首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >THE DISSOCIABILITY OF DEOXYRIBONUCLEIC ACID SYNTHESIS FROM THE DEVELOPMENT OF MULTINUCLEARITY OF MUSCLE CELLS IN CULTURE
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THE DISSOCIABILITY OF DEOXYRIBONUCLEIC ACID SYNTHESIS FROM THE DEVELOPMENT OF MULTINUCLEARITY OF MUSCLE CELLS IN CULTURE

机译:从培养的肌肉细胞多核的发展看脱氧核糖核酸合成的可分离性

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摘要

The effects of a nitrogen mustard on both the morphology and several synthetic capacities of embryonic chick skeletal muscle cells in monolayer culture have been examined. Concentrations of nitrogen mustard which profoundly inhibit deoxyribonucleic acid synthesis specifically do not inhibit the development of multinuclearity in the contractile "ribbons" which form rapidly in culture. Nitrogen mustard affects the nuclear morphology of "fibroblast-like" and multinuclear muscle cells differentially. The mononucleated cells in treated cultures exhibit extreme nuclear enlargement which distinguishes them from the multinuclear cells as well as from both types of cells in control cultures. The nuclei of the multinuclear cells which form after nitrogen mustard treatment, however, do give evidence of having been affected by the treatment. They exhibit somewhat less uniformity of size than similar cells in control cultures. Analogous differences were described by Bodenstein (3) between potentially proliferating cells and postmitotic differentiating cells, marked nuclear enlargement being characteristic of cells in the proliferative zone. The results are more compatible with the hypothesis that multinuclearity arises through successive cell fusion than through amitotic nuclear multiplication, since it is unlikely that any form of nuclear replication could occur in the absence of DNA synthesis.
机译:已经研究了氮芥对单层培养中的雏鸡骨骼肌细胞形态和几种合成能力的影响。显着抑制脱氧核糖核酸合成的氮芥子浓度不会特别抑制在培养物中迅速形成的收缩性“色带”中多核的发展。氮芥子能差异地影响“成纤维样”和多核肌肉细胞的核形态。处理过的培养物中的单核细胞表现出极大的核扩大,这使其与多核细胞以及对照培养物中的两种类型的细胞区分开。但是,在氮芥处理后形成的多核细胞核确实提供了受处理影响的证据。与对照培养物中的类似细胞相比,它们的大小均匀性要差一些。 Bodenstein(3)描述了潜在增殖细胞与有丝分裂后分化细胞之间的类似差异,明显的核增大是增殖区内细胞的特征。该结果更符合以下假设:通过连续的细胞融合而不是有丝分裂的核增殖产生多核,因为在没有DNA合成的情况下不可能发生任何形式的核复制。

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