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用于非洲爪蟾神经元前体特征鉴定的荧光钙成像及后续原位杂交技术

Fluorescent Calcium Imaging and Subsequent In Situ Hybridization for Neuronal Precursor Characterization in Xenopus laevis.

作者信息

Ablondi Eileen F, Paudel Sudip, Sehdev Morgan, Marken John P, Halleran Andrew D, Rahman Atiqur, Kemper Peter, Saha Margaret S

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Harvard University.

Department of Biology, College of William and Mary.

出版信息

J Vis Exp. 2020 Feb 18(156). doi: 10.3791/60726.

Abstract

Spontaneous intracellular calcium activity can be observed in a variety of cell types and is proposed to play critical roles in a variety of physiological processes. In particular, appropriate regulation of calcium activity patterns during embryogenesis is necessary for many aspects of vertebrate neural development, including proper neural tube closure, synaptogenesis, and neurotransmitter phenotype specification. While the observation that calcium activity patterns can differ in both frequency and amplitude suggests a compelling mechanism by which these fluxes might transmit encoded signals to downstream effectors and regulate gene expression, existing population-level approaches have lacked the precision necessary to further explore this possibility. Furthermore, these approaches limit studies of the role of cell-cell interactions by precluding the ability to assay the state of neuronal determination in the absence of cell-cell contact. Therefore, we have established an experimental workflow that pairs time-lapse calcium imaging of dissociated neuronal explants with a fluorescence in situ hybridization assay, allowing the unambiguous correlation of calcium activity pattern with molecular phenotype on a single-cell level. We were successfully able to use this approach to distinguish and characterize specific calcium activity patterns associated with differentiating neural cells and neural progenitor cells, respectively; beyond this, however, the experimental framework described in this article could be readily adapted to investigate correlations between any time-series activity profile and expression of a gene or genes of interest.

摘要

在多种细胞类型中均可观察到自发的细胞内钙活性,并且据推测其在多种生理过程中发挥关键作用。特别是,胚胎发育过程中钙活性模式的适当调节对于脊椎动物神经发育的许多方面都是必需的,包括神经管的正常闭合、突触形成以及神经递质表型的确定。虽然观察到钙活性模式在频率和幅度上可能存在差异,这提示了一种引人注目的机制,通过该机制这些钙通量可能将编码信号传递给下游效应器并调节基因表达,但现有的群体水平方法缺乏进一步探索这种可能性所需的精度。此外,这些方法通过排除在无细胞间接触情况下测定神经元分化状态的能力,限制了对细胞间相互作用作用的研究。因此,我们建立了一种实验工作流程,将解离的神经元外植体的延时钙成像与荧光原位杂交分析相结合,从而能够在单细胞水平上明确钙活性模式与分子表型之间的相关性。我们成功地利用这种方法分别区分和表征了与分化中的神经细胞和神经祖细胞相关的特定钙活性模式;然而除此之外,本文所述的实验框架可以很容易地进行调整,以研究任何时间序列活性谱与一个或多个感兴趣基因的表达之间的相关性。

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