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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Multiple genetic changes are required for efficient immortalization of different subtypes of normal human mammary epithelial cells
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Multiple genetic changes are required for efficient immortalization of different subtypes of normal human mammary epithelial cells

机译:有效永生正常人乳腺上皮细胞不同亚型需要多种遗传学改变

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Breast cancer is the second leading cause of cancer-related deaths of women in the U.S. About 180,000 new cases of breast cancer are diagnosed each year, a quarter of them fatal. Early detection is the key to the survival of these patients. However, there are no molecular markers to detect breast cancer at very early stages. A hurdle in understanding the early molecular changes in breast cancer has been the difficulty in establishing premalignant lesions and primary breast tumors as in vitro cell cultures. Normal epithelial cells grow for a finite life span and then senesce. Immortalization is defined by continuous growth of otherwise senescing cells and is believed to represent an early stage in tumor progression, To examine these early stages, we and others have developed in vitro models of mammary epithelial cell immortalization. These models have been extremely important in understanding the role of various tumor suppressor pathways that maintain the normal phenotypes of mammary epithelial cells. In this paper, we describe the establishment of these models and their relevance to understanding the molecular changes that occur in early breast cancer. These models have helped to identify molecular changes that occur in early breast cancers and appear to be well suited to identify novel markers for early diagnosis of breast cancer. (C) 2001 by Radiation Research Society. [References: 51]
机译:乳腺癌是美国女性与癌症相关的死亡的第二大主要原因。每年诊断出约18万例新的乳腺癌病例,其中四分之一是致命的。早期发现是这些患者生存的关键。但是,没有分子标记物可以在早期阶段检测出乳腺癌。难以理解乳腺癌的早期分子变化一直是建立恶性前病变和原发性乳腺肿瘤作为体外细胞培养的难点。正常的上皮细胞生长有限的寿命,然后衰老。永生化是由其他感觉细胞的持续生长定义的,并且被认为代表了肿瘤进展的早期阶段。为了检查这些早期阶段,我们和其他人已经开发了乳腺上皮细胞永生化的体外模型。这些模型对于理解维持乳腺上皮细胞正常表型的各种肿瘤抑制途径的作用非常重要。在本文中,我们描述了这些模型的建立及其与理解早期乳腺癌中发生的分子变化的相关性。这些模型有助于识别早期乳腺癌中发生的分子变化,并且似乎非常适合识别乳腺癌的早期诊断新标记。 (C)2001年,辐射研究学会。 [参考:51]

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