Jongsma H J, Masson-Pévet M, Tsjernina L
Department of Physiology, University of Amsterdam, The Netherlands.
Basic Res Cardiol. 1987 Sep-Oct;82(5):454-64. doi: 10.1007/BF01907093.
When two spontaneously beating neonatal rat heart cells in tissue culture were allowed to grow together they synchronized their originally independent beats to a common rhythm, as measured with an opto-electronic technique. Both single isolated cells and cell pairs exhibited a highly irregular beating pattern. Beating irregularity was strongly and positively correlated with mean interbeat interval. Synchronization of beating occurred in 50% of the pairs studied within one beating interval. In the remaining cell pairs, the first synchronized beat was followed by a 4-65 s period of partial synchronization. The time difference between contraction moments of two cells in a pair respective to each other (latency) changed upon synchronization from a random value to a fixed value. In a few cases the latency decreased during 20 to 30 s after the first synchronized beat before a steady-state value was reached. The mean interbeat interval (IBI) of the synchronized cell pairs was governed by the mean IBI of the originally faster beating cells. In 83% of the cases the mean IBI of the cell pairs was between that of the originally isolated beating cells. We conclude from the experiments described that physical coupling (i.e. gap junction formation) is virtually complete before beating synchronization occurs.
在组织培养中,当两个自发搏动的新生大鼠心脏细胞生长在一起时,它们会将原本独立的搏动同步为一种共同的节律,这是通过光电技术测量的。单个分离的细胞和细胞对都表现出高度不规则的搏动模式。搏动不规则性与平均搏动间隔呈强正相关。在所研究的细胞对中,有50%在一个搏动间隔内发生搏动同步。在其余的细胞对中,第一次同步搏动之后是4 - 65秒的部分同步期。一对细胞中两个细胞收缩时刻之间的时间差(潜伏期)在同步时从随机值变为固定值。在少数情况下,潜伏期在第一次同步搏动后的20至30秒内下降,然后达到稳态值。同步细胞对的平均搏动间隔(IBI)由最初搏动较快的细胞的平均IBI决定。在83%的情况下,细胞对的平均IBI介于最初分离的搏动细胞的平均IBI之间。从所描述的实验中我们得出结论,在搏动同步发生之前,物理耦合(即缝隙连接形成)实际上已经完成。