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The Electrical Activity of Embryonic Chick Heart Cells Isolated in Tissue Culture Singly or in Interconnected Cell Sheets

机译:在组织培养中单独或在相互连​​接的细胞片中分离的胚胎小鸡心脏细胞的电活性

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Embryonic chick heart cells were cultured on a plastic surface in sparse sheets of 2–50 cells mutually in contact, or isolated as single cells. Conditions are described which permitted conjoint cells to be impaled with recording microelectrodes with 75% success, and isolated single cells with 8% success. It is proposed that cells in electrical contact with neighbors are protected from irreversible damage by the penetrating electrode, by a flow of ions or other substances from connected cells across low-impedance intercellular junctions. Action potentials recorded from conjoint and isolated single cells were similar in form and amplitude. The height or shape of the action potential thus appears not to depend upon spatial relationships of one cell to another. As the external potassium concentration was increased from 1.3 mM to 6 mM, cells became hyperpolarized while the afterhyperpolarization was reduced. At higher potassium levels, the afterhyperpolarization disappeared, the slope of the slow diastolic depolarization decreased, and resting potential fell along a linear curve with a slope of 61 mv per 10-fold increase in potassium. In pacemaker cells the diastolic depolarization consists of two phases: (a) recovery from the afterpotential of the previous action potential and (b) the pacemaker potential. These phases are separated by a point of inflection, and represent manifestations of different mechanisms. Evidence is presented that it is the point of inflection (PBA) rather than the point of maximal diastolic potential, that should be taken as the resting potential.
机译:胚胎鸡心脏细胞在塑料表面上以相互接触或分离为单个细胞的2–50个细胞的稀疏片培养。描述的条件允许通过记录微电极对联合细胞进行刺破,成功率达到75%,而分离出的单细胞成功率达到8%。提出通过穿透电极,来自连接的细胞的跨低阻抗细胞间连接的离子或其他物质的流动保护与相邻细胞电接触的细胞免受不可逆的损害。从联合和分离的单细胞记录的动作电位的形式和幅度相似。因此,动作电位的高度或形状似乎不取决于一个细胞与另一个细胞的空间关系。随着外部钾浓度从1.3 mM增加到6 mM,细胞变得超极化,而超极化减少。在较高的钾水平下,超极化后消失,缓慢的舒张期去极化的斜率降低,静息电位沿线性曲线下降,钾的斜率每增加10倍增加61 mv。在起搏器细胞中,舒张期去极化由两个阶段组成:(a)从先前动作电位的后电位中恢复,以及(b)起搏器电位。这些阶段通过拐点分开,代表了不同机制的表现。有证据表明,应该将拐点(PBA)而不是最大舒张电位作为静息电位。

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