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首页> 外文期刊>Mechanisms of Ageing and Development >Chromosomal analysis in young vs. senescent human fibroblasts by fluorescence in situ hybridization: a selection hypothesis.
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Chromosomal analysis in young vs. senescent human fibroblasts by fluorescence in situ hybridization: a selection hypothesis.

机译:荧光原位杂交技术在年轻与衰老的人类成纤维细胞中进行染色体分析:选择假设。

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Almost all previous studies on chromosomal analysis related to in vitro aging of human fibroblasts were done using only metaphase chromosomes. However, this procedure may provide only partial information since the aneuploidy presumably hidden in interphase cells would remain undetected. For this reason, we have analyzed aneuploidy both at interphase and at metaphase. Female (IMR-90) and male (IMR-91) cells were grown from the lowest to the highest population doubling levels and aneuploidy analysis was done by FISH with alpha-satellite DNA probes of 15 autosomes and two sex chromosomes. Our data on total aneuploidy in young cells indicate that significantly higher proportions of cells with aneuploidy can be detected at interphase than at metaphase. This presumably indicates that during active division of young cells, more aneuploid than diploid cells are selected against entry to mitosis. In contrast, interphase senescent cells from both strains show significantly fewer aneuploid nuclei than do young cells at interphase. This probably indicates that during senescence, there is greater selective pressure in the culture against long-term survival of aneuploid cells than against survival of diploid cells. Our study shows that cellular dynamics with respect to aneuploidy involving various chromosomes differs significantly at interphase and at mitosis during in vitro aging of human fibroblasts, and we propose a 'Selection Hypothesis' as an explanation to our findings.
机译:几乎所有与人类成纤维细胞体外老化有关的染色体分析研究都仅使用中期染色体进行。但是,此过程可能仅提供部分信息,因为大概隐藏在相间细胞中的非整倍性将保持未被检测到。因此,我们已经分析了相间和中期的非整倍性。将雌性(IMR-90)和雄性(IMR-91)细胞从最低群体倍增水平提高到最高,并通过FISH使用15个常染色体和两个性染色体的α卫星DNA探针进行非整倍性分析。我们关于年轻细胞中总非整倍性的数据表明,在中间期检测到的非整倍性细胞比例明显高于中期。推测这表明在年轻细胞的主动分裂过程中,选择了比二倍体细胞更多的非整倍体来防止有丝分裂。相比之下,两种品系的相间衰老细胞与相间的年轻细胞相比,其非整倍体核的数量要少得多。这可能表明,在衰老过程中,培养物中对非整倍体细胞长期存活的选择性压力大于对二倍体细胞存活的选择性压力。我们的研究表明,在人类成纤维细胞体外衰老过程中,涉及各种染色体的非整倍性的细胞动力学在相间和有丝分裂中存在显着差异,我们提出“选择假说”作为对我们发现的解释。

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