Cytogenetic evolution of human ovarian cell lines associated with chemoresistance and loss of tumorigenicity.

Stéphanie Struski, Martine Doco-Fenzy, Michael Koehler, Ilse Chudoba, Francis Levy, Linda Masson, Nicole Michel, Evelyne Ulrich, Nadine Gruson, Jean Bénard, Gérard Potron, Pascale Cornillet-Lefebvre
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引用次数: 6

Abstract

In order to identify genomic changes associated with a resistant phenotype acquisition, we used comparative genomic hybridization (CGH) to compare a human ovarian cell line, Igrov1, and four derived subcell lines, resistant to vincristine and presenting a reversion of malignant properties. Multicolor FISH (Multiplex-FISH and Spectral Karyotype) and conventional FISH are also used to elucidate the karyotype of parental cell line. The drug-resistant subcell lines displayed many chromosomal abnormalities suggesting the implication of different pathways leading to a multidrug resistance phenotype. However, these cell lines shared two common rearrangements: an unbalanced translocation der(8)t(8;13)(p22;q?) and a deletion of the 11p. These chromosomal imbalances could reflected the acquisition of the chemoresistance (der(8)) or the loss of tumorigenicity properties (del(11p)).

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人卵巢细胞系与化疗耐药和致瘤性丧失相关的细胞遗传学进化。
为了确定与抗性表型获得相关的基因组变化,我们使用比较基因组杂交(CGH)来比较人类卵巢细胞系Igrov1和四个衍生的亚细胞系,这些细胞系对长春新碱具有抗性,并表现出恶性特性的逆转。多色FISH (multiplexfish and Spectral Karyotype)和常规FISH也被用来阐明亲本细胞系的核型。耐药亚细胞系显示出许多染色体异常,暗示导致多药耐药表型的不同途径。然而,这些细胞系有两种常见的重排:不平衡的移位der(8)t(8;13)(p22;q?)和11p的缺失。这些染色体失衡可能反映了化疗耐药性的获得(der(8))或致瘤性的丧失(del(11p))。
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