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首页> 外文期刊>Tumour biology : >Part I. Development of a model system for studying nitric oxide in tumors: high nitric oxide-adapted head and neck squamous cell carcinoma cell lines.
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Part I. Development of a model system for studying nitric oxide in tumors: high nitric oxide-adapted head and neck squamous cell carcinoma cell lines.

机译:第一部分:研究肿瘤中一氧化氮的模型系统的开发:高一氧化氮适应性头颈部鳞状细胞癌细胞系。

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摘要

The free radical nitric oxide (NO) is over-expressed in many tumors, including head and neck squamous cell carcinomas (HNSCC); however, the role NO plays in tumor pathophysiology is still not well understood. We, herein, report the development of an in vitro model system which can be used to probe the role of NO in the carcinogenesis of HNSCC. Five HNSCC cell lines were adapted to a high NO (HNO) environment by gradually introducing increasing concentrations of DETA-NONOate, a nitrogen-based NO donor, to cell media. The adaptation process was carried out until a sufficiently high enough donor concentration was reached which enabled the HNO cells to survive and grow, but which was lethal to the original, unadapted ("parent") cells. The adapted HNO cells exhibited analogous morphology to the parent cells, but grew better than their corresponding parent cells in normal media, on soft agar, and in the presence of hydrogen peroxide, an oxygen-based free radical donor. These results indicate that the HNO cell lines are unique and possess biologically different properties than the parent cell lines from which they originated. The HNO/parent cell lines developed herein may be used as a model system to better understand the role NO plays in HNSCC carcinogenesis.
机译:自由基一氧化氮(NO)在许多肿瘤中过表达,包括头颈部鳞状细胞癌(HNSCC)。然而,NO在肿瘤病理生理学中的作用尚不十分清楚。我们在此报告了一种体外模型系统的开发,该系统可用于探测NO在HNSCC癌变中的作用。通过将逐渐增加浓度的基于氮的NO供体DETA-NONOate引入细胞培养基,使五种HNSCC细胞系适应了高NO(HNO)环境。进行适应过程,直到达到足够高的供体浓度,该浓度可使HNO细胞存活和生长,但对原始的未适应(“亲本”)细胞具有致命性。适应的HNO细胞显示出与亲本细胞相似的形态,但是在正常培养基中,在软琼脂上以及在过氧化氢(一种基于氧的自由基供体)的存在下,其生长都比其相应的亲本细胞好。这些结果表明HNO细胞系是独特的,并且与它们起源的亲本细胞系相比具有生物学上不同的特性。本文开发的HNO /亲本细胞系可以用作模型系统,以更好地了解NO在HNSCC癌变中的作用。

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