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Effects of aging and gender on the spatial organization of nuclei in single human skeletal muscle cells

机译:衰老和性别对单个人骨骼肌细胞核空间结构的影响

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摘要

SummaryThe skeletal muscle fibre is a syncitium where each myonucleus regulates the gene products in a finite volume of the cytoplasm, i.e., the myonuclear domain (MND). We analysed aging- and gender-related effects on myonuclei organization and the MND size in single muscle fibres from six young (21–31 years) and nine old men (72–96 years), and from six young (24–32 years) and nine old women (65–96 years), using a novel image analysis algorithm applied to confocal images. Muscle fibres were classified according to myosin heavy chain (MyHC) isoform expression. Our image analysis algorithm was effective in determining the spatial organization of myonuclei and the distribution of individual MNDs along the single fibre segments. Significant linear relations were observed between MND size and fibre size, irrespective age, gender and MyHC isoform expression. The spatial organization of individual myonuclei, calculated as the distribution of nearest neighbour distances in 3D, and MND size were affected in old age, but changes were dependent on MyHC isoform expression. In type I muscle fibres, average NN-values were lower and showed an increased variability in old age, reflecting an aggregation of myonuclei in old age. Average MND size did not change in old age, but there was an increased MND size variability. In type IIa fibres, average NN-values and MND sizes were lower in old age, reflecting the smaller size of these muscle fibres in old age. It is suggested that these changes have a significant impact on protein synthesis and degradation during the aging process.
机译:概要骨骼肌纤维是一个合胞体,其中每个肌核细胞在有限体积的细胞质即肌核结构域(MND)中调节基因产物。我们分析了六个年轻人(21-31岁)和九个老人(72-96岁)以及六个年轻人(24-32岁)对单核肌纤维的衰老和性别相关的影响以及单核纤维MND大小和九名老年妇女(65-96岁),他们将一种新颖的图像分析算法应用于共焦图像。根据肌球蛋白重链(MyHC)同工型表达对肌纤维进行分类。我们的图像分析算法可以有效地确定肌核的空间组织以及单个MND在单个纤维段上的分布。观察到MND大小与纤维大小,年龄,性别和MyHC同工型表达之间存在显着的线性关系。个体肌核的空间组织(以3D中最邻近距离的分布和MND大小计算)在老年时会受到影响,但变化取决于MyHC亚型的表达。在I型肌肉纤维中,平均NN值较低,并且老年时变异性增加,反映了老年时肌核的聚集。 MND的平均大小在老年期没有变化,但是MND的大小变异性增加了。在IIa型纤维中,老年时的平均NN值和MND尺寸较低,这反映了老年时这些肌肉纤维的尺寸较小。建议这些变化对衰老过程中的蛋白质合成和降解具有重大影响。

著录项

  • 来源
    《Aging Cell》 |2010年第5期|p.685-697|共13页
  • 作者单位

    Department of Clinical Neurophysiology, Uppsala University, Uppsala, Sweden;

    |Department of Clinical Neurophysiology, Uppsala University, Uppsala, Sweden;

    |Centre for Image Analysis, Uppsala University, Uppsala, Sweden;

    Centre for Image Analysis, Swedish University of Agricultural Sciences, Uppsala, Sweden;

    Centre for Image Analysis, Uppsala University, Uppsala, Sweden;

    Department of Clinical Neurophysiology, Uppsala University, Uppsala, Sweden|Department of Biobehavioral Health, The Pennsylvania State University, University Park, PA, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aging; human skeletal muscle; myonuclear domain; 3D imaging;

    机译:衰老;人体骨骼肌;肌核区域;3D成像;

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