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甘氨酸受体抑制对发育中胚胎皮层的选定神经元群体产生差异影响,这可通过分析自发钙振荡得到证明。

Glycine Receptor Inhibition Differentially Affect Selected Neuronal Populations of the Developing Embryonic Cortex, as Evidenced by the Analysis of Spontaneous Calcium Oscillations.

机构信息

Biomedical Sciences Research Laboratory, Department of Basic Sciences, Faculty of Medicine, Universidad Católica de la Santísima Concepción, 4090541 Concepción, Chile.

School of Chemical and Process Engineering, University of Leeds, LS2 9JT Leeds, UK.

出版信息

Int J Mol Sci. 2020 Oct 28;21(21):8013. doi: 10.3390/ijms21218013.

Abstract

The embryonic developing cerebral cortex is characterized by the presence of distinctive cell types such as progenitor pools, immature projection neurons and interneurons. Each of these cell types is diverse on itself, but they all take part of the developmental process responding to intrinsic and extrinsic cues that can affect their calcium oscillations. Importantly, calcium activity is crucial for controlling cellular events linked to cell cycle progression, cell fate determination, specification, cell positioning, morphological development and maturation. Therefore, in this work we measured calcium activity in control conditions and in response to neurotransmitter inhibition. Different data analysis methods were applied over the experimental measurements including statistical methods entropy and fractal calculations, and spectral and principal component analyses. We found that developing projection neurons are differentially affected by classic inhibitory neurotransmission as a cell type and at different places compared to migrating interneurons, which are also heterogeneous in their response to neurotransmitter inhibition. This reveals important insights into the developmental role of neurotransmitters and calcium oscillations in the forming brain cortex. Moreover, we present an improved analysis proposing a Gini coefficient-based inequality distribution and principal component analysis as mathematical tools for understanding the earliest patterns of brain activity.

摘要

胚胎发育中的大脑皮层的特点是存在独特的细胞类型,如祖细胞池、未成熟的投射神经元和中间神经元。这些细胞类型本身就具有多样性,但它们都参与了对内在和外在线索的反应的发育过程,这些线索可能会影响它们的钙振荡。重要的是,钙活性对于控制与细胞周期进程、细胞命运决定、特化、细胞定位、形态发育和成熟相关的细胞事件至关重要。因此,在这项工作中,我们在对照条件下和响应神经递质抑制的情况下测量了钙活性。对实验测量数据应用了不同的数据分析方法,包括统计方法熵和分形计算,以及频谱和主成分分析。我们发现,与迁移的中间神经元相比,经典抑制性神经递质对发育中的投射神经元的影响存在差异,并且投射神经元在不同的位置也存在差异,而中间神经元对神经递质抑制的反应也具有异质性。这揭示了神经递质和钙振荡在形成大脑皮层中的发育作用的重要见解。此外,我们提出了一种改进的分析方法,提出了基于基尼系数的不平等分布和主成分分析作为理解大脑活动最早模式的数学工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76bd/7672546/7b3578147f3e/ijms-21-08013-g001.jpg

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