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神经元生长模式和突触形成由不同的活动依赖机制介导。

Neuronal growth patterns and synapse formation are mediated by distinct activity-dependent mechanisms.

作者信息

Yacoub Matthew, Iqbal Fahad, Khan Zainab, Syeda Atika, Lijnse Thomas, Syed Naweed I

机构信息

Hotchkiss Brain Institute, University of Calgary, Calgary, AB, T2N 4N1, Canada.

Alberta Children's Hospital Research Institute, University of Calgary, Calgary, AB, T2N 4N1, Canada.

出版信息

Sci Rep. 2025 May 19;15(1):17338. doi: 10.1038/s41598-025-00806-9.

Abstract

All brain functions in animals rely upon neuronal connectivity that is established during early development. Although the activity-dependent mechanisms are deemed important for brain development and adult synaptic plasticity, the precise cellular and molecular mechanisms remain however, largely unknown. This lack of fundamental knowledge regarding developmental neuronal assembly owes its existence to the complexity of the mammalian brain as cell-cell interactions between individual neurons cannot be investigated directly. Here, we used individually identified synaptic partners from Lymnaea stagnalis to interrogate the role of neuronal activity patterns over an extended time period during various growth time points and synaptogenesis. Using intracellular recordings, microelectrode arrays, and time-lapse imaging, we identified unique patterns of activity throughout neurite outgrowth and synapse formation. Perturbation of voltage-gated Ca channels compromised neuronal growth patterns which also invoked a protein kinase A mediated pathway. Our findings underscore the importance of unique activity patterns in regulating neuronal growth, neurite branching, and synapse formation, and identify the underlying cellular and molecular mechanisms.

摘要

动物的所有脑功能都依赖于在早期发育过程中建立的神经元连接。尽管依赖活动的机制被认为对脑发育和成年期突触可塑性很重要,但精确的细胞和分子机制在很大程度上仍然未知。关于发育中神经元组装的这一基础知识的缺乏,归因于哺乳动物大脑的复杂性,因为单个神经元之间的细胞间相互作用无法直接研究。在这里,我们使用来自椎实螺(Lymnaea stagnalis)的单独识别的突触伙伴,在不同的生长时间点和突触发生过程中的较长时间段内研究神经元活动模式的作用。使用细胞内记录、微电极阵列和延时成像,我们确定了整个神经突生长和突触形成过程中的独特活动模式。电压门控钙通道的扰动损害了神经元生长模式,这也激活了蛋白激酶A介导的途径。我们的研究结果强调了独特活动模式在调节神经元生长、神经突分支和突触形成中的重要性,并确定了潜在的细胞和分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bcc/12089460/f4829521e067/41598_2025_806_Fig1_HTML.jpg

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