4.7 Article

Novel Algorithm of Network Calcium Dynamics Analysis for Studying the Role of Astrocytes in Neuronal Activity in Alzheimer's Disease Models

期刊

出版社

MDPI
DOI: 10.3390/ijms232415928

关键词

astrocytes; neuron-astroglia networks; Alzheimer's disease; beta-amyloid; calcium activity

资金

  1. Ministry of Science and Higher Education of the Russian Federation
  2. [075-15-2022-293]

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This study investigates the impact of astrocytes on the calcium activity of neuron-astroglia networks in Alzheimer's disease (AD) modeling. The researchers developed an algorithm to analyze the dynamic directed graphs of both astrocytic and neuronal networks, allowing them to identify functional relationships and characterize the spread of calcium signal. The study found that Alzheimer's astrocytes can alter the functional pattern of calcium activity in healthy nerve cells.
Accumulated experimental data strongly suggest that astrocytes play an important role in the pathogenesis of neurodegeneration, including Alzheimer's disease (AD). The effect of astrocytes on the calcium activity of neuron-astroglia networks in AD modelling was the object of the present study. We have expanded and improved our approach's capabilities to analyze calcium activity. We have developed a novel algorithm to construct dynamic directed graphs of both astrocytic and neuronal networks. The proposed algorithm allows us not only to identify functional relationships between cells and determine the presence of network activity, but also to characterize the spread of the calcium signal from cell to cell. Our study showed that Alzheimer's astrocytes can change the functional pattern of the calcium activity of healthy nerve cells. When healthy nerve cells were cocultivated with astrocytes treated with A beta 42, activation of calcium signaling was found. When healthy nerve cells were cocultivated with 5xFAD astrocytes, inhibition of calcium signaling was observed. In this regard, it seems relevant to further study astrocytic-neuronal interactions as an important factor in the regulation of the functional activity of brain cells during neurodegenerative processes. The approach to the analysis of streaming imaging data developed by the authors is a promising tool for studying the collective calcium dynamics of nerve cells.

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