Kapila Sundeep, Nair Pradeep R
Department of Electrical Engineering, Indian Institute of Technology Bombay, Mumbai, India.
Eur Biophys J. 2025 May;54(3-4):149-157. doi: 10.1007/s00249-025-01744-0. Epub 2025 Apr 7.
Exocytosis is a fundamental process related to the information exchange in the nervous and endocrine system. Among the various techniques, vesicle impact electrochemical cytometry (VIEC) has emerged as an effective method to mimic the exocytosis process and measure dynamic information about content transfer using nanoscale electrodes. In this article, through analytical models and large scale simulations, we develop scaling laws for the decay time constant for VIEC single-exponential transients. Specifically, our results anticipate a power law dependence of on the geometric and the transport parameters. This model compares very well with large scale simulations exploring the parameter space relevant for VIEC and with experimental results from literature. Remarkably, such physics-based compact models could allow for novel multi-feature-based self consistent strategies for back extraction of geometric and transport parameters and hence could contribute towards better statistical analysis and understanding of exocytosis transients and events.
胞吐作用是一种与神经和内分泌系统中的信息交换相关的基本过程。在各种技术中,囊泡撞击电化学细胞术(VIEC)已成为一种有效的方法,可模拟胞吐作用过程并使用纳米级电极测量有关内容物转移的动态信息。在本文中,通过分析模型和大规模模拟,我们为VIEC单指数瞬变的衰减时间常数建立了标度律。具体而言,我们的结果预测衰减时间常数与几何参数和传输参数之间存在幂律依赖关系。该模型与探索与VIEC相关的参数空间的大规模模拟以及文献中的实验结果非常吻合。值得注意的是,这种基于物理的紧凑模型可以为基于多特征的自洽策略提供支持,以反向提取几何参数和传输参数,从而有助于更好地进行统计分析并理解胞吐作用瞬变和事件。