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首页> 外文期刊>Cancer prevention research. >Identification of a Human Airway Epithelial Cell Subpopulation with Altered Biophysical, Molecular, and Metastatic Properties
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Identification of a Human Airway Epithelial Cell Subpopulation with Altered Biophysical, Molecular, and Metastatic Properties

机译:用改变的生物物理,分子和转移性能鉴定人气气道上皮细胞亚群

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摘要

Lung cancers are documented to have remarkable intratumoral genetic heterogeneity. However, little is known about the heterogeneity of biophysical properties, such as cell motility, and its relationship to early disease pathogenesis and micrometastatic dissemination. In this study, we identified and selected a subpopulation of highly migratory premalignant airway epithelial cells that were observed to migrate through microscale constrictions at up to 100-fold the rate of the unselected immortalized epithelial cell lines. This enhanced migratory capacity was found to be Rac1-dependent and heritable, as evidenced by maintenance of the phenotype through multiple cell divisions continuing more than 8 weeks after selection. The morphology of this lung epithelial subpopulation was characterized by increased cell protrusion intensity. In a murine model of micrometastatic seeding and pulmonary colonization, the motility-selected premalignant cells exhibit both enhanced survival in short-term assays and enhanced outgrowth of premalignant lesions in longer-term assays, thus overcoming important aspects of "metastatic inefficiency." Overall, our findings indicate that among immortalized premalignant airway epithelial cell lines, subpopulations with heritable motility-related biophysical properties exist, and these may explain micrometastatic seeding occurring early in the pathogenesis of lung cancer. Understanding, targeting, and preventing these critical biophysical traits and their underlying molecular mechanisms may provide a new approach to prevent metastatic behavior. (C) 2017 AACR.
机译:记录肺癌具有显着的肿瘤内遗传异质性。然而,关于生物物理性质的异质性,例如细胞活性,以及​​其与早期疾病发病机制和微转移筛选的关系很少。在该研究中,我们鉴定并选择了高度迁移的前进气道上皮细胞的亚群,观察到通过显微尺度迁移到高达100倍的未选择的永生化上皮细胞系的速率。发现这种增强的迁徙能力被发现是rac1依赖和遗传,通过在选择后的多个细胞部门继续超过8周,通过维持表型的维持证明。这种肺上皮亚贫化的形态的特征在于细胞突出强度增加。在微转移和肺部定殖的小鼠模型中,运动选择的前血管细胞在短期测定中表现出增强的存活率,并且在长期测定中提高了前血管病变的生长,从而克服了“转移低效率”的重要方面。总体而言,我们的研究结果表明,在永生化的前进气道上皮细胞系中,存在具有遗传性运动相关的生物物理性质的群体,并且这些可能在肺癌发病机制早期发生微转移播种。理解,靶向和预防这些关键的生物物理性状及其潜在的分子机制可以提供一种防止转移行为的新方法。 (c)2017年AACR。

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  • 来源
    《Cancer prevention research.》 |2017年第9期|共11页
  • 作者单位

    UCLA David Geffen Sch Med Dept Mol &

    Med Pharmacol Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UT Southwestern Med Ctr Dept Cell Biol Dallas TX USA;

    UCLA Dept Bioengn Los Angeles CA 90095 USA;

    UCLA Dept Bioengn Los Angeles CA 90095 USA;

    UCLA Dept Chem &

    Biochem Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    QIMR Berghofer Med Res Inst Brisbane Qld Australia;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Dept Pathol &

    Lab Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Dept Pathol &

    Lab Med Los Angeles CA 90095 USA;

    UCLA Dept Chem &

    Biochem Los Angeles CA 90095 USA;

    UCLA Dept Bioengn Los Angeles CA 90095 USA;

    UT Southwestern Med Ctr Hamon Ctr Therapeut Oncol Res Dallas TX USA;

    UCLA David Geffen Sch Med Div Pulm &

    Crit Care Med Los Angeles CA 90095 USA;

    UCLA David Geffen Sch Med Dept Mol &

    Med Pharmacol Los Angeles CA 90095 USA;

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

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