数和cos phi的平均值。(iii) 极性有序参数是所施加电场的函数(即剂量反应曲线)。(iv) 迁移细胞趋电常数的倒数(类似于米氏常数)值为-0.2±0.03 V/mm。(v) 粒细胞的趋电反应是一个非协同过程,协同系数为1±0.2。(vi) 趋电常数是pH的函数。(vii) 趋电反应所必需的蛋白质很可能是一种G蛋白。