利用基因工程报告小鼠模型分离胚胎心肌细胞并进行细胞增殖测定

Maren C Beall, Deqiang Li, Jihyun Jang
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摘要

先天性心脏病(CHD)通常与心肌发育缺陷有关。在心脏发育过程中,心肌细胞的生长需要胰岛素样生长因子 2(IGF-2)等外在因子的重要提示。为了确定生长因子是否以及如何导致胚胎心肌细胞增殖,可利用分离和培养胚胎心肌细胞作为心脏发育研究的有用工具。目前从心脏中分离心肌细胞的方案并不包括心肌细胞特异性报告物来区分心肌细胞和其他细胞类型。为了优化心肌细胞增殖的可视化,我们的方案利用 Tnnt2 启动子驱动的 H2B-GFP 基因敲入小鼠模型(TNNT2H2B-GFP/+)来体外可视化核标记的心肌细胞特异性荧光。心肌细胞特异性基因报告物与有效的增殖测定法相配合,可提高细胞识别、增殖细胞计数和心肌细胞追踪的准确性,从而提高机理研究的可重复性。主要特点 - 该方案改进了以往的心肌细胞分离方法,使其专门针对胚胎心肌细胞。- 使用 Yan 等人(2016 年)确定的 H2B-GFP/+ 心肌细胞报告物。- 利用磷酸组蛋白 3 (p-H3) 检测法追踪细胞增殖。- 可用于评估生长因子在心肌细胞增殖中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Isolation of Embryonic Cardiomyocytes and Cell Proliferation Assay Using Genetically Engineered Reporter Mouse Model.

Congenital heart disease (CHD) is often associated with myogenic defects. During heart development, cardiomyocyte growth requires essential cues from extrinsic factors such as insulin-like growth factor 2 (IGF-2). To determine whether and how growth factors account for embryonic cardiomyocyte proliferation, isolation followed by culturing of embryonic cardiomyocytes can be utilized as a useful tool for heart developmental studies. Current protocols for isolating cardiomyocytes from the heart do not include a cardiomyocyte-specific reporter to distinguish cardiomyocytes from other cell types. To optimize visualization of cardiomyocyte proliferation, our protocol utilizes a Tnnt2-promoter-driven H2B-GFP knock-in mouse model (TNNT2H2B-GFP/+) for in vitro visualization of nuclear-tagged cardiomyocyte-specific fluorescence. A cardiomyocyte-specific genetic reporter paired with an effective proliferation assay improves the reproducibility of mechanistic studies by increasing the accuracy of cell identification, proliferated cell counting, and cardiomyocyte tracking. Key features • This protocol refines previous methods of cardiomyocyte isolation to specifically target embryonic cardiomyocytes. • UsesH2B-GFP/+cardiomyocyte reporters as identified by Yan et al. (2016). • Traces cell proliferation with Phospho-Histone 3 (p-H3) assay. • Has applications in assessing the role of growth factors in cardiomyocyte proliferation.

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