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Three-dimensional direct measurement of cardiomyocyte volume, nuclearity, and ploidy in thick histological sections

机译:厚组织学切片中三维直接测量心肌细胞体积,细胞核和倍性

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Quantitative assessment of myocardial development and disease requires accurate measurement of cardiomyocyte volume, nuclearity (nuclei per cell), and ploidy (genome copies per cell). Current methods require enzymatically isolating cells, which excludes the use of archived tissue, or serial sectioning. We describe a method of analysis that permits the direct simultaneous measurement of cardiomyocyte volume, nuclearity, and ploidy in thick histological sections. To demonstrate the utility of our technique, heart tissue was obtained from four species (rat, mouse, rabbit, sheep) at up to three life stages: prenatal, weaning and adulthood. Thick (40?μm) paraffin sections were stained with Wheat Germ Agglutinin-Alexa Fluor 488 to visualise cell membranes, and DAPI (4',6-diamidino-2-phenylindole) to visualise nuclei and measure ploidy. Previous methods have been restricted to thin sections (2-10?μm) and offer an incomplete picture of cardiomyocytes. Using confocal microscopy and three-dimensional image analysis software (Imaris Version 8.2, Bitplane AG, Switzerland), cardiomyocyte volume, nuclearity, and ploidy were measured. This method of staining and analysis of cardiomyocytes enables accurate morphometric measurements in thick histological sections, thus unlocking the potential of archived tissue. Our novel time-efficient method permits the entire cardiomyocyte to be visualised directly in 3D, eliminating the need for precise alignment of serial sections.
机译:心肌发育和疾病的定量评估需要准确测量心肌细胞的体积,核数(每个细胞的核)和倍性(每个细胞的基因组拷贝)。当前的方法需要酶分离细胞,这不使用存档的组织或连续切片。我们描述了一种分析方法,可以在厚组织学切片中直接同时测量心肌细胞的体积,细胞核和倍性。为了证明我们技术的实用性,从三个物种(产前,断奶和成年)的三个生命阶段(大鼠,小鼠,兔子,绵羊)获得了心脏组织。用小麦胚芽凝集素-Alexa Fluor 488对厚(40?μm)石蜡切片染色以显现细胞膜,并用DAPI(4',6-diamidino-2-phenylindole)显现核并测量倍性。先前的方法仅限于薄切片(2-10μm),并且不能提供完整的心肌细胞图像。使用共聚焦显微镜和三维图像分析软件(Imaris版本8.2,瑞士Bitplane AG),测量了心肌细胞的体积,细胞核和倍性。这种对心肌细胞进行染色和分析的方法可以在较厚的组织切片中进行准确的形态测量,从而释放了存档组织的潜力。我们新颖的省时方法可直接以3D方式显示整个心肌细胞,而无需精确对准连续切片。

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