Simitev Radostin D, Gilchrist Rebecca J, Yang Zhechao, Myles Rachel C, Burton Francis L, Smith Godfrey L
School of Mathematics and Statistics, University of Glasgow, Glasgow, UK.
School of Cardiovascular and Metabolic Health, University of Glasgow, Glasgow, UK.
R Soc Open Sci. 2025 Mar 26;12(3):241539. doi: 10.1098/rsos.241539. eCollection 2025 Mar.
Recent high-throughput experiments unveil substantial electrophysiological diversity among uncoupled healthy myocytes under identical conditions. To quantify inter-cell variability, the values of a subset of the parameters in a well-regarded mathematical model of the action potential of rabbit ventricular myocytes are estimated from fluorescence voltage measurements of a large number of cells. Statistical inference yields a population of nearly 1200 cell-specific model variants that, on a population-level replicate experimentally measured biomarker ranges and distributions, and in contrast to earlier studies, also match experimental biomarker values on a cell-by-cell basis. This model population may be regarded as a random sample from the phenotype of healthy rabbit ventricular myocytes. Univariate and bivariate joint marginal distributions of the estimated parameters are presented, and the parameter dependencies of several commonly used electrophysiological biomarkers are determined. Parameter values are weakly correlated, while summary metrics such as the action potential duration are not strongly dependent on any single electrophysiological characteristic of the myocyte. Our results demonstrate the feasibility of accurately and efficiently fitting entire action potential waveforms at scale.
最近的高通量实验揭示了在相同条件下未耦合的健康心肌细胞之间存在大量的电生理多样性。为了量化细胞间的变异性,通过对大量细胞的荧光电压测量,估算了备受认可的兔心室肌细胞动作电位数学模型中一部分参数的值。统计推断得出了近1200个细胞特异性模型变体,这些变体在群体水平上复制了实验测量的生物标志物范围和分布,并且与早期研究不同的是,在逐个细胞的基础上也与实验生物标志物值相匹配。这个模型群体可被视为健康兔心室肌细胞表型的随机样本。给出了估计参数的单变量和双变量联合边际分布,并确定了几种常用电生理生物标志物的参数依赖性。参数值之间的相关性较弱,而诸如动作电位持续时间等汇总指标并不强烈依赖于心肌细胞的任何单一电生理特征。我们的结果证明了大规模准确且高效地拟合整个动作电位波形的可行性。