Moore L E, Clark R B, Shibata E F, Giles W R
J Membr Biol. 1986;89(2):131-8. doi: 10.1007/BF01869709.
Single electrode whole cell voltage-clamp experiments and frequency domain analyses have been used to study and compare the K+ currents in enzymatically dispersed single cells from the atrium and the sinus venosus (pacemaker region) of the bullfrog heart. Admittance measurements made near the "resting' or zero-current potential yield data from which the equivalent circuit of each cell type may be obtained. Data from both atrial and pacemaker cells are well-fitted by a model consisting only of parallel resistance-capacitative elements, as predicted from their micro-anatomy. Neither of these amphibian cardiac cells contain a transverse tubule system (TT) and both have very little sarcoplasmic reticulum (SR). These results complement and extend two earlier investigations: (i) Moore, Schmid and Isenberg (J. Membrane Biol. 81:29-40, 1984) have reported that in guinea pig ventricle cells (which do contain an internal membrane system consisting of transverse tubules and a substantial SR) the SR may be electrically coupled to the sarcolemma; (ii) Shibata and Giles (Biophys. J. 45:136a, 1984) have shown that although bullfrog atrial cells have an inwardly rectifying background K+ current, IK1, pacemaker cells from the immediately adjacent sinus venosus do not. Data from admittance measurements also provide evidence that a TTX-insensitive inward Ca2+ current is activated in the pacemaker range of potentials.
单电极全细胞电压钳实验和频域分析已被用于研究和比较牛蛙心脏心房和静脉窦(起搏区域)酶解分散的单细胞中的钾电流。在“静息”或零电流电位附近进行的导纳测量可得到数据,据此可获得每种细胞类型的等效电路。正如从它们的微观解剖结构所预测的那样,心房细胞和起搏细胞的数据都能很好地拟合一个仅由并联电阻-电容元件组成的模型。这两种两栖类心脏细胞都不包含横管系统(TT),且肌浆网(SR)都很少。这些结果补充并扩展了两项早期研究:(i)Moore、Schmid和Isenberg(《膜生物学杂志》81:29 - 40,1984年)报道,豚鼠心室细胞(确实包含由横管和大量肌浆网组成的内膜系统)中的肌浆网可能与肌膜电耦合;(ii)Shibata和Giles(《生物物理学杂志》45:136a,1984年)表明,虽然牛蛙心房细胞有内向整流背景钾电流IK1,但紧邻的静脉窦起搏细胞却没有。导纳测量数据还提供了证据,表明在起搏电位范围内激活了一种对河豚毒素不敏感的内向钙电流。