Perc Matjaz, Green Anne K, Dixon C Jane, Marhl Marko
Department of Physics, Faculty of Natural Sciences and Mathematics, University of Maribor, Koroska cesta 160, SI-2000 Maribor, Slovenia.
Biophys Chem. 2008 Jan;132(1):33-8. doi: 10.1016/j.bpc.2007.10.002. Epub 2007 Oct 11.
Calcium has been established as a key messenger in both intra- and intercellular signaling. Experimentally observed intracellular calcium responses to different agonists show a variety of behaviors from simple spiking to complex oscillatory regimes. Here we study typical experimental traces of calcium oscillations in hepatocytes obtained in response to phenylephrine and ATP. The traces were analyzed with methods of nonlinear time series analysis in order to determine the stochastic/deterministic nature of the intracellular calcium oscillations. Despite the fact that the oscillations appear, visually, to be deterministic yet perturbed by noise, our analyses provide strong evidence that the measured calcium traces in hepatocytes are prevalently of stochastic nature. In particular, bursting calcium oscillations are temporally correlated Gaussian series distorted by a monotonic, instantaneous, time-independent function, whilst the spiking behavior appears to have a dynamical nonlinear component whereby the overall determinism level is still low. The biological importance of this finding is discussed in relation to the mechanisms incorporated in mathematical models as well as the role of stochasticity and determinism at cellular and tissue levels which resemble typical statistical and thermodynamic effects in physics.
钙已被确认为细胞内和细胞间信号传导中的关键信使。实验观察到的细胞内钙对不同激动剂的反应呈现出从简单的尖峰到复杂振荡状态的各种行为。在此,我们研究了肝细胞中响应去氧肾上腺素和三磷酸腺苷(ATP)而获得的典型钙振荡实验记录。为了确定细胞内钙振荡的随机/确定性本质,我们用非线性时间序列分析方法对这些记录进行了分析。尽管从视觉上看,这些振荡似乎是确定性的,但受到噪声干扰,我们的分析提供了强有力的证据,表明肝细胞中测得的钙记录主要具有随机性质。特别是,爆发性钙振荡是由单调、瞬时、与时间无关的函数扭曲的时间相关高斯序列,而尖峰行为似乎具有动态非线性成分,整体确定性水平仍然较低。我们结合数学模型中包含的机制以及随机性和确定性在细胞和组织水平上的作用(类似于物理学中的典型统计和热力学效应)来讨论这一发现的生物学重要性。