Hohlfeld R, Sterz R, Kalies I, Peper K, Wekerle H
Pflugers Arch. 1981 May;390(2):156-60. doi: 10.1007/BF00590199.
Chronic experimental autoimmune myasthenia gravis (EAMG) was induced in rats by immunization with acetylcholine receptor (AChR) purified from the electroplax of Torpedo californica. 35--40 days after immunization, serum anti-AChR antibody titers were about 40 nM. At this stage, electrophysiology was performed on isolated M. omohyoideus muscle-preparations from myasthenic and from normal (control) rats. For the study of the equilibrium interaction between acetylcholine (ACh) and AChR, dose-response curves were obtained by quantitative ionophoretic application of ACh to voltage-clamped end-plates. Analysis of dose-response curves yielded the following parameters: maximum end-plate conductance per unit surface gmax (EAMG) = 10.3 +/- 1.1 nS/micrometer 2, gmax (normal) = 20.2 +/- 1.8 nS/micrometer 2; apparent dissociation constant K (EAMG) = 96 +/- 5 microM, K (normal) = 58 +/- 6 microM; Hill-coefficient nH (EAMG) = 2.3 +/- 0.1, nH (normal) = 2.3 +/- 0.1. Single channel properties were derived from an analysis of ACh-induced end-plate current noise: the mean single channel conductance was gamma (EAMG) = 20.1 +/- 2.2 pS, gamma (normal) = 27.6 +/- 1.8 pS and the mean channel life-time tau (EAMG) = 1.39 +/- 0.09 ms, tau (normal) = 1.32 +/- 0.08 ms (T = 22 degrees C). The electrophysiological data are interpreted as follows: (1) At myasthenic end-plates there is a 50--60% reduction of functioning AChR (decrease of gmax). A total number of about 2 x 10(6) (1 x 10(6)) channels per end-plate was calculated for control (myasthenic) rats. (2) The affinity of AChR for ACh is reduced and/or there is an impediment of the conformational change from the closed- to the open-channel configuration (increase of K). (3) Single channel properties are essentially unaffected.
通过用从加州电鳐电板中纯化的乙酰胆碱受体(AChR)免疫大鼠,诱导其发生慢性实验性自身免疫性重症肌无力(EAMG)。免疫后35 - 40天,血清抗AChR抗体滴度约为40 nM。在此阶段,对来自重症肌无力大鼠和正常(对照)大鼠的分离的肩胛舌骨肌制备物进行电生理学研究。为了研究乙酰胆碱(ACh)与AChR之间的平衡相互作用,通过将ACh定量离子电泳施加到电压钳制的终板上获得剂量 - 反应曲线。剂量 - 反应曲线分析得出以下参数:每单位表面积的最大终板电导gmax(EAMG)= 10.3±1.1 nS/μm2,gmax(正常)= 20.2±1.8 nS/μm2;表观解离常数K(EAMG)= 96±5 μM,K(正常)= 58±6 μM;希尔系数nH(EAMG)= 2.3±0.1,nH(正常)= 2.3±0.1。单通道特性来自对ACh诱导的终板电流噪声的分析:平均单通道电导为γ(EAMG)= 20.1±2.2 pS,γ(正常)= 27.6±1.8 pS,平均通道寿命τ(EAMG)= 1.39±0.09 ms,τ(正常)= 1.32±0.08 ms(T = 22℃)。电生理学数据的解释如下:(1)在重症肌无力终板处,功能性AChR减少50 - 60%(gmax降低)。计算得出对照(重症肌无力)大鼠每个终板的通道总数约为2×10(6)(1×10(6))个。(2)AChR对ACh的亲和力降低和/或从关闭通道构象到开放通道构象的构象变化存在障碍(K增加)。(3)单通道特性基本未受影响。