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利用双谱分析研究细胞内信号振荡的同步与传递

Study of the Synchronization and Transmission of Intracellular Signaling Oscillations in Cells Using Bispectral Analysis.

作者信息

Astashev Maxim E, Serov Dmitriy A, Tankanag Arina V, Knyazeva Inna V, Dorokhov Artem A, Simakin Alexander V, Gudkov Sergey V

机构信息

Prokhorov General Physics Institute of the Russian Academy of Sciences, Vavilove St. 38, 119991 Moscow, Russia.

Federal Research Center "Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences", Institute of Cell Biophysics of the Russian Academy of Sciences, 3 Institutskaya St., 142290 Pushchino, Russia.

出版信息

Biology (Basel). 2024 Sep 2;13(9):685. doi: 10.3390/biology13090685.

Abstract

The oscillation synchronization analysis in biological systems will expand our knowledge about the response of living systems to changes in environmental conditions. This knowledge can be used in medicine (diagnosis, therapy, monitoring) and agriculture (increasing productivity, resistance to adverse effects). Currently, the search is underway for an informative, accurate and sensitive method for analyzing the synchronization of oscillatory processes in cell biology. It is especially pronounced in analyzing the concentration oscillations of intracellular signaling molecules in electrically nonexcitable cells. The bispectral analysis method could be applied to assess the characteristics of synchronized oscillations of intracellular mediators. We chose endothelial cells from mouse microvessels as model cells. Concentrations of well-studied calcium and nitric oxide (NO) were selected for study in control conditions and well-described stress: heating to 40 °C and hyperglycemia. The bispectral analysis allows us to accurately evaluate the proportion of synchronized cells, their synchronization degree, and the amplitude and frequency of synchronized calcium and NO oscillations. Heating to 40 °C increased cell synchronization for calcium but decreased for NO oscillations. Hyperglycemia abolished this effect. Heating to 40 °C changed the frequencies and increased the amplitudes of synchronized oscillations of calcium concentration and the NO synthesis rate. The first part of this paper describes the principles of the bispectral analysis method and equations and modifications of the method we propose. In the second part of this paper, specific examples of the application of bispectral analysis to assess the synchronization of living cells in vitro are presented. The discussion compares the capabilities of bispectral analysis with other analytical methods in this field.

摘要

生物系统中的振荡同步分析将拓展我们对生命系统如何响应环境条件变化的认识。这些知识可应用于医学(诊断、治疗、监测)和农业(提高生产力、增强抗逆性)。目前,正在寻找一种信息丰富、准确且灵敏的方法来分析细胞生物学中振荡过程的同步性。这在分析电非兴奋性细胞内细胞信号分子的浓度振荡时尤为明显。双谱分析方法可用于评估细胞内介质同步振荡的特征。我们选择小鼠微血管内皮细胞作为模型细胞。在对照条件以及明确描述的应激条件下(加热至40°C和高血糖),选择研究已充分了解的钙和一氧化氮(NO)的浓度。双谱分析使我们能够准确评估同步细胞的比例、它们的同步程度以及同步钙和NO振荡的幅度和频率。加热至40°C增加了钙的细胞同步性,但降低了NO振荡的同步性。高血糖消除了这种影响。加热至40°C改变了频率,并增加了钙浓度同步振荡的幅度以及NO合成速率。本文的第一部分描述了双谱分析方法的原理、方程以及我们提出的该方法的修改。在本文的第二部分,给出了双谱分析用于评估体外活细胞同步性的具体应用实例。讨论部分比较了双谱分析与该领域其他分析方法的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7f9/11428995/f0dbbf1c61ab/biology-13-00685-g001.jpg

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