Heart Center, Department of Experimental Cardiology, Academic Medical Center, Meibergdreef 9, 1105AZ Amsterdam, the Netherlands.
Heart Center, Department of Experimental Cardiology, Academic Medical Center, Meibergdreef 9, 1105AZ Amsterdam, the Netherlands.
Bioelectrochemistry. 2021 Aug;140:107810. doi: 10.1016/j.bioelechem.2021.107810. Epub 2021 Mar 31.
Mammalian heart cells and cells of leaves of Dionaea muscipula share the ability to generate propagated action potentials, because the excitable cells are electrically coupled. In the heart the propagated action potential causes synchronized contraction of the heart muscle after automatic generation of the impulse in the sinus node. In Dionaea propagation results in closure of the trap after activation of trigger hairs by an insect. The electrical activity can be recorded in the extracellular space as an extracellular electrogram, resulting from transmembrane currents. Although the underlying physiological mechanism that causes the electrogram is similar for heart and Dionaea cells, the contribution of the various ions to the transmembrane current is different. We recorded extracellular electrograms from Dionaea leaves and compared the recorded signals with those known from the heart. The morphology of the electrograms differed considerably. In comparison to activation in mammalian myocardium, electrograms of Dionaea are more temporally and spatially variable. Whereas electrograms in healthy myocardium recorded at some distance from the site of activation reveal a simple biphasic pattern, Dionaea activation showed positive, negative or biphasic deflections. Comparison of patch clamp data from plant cells and cardiomyocytes suggests a role of temperature and ion concentrations in extracellular space for the diversity of morphologies of the Dionaea electrograms.
哺乳动物的心脏细胞和捕蝇草叶片细胞都具有产生传播动作电位的能力,因为可兴奋细胞是电耦合的。在心脏中,传播动作电位在窦房结自动产生冲动后引起心肌的同步收缩。在捕蝇草中,当触发毛被昆虫激活时,传播会导致陷阱关闭。电活动可以作为跨膜电流的细胞外电图在细胞外空间中记录,尽管引起电图的潜在生理机制在心脏和捕蝇草细胞中相似,但跨膜电流中各种离子的贡献不同。我们从捕蝇草叶片中记录了细胞外电图,并将记录的信号与来自心脏的信号进行了比较。电图的形态有很大的不同。与哺乳动物心肌的激活相比,捕蝇草的电图在时间和空间上变化更大。而在距激活部位一定距离处记录的健康心肌电图显示出简单的双相模式,而捕蝇草的激活则显示出正、负或双相的偏转。植物细胞和心肌细胞的膜片钳数据比较表明,温度和离子浓度在细胞外空间中对捕蝇草电图形态的多样性起作用。