Griepp E B, Peacock J H, Bernfield M R, Revel J P
Department of Pediatrics, Stanford University School of Medicine, Palo Alto, CA 94305.
Exp Cell Res. 1978 May;113(2):273-82. doi: 10.1016/0014-4827(78)90367-1.
We have examined correlations between morphological and functional evidence of cell coupling between aggregates of beating embryonic heart cells and underlying layers. Synchronously beating aggregate-layer pairs were compared with asynchronous pairs. Intracellular microelectrode studies demonstrated that asynchronously beating aggregate-layers could not be induced to beat synchronously by electrical stimulation of the aggregate, whereas 86% of synchronous instances showed propagation of stimulating current pulses from aggregate to layer. By freeze fracture we have found significant differences both in the number and in the total area of gap junctions between the aggregate-layer interfaces of synchronous and asynchronous preparations. The data suggest that synchronous beating is a reliable functional indication of effective ionic coupling, and requires a certain area and number of gap junction/cell.
我们研究了跳动的胚胎心脏细胞聚集体与下层之间细胞耦合的形态学和功能证据之间的相关性。将同步跳动的聚集体-层对与异步对进行了比较。细胞内微电极研究表明,通过对聚集体进行电刺激,无法诱导异步跳动的聚集体-层同步跳动,而86%的同步实例显示刺激电流脉冲从聚集体传播到层。通过冷冻断裂,我们发现在同步和异步制剂的聚集体-层界面之间,间隙连接的数量和总面积都存在显著差异。数据表明,同步跳动是有效离子耦合的可靠功能指标,并且需要一定面积和数量的间隙连接/细胞。